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Covalent organic framework assisted low-content ultrafine Ru on porous N-doped carbon for efficient hydrogen evolution reaction
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作者 Kong-Gang Qu Zhi-Fei Chen +6 位作者 Li-Hui Wang Hai-Bo Li Su-Yuan Zeng Rui Li Li-Jian Meng Hong-Yan Chen Qing-Xia Yao 《Rare Metals》 2025年第3期2094-2102,共9页
Pt-based materials are the benchmarked catalysts in the cathodic hydrogen evolution reaction(HER)of water splitting;the prohibitive cost and scarcity of Pt immensely impede the commercialization of hydrogen energy.Ru ... Pt-based materials are the benchmarked catalysts in the cathodic hydrogen evolution reaction(HER)of water splitting;the prohibitive cost and scarcity of Pt immensely impede the commercialization of hydrogen energy.Ru has aroused significant concern because of its Pt-like activity and much lower price.However,it’s still a top priority to minimize the Ru loading and pursue the most superior cost performance. 展开更多
关键词 porous n doped carbon most superior cost performance hydrogen evolution reaction water splittingthe cost performance cathodic hydrogen evolution reaction her covalent organic framework ultrafine Ru
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Recent advancements in noble-metal electrocatalysts for alkaline hydrogen evolution reaction 被引量:1
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作者 Guoliang Gao Guangzhen Zhao +4 位作者 Guang Zhu Bowen Sun Zixu Sun Shunli Li Ya-Qian Lan 《Chinese Chemical Letters》 2025年第1期176-200,共25页
Available online Alkaline water electrolysis(AWE)is a prominent technique for obtaining a sustainable hydrogen source and effectively managing the energy infrastructure.Noble metal-based electrocatalysts,owing to thei... Available online Alkaline water electrolysis(AWE)is a prominent technique for obtaining a sustainable hydrogen source and effectively managing the energy infrastructure.Noble metal-based electrocatalysts,owing to their exceptional hydrogen binding energy,exhibit remarkable catalytic activity and long-term stability in the hydrogen evolution reaction(HER).However,the restricted accessibility and exorbitant cost of noble-metal materials pose obstacles to their extensive adoption in industrial contexts.This review investigates strategies aimed at reducing the dependence on noble-metal electrocatalysts and developing a cost-effective alkaline HER catalyst,while considering the principles of sustainable development.The initial discussion covers the fundamental principle of HER,followed by an overview of prevalent techniques for synthesizing catalysts based on noble metals,along with a thorough examination of recent advancements.The subsequent discussion focuses on the strategies employed to improve noble metalbased catalysts,including enhancing the intrinsic activity at active sites and increasing the quantity of active sites.Ultimately,this investigation concludes by examining the present state and future direction of research in the field of electrocatalysis for the HER. 展开更多
关键词 hydrogen evolution reaction Alkaline water electrolysis ELECTROCATALYSTS Noble metal-based Synthesis method Modification strategy
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Highly mass activity electrocatalysts with ultralow Pt loading on carbon black for hydrogen evolution reaction
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作者 Shaorou Ke Yajing Zhao +6 位作者 Xin Min Yanghong Li Ruiyu Mi Yangai Liu Xiaowen Wu Minghao Fang Zhaohui Huang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS 2025年第1期182-190,共9页
Pt-based nanocatalysts offer excellent prospects for various industries.However,the low loading of Pt with excellent performance for efficient and stable nanocatalysts still presents a considerable challenge.In this s... Pt-based nanocatalysts offer excellent prospects for various industries.However,the low loading of Pt with excellent performance for efficient and stable nanocatalysts still presents a considerable challenge.In this study,nanocatalysts with ultralow Pt content,excellent performance,and carbon black as support were prepared through in-situ synthesis.These~2-nm particles uniformly and stably dispersed on carbon black because of the strong s-p-d orbital hybridizations between carbon black and Pt,which suppressed the agglomeration of Pt ions.This unique structure is beneficial for the hydrogen evolution reaction.The catalysts exhibited remarkable catalytic activity for hydrogen evolution reaction,exhibiting a potential of 100 mV at 100 mA·cm^(-2),which is comparable to those of commercial Pt/C catalysts.Mass activity(1.61 A/mg)was four times that of a commercial Pt/C catalyst(0.37 A/mg).The ultralow Pt loading(6.84wt%)paves the way for the development of next-generation electrocatalysts. 展开更多
关键词 hydrogen evolution reaction ultralow platinum in-situ synthesis ULTRASOUND
