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High-yield pentanes-plus production via hydrogenation of carbon dioxide:Revealing new roles of zirconia as promoter of iron catalyst with long-term stability 被引量:1
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作者 Sheraz Ahmed Junjung Rohmat Sugiarto +6 位作者 Wonjoong Yoon Muhammad Irshad Heuntae Jo Syeda Sidra Bibi Soek Ki Kim Muhammad Kashif Khan Jaehoon Kim 《Journal of Energy Chemistry》 2025年第3期431-442,共12页
The metal oxide promoter decisively influences the overall performance of Fe catalysts in the direct hydrogenation of CO_(2)to C_(5+)hydrocarbons.However,the roles of metal oxide promoter for Fe catalysts,particularly... The metal oxide promoter decisively influences the overall performance of Fe catalysts in the direct hydrogenation of CO_(2)to C_(5+)hydrocarbons.However,the roles of metal oxide promoter for Fe catalysts,particularly ZrO_(2),have rarely been investigated.To plug this knowledge gap,a new Fe catalyst promoted with Na and partially reduced ZrO_(x)(Na-FeZrO_(x-9))was developed in this study;the catalyst helped produce C_(5+)hydrocarbons in remarkably high yield(26.3%at 360℃).In contrast to ZrO_(x)-free Fe-oxide,NaFeZrO_(x)-9 exhibited long-term stability for CO_(2)hydrogenation(750 h on-stream).The findings revealed multiple roles of ZrO_(x).Notably,ZrO_(x)decorated the Fe-oxide particles after calcination,thereby suppressing excess particle aggregation during the reaction,and acted as a"coke remover"to eliminate the carbon deposited on the catalyst surface.Additionally,oxygen vacancy(O_(v))sites in ZrO_(x)and electron transfer from ZrO_(x)to Fe sites facilitated the adsorption of CO_(2)at the Zr-Fe interface. 展开更多
关键词 cO_(2)hydrogenation c5+hydrocarbons Fe catalysts ZrO_(2)promoter Fischer Tropsch synthesis catalyst deactivation
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Multiscale structural engineering of atomically dispersed FeN4 electrocatalyst for proton exchange membrane fuel cells 被引量:3
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作者 Ruguang Wang Yuanyuan Yang +4 位作者 Yang Zhao Liujing Yang Pengfei Yin Jing Mao Tao Ling 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第7期629-635,共7页
Atomically dispersed iron-nitrogen-carbon(Fe-N-C) catalysts have emerged as the most promising alternative to the expensive Pt-based catalysts for the oxygen reduction reaction(ORR) in proton exchange membrane fuel ce... Atomically dispersed iron-nitrogen-carbon(Fe-N-C) catalysts have emerged as the most promising alternative to the expensive Pt-based catalysts for the oxygen reduction reaction(ORR) in proton exchange membrane fuel cells(PEMFCs),however suffer from low site density of active Fe-N4 moiety and limited mass transport during the catalytic reaction.To address these challenges,we report a three-dimensional(3D) metal-organic frameworks(MOF)-derived Fe-N-C single-atom catalyst.In this well-designed Fe-N-C catalyst,the micro-scale interconnected skeleton,the nano-scale ordered pores and the atomic-scale abundant carbon edge defects inside the skeleton significantly enhance the site density of active Fe-N4 moiety,thus improving the Fe utilization in the final catalyst.Moreover,the combination of the above mentioned micro-and nano-scale structures greatly facilitates the mass transport in the 3D Fe-N-C catalyst.Therefore,the multiscale engineered Fe-N-C single-atom catalyst achieves excellent ORR performance under acidic condition and affords a significantly enhanced current density and power density in PEMFC.Our findings may open new opportunities for the rational design of FeN-C catalysts through multiscale structural engineering. 展开更多
关键词 Fe–N–c catalyst Fe-N4 Proton exchange membrane fuel cells Oxygen reduction reaction Single-atom catalyst