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Nickel-molybdenum alloy electrodeposited on nickel substrates for optimized hydrogen evolution reaction in acidic electrolytes
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作者 WANG Haibo WU Zelin +6 位作者 WEN Hui ZHAO Zhiyong WANG Chenbo LU Tongyu GUO Yuxuan WANG Congwei WANG Junying 《燃料化学学报(中英文)》 北大核心 2025年第10期1509-1518,共10页
The utilization of nickel-based catalysts as alternatives to expensive platinum-based(Pt-based)materials for the hydrogen evolution reaction in acidic electrolytes has attracted considerable attention due to their pot... The utilization of nickel-based catalysts as alternatives to expensive platinum-based(Pt-based)materials for the hydrogen evolution reaction in acidic electrolytes has attracted considerable attention due to their potential for enabling cost-effective industrial applications.However,the unsatisfied cyclic stability and electrochemical activity limit their further application.In this work,nickel-molybdenum(Ni-Mo)alloy catalysts were successfully synthesized through a comprehensive process including electrodeposition,thermal annealing,and electrochemical activation.Owing to the synergistic interaction of molybdenum trinickelide(Ni_(3)Mo)and molybdenum dioxide(MoO_(2))in Ni-Mo alloy,the catalyst display superior overall electrochemical properties.A low overpotential of 86 mV at 10 mA/cm^(2)and a Tafel slope of 74.0 mV/dec in 0.5 mol/L H_(2)SO_(4)solution can be achieved.Notably,remarkable stability with negligible performance degradation even after 100 h could be maintained.This work presents a novel and effective strategy for the design and fabrication of high-performance,non-precious metal electrocatalysts for acidic water electrolysis. 展开更多
关键词 nickel-molybdenum alloy acid electrolysis of water hydrogen evolution reaction synergistic effect ELECTROCATALYSIS
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Polyoxometalates-derived Pt-Mo_(2)C cluster heterostructure for co-catalytic alkaline hydrogen evolution reaction
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作者 Han-Qing Cai Qing-He Yang +7 位作者 Lu-Lu Chen Rui-Li Gao Mei-Hong Liao Jia-Shen Xing Wen-Bo Zhou Ning Pu Jing Gu Yi-Chao Huang 《Rare Metals》 2025年第7期4701-4711,共11页
Constructing clus ter heterostructures with strongly coupled interfaces is of great importance to accelerating the catalytic reactions that involve multiple intermediates.Herein,a strongly coupled cluster heterostruct... Constructing clus ter heterostructures with strongly coupled interfaces is of great importance to accelerating the catalytic reactions that involve multiple intermediates.Herein,a strongly coupled cluster heterostructure composed of platinum and molybdenum carbide(Pt@Mo_(2)C)derived from polyoxometalate clusters is designed to achieve excellent alkaline hydrogen evolution reaction.The Pt@Mo_(2)C cluster exhibits strong electronic interactions between Pt and Mo_(2)C,working together to facilitate the H_(2)O dissociation by concurrently binding intermediates(Pt-H*and Mo-OH*),thus accelerating the kinetics of the rate-determining Volmer step.Theoptimized Pt@Mo_(2)C exhibits a high mass activity of12.1 A·mgpt^(-1),19.2 times higher than that of 20%Pt/C in alkaline media.Moreover,it can be stabilized at a current density of 100 mA·cm^(-2)for more than 200 h.This work demonstrated the superiority of the cluster heterostructures and co-catalytic effect towards the development of highly efficient electrocatalysts. 展开更多
关键词 POLYOXOMETALATES CLUSTER HETEROSTRUCTURES Elctrocatalysis hydrogen evolution reaction
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Multi-metal synergistic integration for electronic structure regulation in schreibersite-type Mo_(2)Fe_(0.8)Ru_(0.2)P electrocatalysts:Exceptional enhancement of activity and stability for alkaline hydrogen evolution reaction
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作者 Peng Zhang Shiyu Xu +10 位作者 Hao Li Chenglin Cui Shengyang Huang Zhengyang Li Hyun Jun Song Lirui Mao Chan-Hwa Chung Ho Seok Park Jin Yong Lee Ji Man Kim Pil J.Yoo 《Journal of Energy Chemistry》 2025年第9期665-674,I0018,共11页
Employing multiple metals for synergistic electronic structure regulation emerges as a promising approach to develop highly efficient and robust electrocatalysts for hydrogen evolution at ampere levels.In this study,a... Employing multiple metals for synergistic electronic structure regulation emerges as a promising approach to develop highly efficient and robust electrocatalysts for hydrogen evolution at ampere levels.In this study,a series of Schreibersite-type intermetallic compounds,particularly Mo_(2)Fe_(0.8)Ru_(0.2)P,are synthesized through high-temperature solid-phase synthesis.Experimental results demonstrate that the integration of Ru significantly improves the kinetics of proton adsorption and desorption during the hydrogen evolution reaction(HER).Additionally,density functional theory(DFT)calculations and X-ray absorption near edge structure(XANES)analyses effectively corroborate the pronounced d-orbital hybridization of Fe within the structure,which facilitates the transfer of hydroxide ions and the maintenance of material durability during alkaline HER processes.Remarkably,Mo_(2)Fe_(0.8)Ru_(0.2)P exhibits superior alkaline HER activity,characterized by an overpotential of merely 48 mV at a current density of 10 mA cm^(-2).After prolonged operation of 1000 h at high current densities(1.1 A cm^(-2)),the activity decline remains minimal,under 4%(with overpotential increasing from 258 mV to 268 mV).These results demonstrate the potential of strategically combining metallic elements to design high-performance industrial-grade electrocatalysts. 展开更多
关键词 hydrogen evolution reaction Multi-metallic regulation Schreibersite ELECTROCATALYSTS STABILITY
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Targeted construction of high-performance single-atom platinum-based electrocatalysts for hydrogen evolution reaction
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作者 Jing Liu Xiandi Ma +8 位作者 Jeonghan Roh Dongwon Shin Ara Cho Jeong Woo Han Jianping Long Zhen Zhou Menggai Jiao Kug-Seung Lee EunAe Cho 《Chinese Journal of Catalysis》 2025年第2期259-270,共12页
Exploring platinum single-atom electrocatalysts(SACs)is of great significance for effectively catalyzing the hydrogen evolution reaction in order to maximize the utilization of metal atoms.Herein,ruthenium clusters wi... Exploring platinum single-atom electrocatalysts(SACs)is of great significance for effectively catalyzing the hydrogen evolution reaction in order to maximize the utilization of metal atoms.Herein,ruthenium clusters with several atoms(Rux)supported on nitrogen-doped,cost-efficient Black Pearls 2000(Ru_(x)NBP),were synthesized as initial materials via a simple hydrothermal method.Then,[PtCl_(4)]^(2–)ion was reductively deposited on RuxNBP to obtain a Pt SAC(Pt1/RuxNBP).Electrochemical measurements demonstrate the excellent HER performance of Pt_(1)/Ru_(x)NBP with a 5.7-fold increase in mass activity compared to the commercial Pt/C at 20 mV.Moreover,the cell voltage of the proton exchange membrane electrolyzer with Pt_(1)/Ru_(x)NBP is 20 mV lower compared to that with commercial Pt/C at 1.0 A cm^(−2).Physical characterization and density functional theory calculations revealed that the preserved Pt–Cl bond of[PtCl_(4)]^(2–)and the RuxNBP support co-regulate the 5d state of isolated Pt atoms and enhance the catalytic HER capacity of Pt1/RuxNBP. 展开更多
关键词 PLATINUM Single-atomeletrocatalyst Ruthenium cluster hydrogen evolution reaction Density functional theory
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Recent advances in electrocatalysts for efficient hydrogen evolution reaction
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作者 Huan He Jin-Hua Mai +4 位作者 Kun-Song Hu Han-Qing Yu Zhen-Guo Zhang Feng Zhan Xin-Hua Liu 《Rare Metals》 2025年第4期2208-2238,共31页
As a clean energy source,hydrogen plays a critical role in the global mission to achieve carbon neutrality.Among varied hydrogen production techniques,water electrolysis driven by clean energy,such as solar or wind en... As a clean energy source,hydrogen plays a critical role in the global mission to achieve carbon neutrality.Among varied hydrogen production techniques,water electrolysis driven by clean energy,such as solar or wind energy,is the most promising and viable option,with the advantages of celerity,high efficiency,cleanliness,and sustainability.However,this process necessitates a highly active and durable hydrogen evolution reaction(HER)catalyst to enhance the overall reaction efficiency.This article thoroughly reviews the recent development of electrocatalysts exhibiting high-performance HER.In particular,a comprehensive look at noble metals platinum(Pt),ruthenium(Ru),iridium(Ir),and non-noble metals,including sulfides,carbides,nitrides and phosphides is taken.Synthesis strategies,methods for enhancing performance,and the correlation between structure,composition,and catalytic performance are discussed.We also pay particular attention to density functional theory(DFT)calculations to reveal the mechanisms behind the improvement of HER performance.Finally,the critical challenges associated with electrochemical water splitting and propose coping strategies are presented. 展开更多
关键词 ELECTROCATALYSTS Water splitting hydrogen evolution reaction(HER) Noble metal Non-noble metal
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Transition Metal Carbonitride MXenes Anchored with Pt Sub-Nanometer Clusters to Achieve High-Performance Hydrogen Evolution Reaction at All pH Range
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作者 Zhihao Lei Sajjad Ali +18 位作者 CI Sathish MuhammadIbrar Ahmed Jiangtao Qu Rongkun Zheng Shibo Xi Xiaojiang Yu MBHBreese Chao Liu Jizhen Zhang Shuai Qi Xinwei Guan Vibin Perumalsamy Mohammed Fawaz Jae-Hun Yang Mohamed Bououdina Kazunari Domen Ajayan Vinu Liang Qiao Jiabao Yi 《Nano-Micro Letters》 2025年第5期525-539,共15页