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Corrigendum to“Mechanistic Insights into Water-Mediated CO_(2)Electrochemical Reduction Reactions on Cu@C_(2)N Catalysts:A Theoretical Study”[Acta Physico-Chimica Sinica(2024)40,2303040]
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《物理化学学报》 北大核心 2025年第5期144-144,共1页
Hanyu Xu 1,Xuedan Song 1,*,Qing Zhang 1,Chang Yu 1,Jieshan Qiu 1,2,*1 Liaoning Key Lab for Energy Materials and Chemical Engineering,State Key Laboratory of Fine Chemicals,School of Chemical Engineering,Dalian Univers... Hanyu Xu 1,Xuedan Song 1,*,Qing Zhang 1,Chang Yu 1,Jieshan Qiu 1,2,*1 Liaoning Key Lab for Energy Materials and Chemical Engineering,State Key Laboratory of Fine Chemicals,School of Chemical Engineering,Dalian University of Technology,Dalian 116024,Liaoning Province,China. 展开更多
关键词 chemical engineeringdalian theoretical study water mediated cu c N catalysts fine chemicalsschool cO electrochemical reduction chemical engineeringstate
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De novo-design of highly exposed Co−N−C single-atom catalyst for oxygen reduction reaction
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作者 ZHOU Dan ZHU Hongyue +1 位作者 ZHAO Yang LIU Yiming 《燃料化学学报(中英文)》 北大核心 2025年第1期128-137,共10页
The nitrogen-coordinated metal single-atom catalysts(M−N−C SACs)with an ultra-high metal loading synthetized by direct high-temperature pyrolysis have been widely reported.However,most of metal single atoms in these c... The nitrogen-coordinated metal single-atom catalysts(M−N−C SACs)with an ultra-high metal loading synthetized by direct high-temperature pyrolysis have been widely reported.However,most of metal single atoms in these catalysts were buried in the carbon matrix,resulting in a low metal utilization and inaccessibility for adsorption of reactants during the catalytic process.Herein,we reported a facile synthesis based on the hard-soft acid-base(HSAB)theory to fabricate Co single-atom catalysts with highly exposed metal atoms ligated to the external pyridinic-N sites of a nitrogen-doped carbon support.Benefiting from the highly accessible Co active sites,the prepared Co−N−C SAC exhibited a superior oxygen reduction reactivity comparable to that of the commercial Pt/C catalyst,showing a high turnover frequency(TOF)of 0.93 e^(−)·s^(-1)·site^(-1)at 0.85 V vs.RHE,far exceeding those of some representative SACs with a ultra-high metal content.This work provides a rational strategy to design and prepare M−N−C single-atom catalysts featured with high site-accessibility and site-density. 展开更多
关键词 hard-soft acid-base co−N−c single-atom catalyst highly accessible active sites oxygen reduction reaction
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The insights into ionomer-catalyst interactions enabling high-efficiency CO_(2)electroreduction in pure water
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作者 Rui Xue Shu Yuan +8 位作者 Rongyi Wang Tianzi Bi Guiru Zhang Huiyuan Li Jiewei Yin Liuxuan Luo Shuiyun Shen Xiaohui Yan Junliang Zhang 《Journal of Energy Chemistry》 2025年第9期390-399,I0011,共11页
With the development of renewable energy,electrochemical carbon dioxide reduction reaction(CO_(2)RR)has become a potential solution for achieving carbon neutrality.However,until now,due to issues with salt precipitate... With the development of renewable energy,electrochemical carbon dioxide reduction reaction(CO_(2)RR)has become a potential solution for achieving carbon neutrality.However,until now,due to issues with salt precipitate and regeneration of the electrolyte,this technology faces challenges such as difficulty in maintaining long-term stable operation and excessive costs.The pure water CO_(2)electrolyzers are believed to be the ultimate solution to eliminate the salt depreciation and electrolyte issues.This study develops an in-situ method tailored for CO_(2)reduction in pure water.By employing distribution of relaxation times(DRT)analysis and in-situ electrochemical