Transition metal carbides,known as MXenes,particularly Ti_(3)C_(2)T_(x),have been extensively explored as promising materials for electrochemical reactions.However,transition metal carbonitride MXenes with high nitrog... Transition metal carbides,known as MXenes,particularly Ti_(3)C_(2)T_(x),have been extensively explored as promising materials for electrochemical reactions.However,transition metal carbonitride MXenes with high nitrogen content for electrochemical reactions are rarely reported.In this work,transition metal carbonitride MXenes incorporated with Pt-based electrocatalysts,ranging from single atoms to sub-nanometer dimensions,are explored for hydrogen evolution reaction(HER).The fabricated Pt clusters/MXene catalyst exhibits superior HER performance compared to the single-atom-incorporated MXene and commercial Pt/C catalyst in both acidic and alkaline electrolytes.The optimized sample shows low overpotentials of 28,65,and 154 mV at a current densities of 10,100,and 500 m A cm^(-2),a small Tafel slope of 29 m V dec^(-1),a high mass activity of 1203 mA mgPt^(-1)and an excellent turnover frequency of 6.1 s^(-1)in the acidic electrolyte.Density functional theory calculations indicate that this high performance can be attributed to the enhanced active sites,increased surface functional groups,faster charge transfer dynamics,and stronger electronic interaction between Pt and MXene,resulting in optimized hydrogen absorption/desorption toward better HER.This work demonstrates that MXenes with a high content of nitrogen may be promising candidates for various catalytic reactions by incorporating single atoms or clusters. 展开更多
关键词 MXene hydrogen evolution reaction Single atom Two-dimensional nanosheets Density functional theory
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Encapsulating Ru doped Co/CO_(2)P nanoparticles into delignified and TEMPO oxidized wood carbon enabling efficient pH-universal hydrogen evolution reaction
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作者 Jiahui Li Peng Huang +5 位作者 Zhijie Zhang Cuihua Tian Yu Liao Tai Yang Yan Qing Yiqiang Wu 《Journal of Energy Chemistry》 2025年第5期452-461,共10页
High-performance catalyst is significant for the sustainable hydrogen(H_(2))production by electrocatalytic water splitting.Optimizing porous structure and active groups of substrate can promote the interaction of subs... High-performance catalyst is significant for the sustainable hydrogen(H_(2))production by electrocatalytic water splitting.Optimizing porous structure and active groups of substrate can promote the interaction of substrate and active metal particles,enabling excellent catalytic properties and stability.Herein,the optimization strategy of delignification and 2,2,6,6-tetramethylpyperidine-1-oxyl(TEMPO)oxidization was developed to modify the porous structure and active groups of wood substrate,and Ru doped Co/CO_(2)P(Ru-Co/CO_(2)P)nanoparticles were encapsulated into the optimized wood carbon substrate(Ru-Co/CO_(2)P@TDCW)for the efficient pH-universal hydrogen evolution reaction(HER).The nanopore and carboxyl groups were produced by delignification and TEMPO oxidation,which accelerated the dispersion and deposition of Ru-Co/CO_(2)P nanoparticles.The RuCo alloy and RuCoP nanoparticles were produced with the doping of Ru,and more Ru-Co/CO_(2)P nanoparticles were anchored by the delignified and TEMPO oxidized wood carbon(TDCW).As anticipated,the Ru-Co/CO_(2)P@TDCW catalyst exhibited excellent pH-universal HER activity,and only 16.6,93,and 43 mV of overpotentials were required to deliver the current density of 50 mA cm^(-2)in alkaline,neutral,and acidic electrolytes,outperforming the noble Pt/C/TDCW catalyst significantly.In addition,Ru-Co/CO_(2)P@TDCW catalyst presented excellent stability for more than 600 h working at 100 mA cm^(-2)in alkaline solution(1.0 M KOH).Density function theory(DFT)results revealed that energy barriers for the dissociation of H_(2)O and the formation of H_(2)were decreased by the doping of Ru,and the conductivity and efficiency of electron migration were also enhanced.This work demonstrated a strategy to optimize the structure and properties of wood carbon substrate,providing a promising strategy to synthesize high-efficiency catalyst for H_(2)production. 展开更多
关键词 Carbonized wood substrate DELIGNIFICATION TEMPO oxidization hydrogen evolution reaction DFT calculation
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Hollow Spherical Structure CoS_(2-x)Se_(x) for Electrocatalytic Hydrogen Evolution Reaction
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作者 LIANG Dandan ZHANG Ying +3 位作者 HOU Weili SHANG Jihua REN Haibo SUN Yufeng 《Journal of Wuhan University of Technology(Materials Science)》 2025年第4期1014-1021,共8页
A series of CoS_(2-x)Se_(x)(x=0.05,0.1,0.2,0.3,and 2)composite catalysts were synthesized on carbon fiber paper via the hydrothermal method with Se doping.By precisely controlling the reaction temperature and Se dopin... A series of CoS_(2-x)Se_(x)(x=0.05,0.1,0.2,0.3,and 2)composite catalysts were synthesized on carbon fiber paper via the hydrothermal method with Se doping.By precisely controlling the reaction temperature and Se doping level,a hollow spherical catalyst structure composed of CoSSe was successfully synthesized,which exhibited exceptional activity for hydrogen evolution in acidic solutions.The influences of Se doping on the microstructure and catalytic mechanism of hydrogen evolution reaction(HER)of these composites were systematically investigated.The experimental results reveal that the hollow spherical sample displays an overpotential value of 143 mV along with a Tafel slope value of 69.8 mV·dec^(-1)at a current density of 10 mA·cm^(-2)in an acid aqueous solution.Furthermore,it demonstrates remarkable cycling stability after undergoing 3000 cycles.The comprehensive analysis indicates that Se doping optimizes the electronic structure and enhances conductivity,meanwhile the unique hollow spherical architecture increases active sites for HER and significantly improves overall electrocatalytic performance. 展开更多
关键词 hydrogen evolution reaction electrocatalysis cobalt chalcogenides anion compound substitution hollow spherical structure
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Regulating Reconstruction-Engineered Active Sites of CoP Electrocatalyst by Br Ions During the Oxygen and Hydrogen Evolution Reaction
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作者 Jing Yao Yuanyuan Zhang +6 位作者 Feng Gao Qi Jin Lirong Zhang Lingling Xu Mingyi Zhang Hong Gao Peng Yu 《Energy & Environmental Materials》 2025年第4期198-206,共9页
An in-depth understanding of the catalyst surface evolution is crucial for precise control of active sites,yet this aspect has often been overlooked.This study reveals the spontaneous anion regulation mechanism of Br-... An in-depth understanding of the catalyst surface evolution is crucial for precise control of active sites,yet this aspect has often been overlooked.This study reveals the spontaneous anion regulation mechanism of Br-doped CoP electrocatalysts in the alkaline hydrogen evolution reaction(HER)and oxygen evolution reaction(OER).The introduction of Br modulates the electronic structure of the Co site,endowing Br-CoP with a more metallic character.In addition,P ion leaching promotes the in situ reconstruction of Br-CoOOH,which is the real active site for the OER reaction.Meanwhile,the HER situation is different.On the basis of P ion leaching,the leaching of Br ions promotes the formation of CoP-Co(OH)_(2) active species.In addition,Br doping enhances the adsorption of^(*)H,showing excellent H adsorption free energy,thereby greatly improving the HER activity.Simultaneously,it also enhances the adsorption of OOH^(*),effectively facilitating the occurrence of OER reactions.Br-CoP only needs 261 and 76 mV overpotential to drive the current density of 20 mA cm^(-2) and 10 mA^(-2),which can be maintained unchanged for 100 h.This study provides new insights into anion doping strategies and catalyst reconstruction mechanisms. 展开更多
关键词 anion exchange mechanism Br-CoP hydrogen evolution reaction oxygen evolution reaction surface reconstruction
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Phosphorylated Mo-P particles embedded in P-doped carbon with well-dispersed Pt loading for electrocatalytic hydrogen evolution reaction
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作者 Yu Xie Yuxuan Chen +5 位作者 Jiawei Jiang Maosheng Fu Yiyao Cao Long Zhang Erhuan Zhang Tianshu Ge 《Nano Research》 2025年第11期326-335,共10页
The fabrication of efficient and stable catalysts to accelerate the kinetics of the hydrogen evolution reaction(HER)is a crucial step in the development of sustainable energy production.The structural design of Pt-bas... The fabrication of efficient and stable catalysts to accelerate the kinetics of the hydrogen evolution reaction(HER)is a crucial step in the development of sustainable energy production.The structural design of Pt-based catalysts with efficient atom utilization remains a pivotal factor in the continued advancement of HER catalysts.In this work,we synthesized phosphorylated Mo-based particles embedded in P-doped carbon materials for the optimized loading of platinum nanoparticles(Pt/Mo-P@C).Theoretical results indicate that the catalytic efficacy of the materials can be enhanced by altering the electronic structure of Pt nanoparticles through the precise formation of Pt-Mo bond and multiple heterostructures.The catalysts exhibited exceptional mass activity after low-temperature reduction,achieving a current density of 100 mA·cm−2 at 54.4 mV,which is lower than that of the commercial Pt/C catalyst.Furthermore,the mass activity of the main catalyst was 6.7 times greater than that of the commercial Pt/C catalyst at an overpotential of 50 mV. 展开更多