active surface area(ECSA)measurements,we carried out a comprehensive investigation into the mass transport and electrochemical active surface area of gas diffusion electrodes(GDE)under pure water conditions.The maximum 89%CO selectivity and high selectivity(>80%)in the range of 0-300 mA/cm^(2)were achieved using commercial Ag nanoparticles by rational design of catalyst layer.We found that ionomers influence the CO_(2)electrolyzers performance via affecting local pH,GDE-membrane interface,and CO_(2)transport,while catalyst loading mainly influences the active area and CO_(2)transport.This work provides benchmark and insights for future pure water CO_(2)electrolyzers development. 展开更多
关键词 carbon dioxide reduction Pure water IONOMER I/c catalyst loading
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Construction of zeolite loaded ultra-small Ni nanoparticle catalysts
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作者 Linlin Duan Zaiwang Zhao 《Chinese Journal of Structural Chemistry》 2025年第5期8-9,共2页
Metal(oxide)-zeolite bifunctional catalysts have been the subject of considerable attention from researchers in both academic and industry,due to their superior activity and stability in various heterogeneous catalyti... Metal(oxide)-zeolite bifunctional catalysts have been the subject of considerable attention from researchers in both academic and industry,due to their superior activity and stability in various heterogeneous catalytic processes[1–3].Based on the different metal loading sites,these bifunctional catalysts can be categorized as follows:(a)metal species loaded on the outer surface of zeolite crystals,(b)metal species encapsulated within the channels or cavities of zeolites,and(c)metal species incorporated into the zeolite framework(Fig.1).Metal species in type(b)and(c)samples are stabilized by the zeolite frameworks,resulting in excellent thermal and hydrothermal stability during catalytic reactions,especially under harsh conditions,as well as unique shape-selectivity.However,the complex synthesis procedures make large-scale preparation of these catalysts impractical.In contrast,a type(a)sample can be achieved via the simple impregnation;nevertheless,migration of metal species and their aggregation into larger particles often occur during the calcination and reduction processes. 展开更多
关键词 zeolitesand c metal species ZEOLITE metal oxide zeolite bifunctional catalysts hydrothermal stability thermal stability bifunctional catalysts metal loading sites ultra small Ni nanoparticles
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Simultaneously achieving ultrahigh loading and ultrasmall particle size of Pt/C catalysts
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作者 Xiaoyang Wang Ziqi Fu +5 位作者 Ziyi Luo Weidi Liu Jia Ding Jianrong Zeng Yanan Chen Wenbin Hu 《Chinese Journal of Catalysis》 2025年第7期425-437,共13页
High-loading Pt/C catalysts play an important role in the fabrication of membrane electrode assemblies with thin catalytic layer,which enhance mass transport and maintain the balance of water and heat.Unfortunately,as... High-loading Pt/C catalysts play an important role in the fabrication of membrane electrode assemblies with thin catalytic layer,which enhance mass transport and maintain the balance of water and heat.Unfortunately,as the loading increases,the agglomeration and growth of Pt nanoparticles(NPs)occur,causing unsatisfactory performance.Here,we present an efficient method for preparing of highly dispersed and small-sized Pt/C catalysts with Pt loadings varying from 39.01 wt%to 66.48 wt%through the high-temperature shock technique.The high density and ultrafine(~2.5 nm)Pt NPs are successfully anchored onto Vulcan XC-72R carbon black without the use of additional capping agents or surfactants.The modified carbon supports enhance the affinity for Pt precursors,contributing to loading