关键词 electrocatalytic hydrogen evolution reaction Mo-based particles P-doped carbon materials Pt-based nanoparticles low-temperature reduction
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Coordination Tailoring of Pt Single-Atom Catalysts at Room Temperature and Their Exceptional Performance in Hydrogen Evolution Reaction
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作者 Joo-Won Lee Haleem Ud Din +4 位作者 Taehun Im Chang-Kyu Hwang Jong Min Kim Jung-Hoon Lee Sohee Jeong 《Carbon Energy》 2025年第5期114-125,共12页
Single-atom catalysts(SACs)have garnered interest in designing their ligand environments,facilitating the modification of single catalytic sites toward high activity and selectivity.Despite various synthetic approache... Single-atom catalysts(SACs)have garnered interest in designing their ligand environments,facilitating the modification of single catalytic sites toward high activity and selectivity.Despite various synthetic approaches,it remains challenging to achieve a catalytically favorable coordination structure simultaneously with the feasible formation of SACs at low temperatures.Here,a new type of coordination structure for Pt SACs is introduced to offer a highly efficient hydrogen evolution reaction(HER)catalyst,where Pt SACs are readily fabricated by atomically confining PtCl_(2)on chemically driven NO_(2)sites in two-dimensional nitrogen-doped carbon nanosheets at room temperature.The resultant Pt SACs form the NO_(2)-Pt-Cl_(2)coordination structure with an atomic dispersion,as revealed by X-ray spectroscopy and transmission electron microscopy investigations.Moreover,our first-principles density functional theory(DFT)calculations show strong interactions in the coordination by computing the binding energy and charge density difference between PtCl_(2)and NO_(2).Pt SACs,established on the NO_(2)-functionalized carbon support,demonstrate the onset potential of 25 mV,Tafel slope of 40 mV dec^(-1),and high specific activity of 1.35 A mgPt^(-1).Importantly,the Pt SACs also exhibit long-term stability up to 110 h,which is a significant advance in the field of single-atom Pt catalysts.The newly developed coordination structure of Pt SACs features a single Pt active center,providing hydrogen binding ability comparable to that of Pt(111),enhanced long-term durability due to strong metal-support interactions,and the advantage of room-temperature fabrication. 展开更多
关键词 coordination structures density functional theory hydrogen evolution reaction nitrogen-doped carbon materials single-atom catalysts
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Machine-Learning-Assisted Design and Optimization of Single-Atom Transition Metal-Incorporated Carbon Quantum Dot Catalysts for Electrocatalytic Hydrogen Evolution Reaction
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作者 Unbeom Baeck Min-Cheol Kim +11 位作者 Duong Nguyen Nguyen Jaekyum Kim Jaehyoung Lim Yujin Chae Namsoo Shin Heechae Choi Joon Young Kim Chan-Hwa Chung Woo-Seok Choe Ho Seok Park Uk Sim Jung Kyu Kim 《Carbon Energy》 2025年第7期13-24,共12页
Hydrogen evolution reaction(HER)in acidic media has been spotlighted for hydrogen production since it is a favourable kinetics with the supplied protons from a counterpart compared to that within alkaline environment.... Hydrogen evolution reaction(HER)in acidic media has been spotlighted for hydrogen production since it is a favourable kinetics with the supplied protons from a counterpart compared to that within alkaline environment.However,there is no choice but to use a platinum-based catalyst yet.As for a noble metal-free electrocatalyst,incorporation of earth-abundant transition metal(TM)atoms into nanocarbon platforms has been extensively adopted.Although a data-driven methodology facilitates the rational design of TM-anchored carbon catalysts,its practical application suffers from either a simplified theoretical model or the prohibitive cost and complexity of experimental data generation.Herein,an effective and facile catalyst design strategy is proposed based on machine learning(ML)and its model verification using electrochemical methods accompanied by density functional theory simulations.Based on a Bayesian genetic algorithm ML model,the Ni-incorporated carbon quantum dots(Ni@CQD)loaded on a three-dimensional reduced graphene oxide conductor are proposed as the best HER catalyst amongst the various TM-incorporated CQDs under the optimal conditions of catalyst loading,electrode type,and temperature and pH of electrolyte.The ML results are validated with electrochemical experiments,where the Ni@CQD catalyst exhibited superior HER activity,requiring an overpotential of 151 mV to achieve 10 mAcm^(−2) with a Tafel slope of 52 mV dec^(−1) and impressive durability in acidic media up to 100 h.This methodology can provide an effective route for the rational design of highly active electrocatalysts for commercial applications. 展开更多
关键词 carbon quantum dot density functional theory hydrogen evolution reaction machine learning transition metal doping
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Enhancing Alkaline Hydrogen Evolution Reaction on Ru- Decorated TiO_(2) Nanotube Layers: Synergistic Role of Ti^(3+), Ru Single Atoms, and Ru Nanoparticles
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作者 Sitaramanjaneya Mouli Thalluri Jhonatan Rodriguez-Pereira +7 位作者 Jan Michalicka Eva Kolíbalová Ludek Hromadko Stanislav Slang Miloslav Pouzar Hanna Sopha Raul Zazpe Jan M.Macak 《Energy & Environmental Materials》 2025年第3期191-198,共8页
Synergistic interplays involving multiple active centers originating from TiO2 nanotube layers(TNT)and ruthenium(Ru)species comprising of both single atoms(SAs)and nanoparticles(NPs)augment the alkaline hydrogen evolu... Synergistic interplays involving multiple active centers originating from TiO2 nanotube layers(TNT)and ruthenium(Ru)species comprising of both single atoms(SAs)and nanoparticles(NPs)augment the alkaline hydrogen evolution reaction(HER)by enhancing Volmer kinetics from rapid water dissociation and improving Tafel kinetics from efficient H*desorption.Atomic layer deposition of Ru with 50 process cycles results in a mixture of Ru SAs and 2.8-0.4 nm NPs present on TNT layers,and it emerges with the highest HER activity among all the electrodes synthesized.A detailed study of the Ti and Ru species using different high-resolution techniques confirmed the presence of Ti^(3+)states and the coexistence of Ru SAs and NPs.With insights from literature,the role of Ti^(3+),appropriate work functions of TNT layers and Ru,and the synergistic effect of Ru SAs and Ru NPs in improving the performance of alkaline HER were elaborated and justified.The aforementioned characteristics led to a remarkable performance by having 9mV onset potentials and 33 mV dec^(-1) of Tafel slopes and a higher turnover frequency of 1.72 H2 s^(-1) at 30 mV.Besides,a notable stability from 28 h staircase chronopotentiometric measurements for TNT@Ru surpasses TNT@Pt in comparison. 展开更多
关键词 alkaline hydrogen evolution reaction ruthenium nanoparticles ruthenium single atoms TiO2 nanotube layers water dissociation
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CuIr Single-Atom Alloys Prepared by Pulsed Laser Ablation in Liquidfor pH-Universal Hydrogen Evolution Reaction
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作者 Siyu Sun Feifei Zhang +7 位作者 Wanlin Liu Rui Zhang Pengfei Yin Jing Yang Cunku Dong Xinming Nie Hui Liu Xiwen Du 《Transactions of Tianjin University》 2025年第1期4-14,共11页
The development of highly active and cost-effective catalysts for the full pH range of the hydrogen evolution reaction(HER)to meet the industrial application demands is an urgent challenge.In this work,the performance... The development of highly active and cost-effective catalysts for the full pH range of the hydrogen evolution reaction(HER)to meet the industrial application demands is an urgent challenge.In this work,the performance and structure–activityrelationships of CuIr alloys prepared by the pulsed laser ablation in liquid technique as full pH range HER catalysts wereinvestigated.Results indicated that Ir is doped into the Cu matrix as single atoms in CuIr-0.1,and CuIr-0.1 single-atom alloys(SAAs)exhibit superior HER performance and stability across the full pH range,with overpotentials of 135,203,and 172 mVat the current density of 10 mA/cm^(2)in acidic,neutral,and alkaline electrolytes,respectively.The enhanced performance ofCuIr-0.1 SAAs can be attributed to the abundant active sites and accelerated reaction kinetics brought about by the electroniceffects.This work successfully alloyed two immiscible metals to improve the catalytic performance,providing an avenue forthe development of highly efficient and versatile HER catalysts for industrial applications. 展开更多
关键词 CuIr single-atom alloys Immiscible alloy Pulsed laser ablation in liquid hydrogen evolution reaction Full pH range
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Recent advances and future prospects of ruthenium phosphide electrocatalysts for the hydrogen evolution reaction
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作者 Jin Li Xin-Yi Wang +5 位作者 Bian-Jie Zhu Zhan Zhou Kun-Ming Pan Xian-Ming Liu Zi-Long Zhuang Qiao-Bao Zhang 《Rare Metals》 2025年第3期1411-1442,共32页
Electrochemical water splitting is a highly promising approach for producing carbon-neutral hydrogen.The development of efficient electrocatalysts for the hydrogen evolution reaction(HER)is crucial to lowering the ene... Electrochemical water splitting is a highly promising approach for producing carbon-neutral hydrogen.The development of efficient electrocatalysts for the hydrogen evolution reaction(HER)is crucial to lowering the energy barriers and enhancing hydrogen production.This drives the search for HER electrocatalysts that are not only cost-effective and abundant but also exhibit high activity and long-term stability.In this review,we provide an in-depth analysis of recent progress in the application of ruthenium phosphides as HER electrocatalysts,offering key insights into their design and performance.Meanwhile,we explore various strategies to enhance their catalytic efficiency,such as increasing the availability of active sites and optimizing their electronic structure.Finally,we outline the key challenges and future directions for developing the next generation of ruthenium phosphide-based HER electrocatalysts. 展开更多
关键词 Ruthenium phosphide hydrogen evolution reaction ELECTROCATALYST Water splitting
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Competitions between hydrogen evolution reaction and oxygen reduction reaction on an Au surface
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作者 Yao Yao Juping Xu Minhua Shao 《Chinese Journal of Catalysis》 2025年第6期271-278,共8页
Hydrogen evolution reaction(HER)is unavoidable in many electrochemical synthesis systems,such as CO_(2)reduction,N2reduction,and H_(2)O_(2)synthesis.It makes those electrochemical reactions with multiple electron-prot... Hydrogen evolution reaction(HER)is unavoidable in many electrochemical synthesis systems,such as CO_(2)reduction,N2reduction,and H_(2)O_(2)synthesis.It makes those electrochemical reactions with multiple electron-proton transfers more complex when determining kinetics and mass transfer information.Understanding how HER competes with other electrochemical reduction reactions is crucial for both fundamental studies and system performance improvements.In this study,we employed the oxygen reduction reaction(ORR)as a model reaction to investigate HER competition on a polycrystalline-Au surface,using a rotating ring and disk electrode.It’s proved that water molecules serve as the proton source for ORR in alkaline,neutral,and even acidic electrolytes,and a 4-electron process can be achieved when the overpotential is sufficiently high.The competition from H⁺reduction becomes noticeable at the H⁺concentration higher than 2 mmol L^(–1)and intensi-fies as the H^(+)concentration increases.Based on the electrochemical results,we obtained an equivalent circuit diagram for the ORR system with competition from the H+reduction reaction,showing that these reactions occur in parallel and compete with each other.Electrochemical impedance spectroscopy measurements further confirm this argument.Additionally,we discover that the contribution of H+mass transfer to the total H^(+)reduction current is significant and comparable to the kinetic current.We believe this work will deepen our understanding of HER and its competition in electrochemical reduction systems. 展开更多
关键词 hydrogen evolution reaction Oxygen reduction reaction H⁺reduction competition Rotating ring and disk electrode Proton source
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Modulating the Local Charge Distribution of Single-Atomic Ru Sites for an Efficient Hydrogen Evolution Reaction
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作者 Youyu Long Lingfeng Yang +7 位作者 Min Xi Yifan Zhao Hua Zhang Tingting Liu Anran Chen Xuguang An Guangzhi Hu Zitao Ni 《Carbon Energy》 2025年第5期190-201,共12页
Ruthenium(Ru)-based electrocatalysts show great promise as substitutes for platinum(Pt)for the alkaline hydrogen evolution reaction(HER)because of their efficient water dissociation capabilities.Nevertheless,the stron... Ruthenium(Ru)-based electrocatalysts show great promise as substitutes for platinum(Pt)for the alkaline hydrogen evolution reaction(HER)because of their efficient water dissociation capabilities.Nevertheless,the strong adsorption of Ru-OH intermediates(Ru-OHad)blocks the active site,leading to unsatisfactory HER performance.In this study,we report a universal ligand-exchange strategy for synthesizing a MOF-on-MOF-derived FeP-CoP heterostructure-anchored Ru single-atom site catalyst(Ru-FeP-CoP/NPC).The obtained catalyst shows a low overpotential(28 mV at 10 mA cm^(-2))and a high mass activity(9.29 A mg^(-1) at 100 mV),surpassing the performance of commercial Pt/C by a factor of 46.Theoretical studies show that regulating the local charge distribution of Ru single-atom sites could alleviate surrounding OH-blockages,accelerating water dissociation and facilitating hydrogen adsorption/desorption,thus enhancing HER activity.This work aims to inspire further design of highly active and durable electrocatalysts with tailored electronic properties for high-purity hydrogen production. 展开更多
关键词 heterostructure catalyst hydrogen evolution reaction ligand exchange metal-organic frameworks
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