efficiencies of 95%or more,while also providing abundant sites for the nucleation and fixation of Pt NPs,thus preventing agglomeration.In the context of the hydrogen evolution reaction in acidic media,the as-synthesized high-loading Pt/C catalysts show remarkable activity and stability,outperforming the state-of-the-art commercial Pt/C.This is mainly because the combined effects of ultrasmall and uniform Pt NPs,optimized electronic structure of Pt site,superhydrophilicity and effective anchoring of Pt NPs.The polymer electrolyte membrane electrolyzer integrated with Pt60/OX72R and commercial IrO2 reaches 1 A cm^(-2)at 1.77 V and operates stably for 120 hours with a negligible voltage decay.This new strategy is fast,scalable and cost-effective for large-scale production of metal-supported catalysts,especially for the high-loading ones. 展开更多
关键词 Pt/c catalyst Ultrahigh loading Ultrasmall size High-temperature shock Proton exchange membrane water ELEcTROLYSIS
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Highly efficientcleavage of C—O bonds in diphenyl ether over Ni-S_(2)O_(8)^(2-)/ZrO_(2) solid super acid catalysts
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作者 Xiaoyan Zhao Xin Hu +5 位作者 Chuang Zhang Wei Jiang Jingpei Cao Zuxing Huan Yue Wang Changrui Tan 《Chinese Journal of Chemical Engineering》 2025年第10期34-44,共11页
Catalytic aryl ether C—O bonds hydrogenolysis was an important route to convert lignite into high valueadded chemicals.Solid super acid 10%Ni-S_(2)O_(8)^(2-)=ZrO_(2) catalysts were successfully synthesized and evalua... Catalytic aryl ether C—O bonds hydrogenolysis was an important route to convert lignite into high valueadded chemicals.Solid super acid 10%Ni-S_(2)O_(8)^(2-)=ZrO_(2) catalysts were successfully synthesized and evaluated their performance in catalytic hydrolysis of lignite derivatives.The excellent performance of 10%Ni-S_(2)O_(8)^(2-)=ZrO_(2) stems from the synergistic interaction between metallic and acidic sites.Specifically,the acidic sites generated by S_(2)O_(8)^(2-) facilitate the adsorption of O atoms in the substrate,whereas the metal sites optimize the process of hydrogen adsorption and activation and promote the generation of hydrogen radicals,which further enhances the ability to break C—O bonds.Thus,10%Ni-S_(2)O_(8)^(2-)=ZrO_(2) exhibits more significantcatalytic activity compared to 10%Ni-ZrO_(2) prepared from pure ZrO_(2) as a support.Characterization results showed that the 10%Ni-S_(2)O_(8)^(2-)=ZrO_(2) catalyst prepared by sodium borohydride reduction method presented a uniform pore structure,which effectively promoted the dispersion of metal Ni on the catalyst surface.Complete conversion of diphenyl ether(DPE)can be achieved under relatively mild conditions,and excellent hydrogenolysis activity is also demonstrated for other lignite derivatives containing C—O bonds.The possible reaction mechanism of DPE hydrogenolysis in the H_(2)-isopropanol system was investigated.This work represents a significantstep forward in the design of highly efficientsolid super acid catalysts. 展开更多
关键词 Hydrogenation Diphenyl ether c―O cleavage chemical reaction Ni-S_(2)O_(8)^(2-)=ZrO_(2) catalyst
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N掺杂C包覆FeNi/Mo_(2)C复合纳米材料析氧性能
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作者 陈京帅 陈环宇 陈超 《当代化工》 2025年第6期1261-1270,共10页
为提升析氧反应(OER)电催化剂的活性,在惰性气氛下热解合成N掺杂碳纳米片(NC)以及N掺杂C包覆FeNi合金、Mo_(2)C和FeNi/Mo_(2)C复合材料(NC@FeNi、NC@Mo_(2)C、NC@FeNi-Mo_(2)C)。XRD证实了3种复合材料的成功合成。拉曼光谱显示NC@FeNi-M... 为提升析氧反应(OER)电催化剂的活性,在惰性气氛下热解合成N掺杂碳纳米片(NC)以及N掺杂C包覆FeNi合金、Mo_(2)C和FeNi/Mo_(2)C复合材料(NC@FeNi、NC@Mo_(2)C、NC@FeNi-Mo_(2)C)。XRD证实了3种复合材料的成功合成。拉曼光谱显示NC@FeNi-Mo_(2)C的I_(D)/I_(G)值为2.75,显著高于其他3种材料,表明该材料具有更多结构缺陷,有助于加速离子转移,提高电化学性能。BET显示NC@FeNi-Mo_(2)C比表面积达到70.41 m^(2)·g^(-1),能更好促进电解质渗透,提升电催化性能。SEM和TEM电镜可观察到FeNi、Mo_(2)C和FeNi-Mo_(2)C被均匀封装在氮掺杂纳米碳材料中。利用XPS确定催化剂合金化引起的表面化学和电子结构变化。电化学析氧性能表征结果表明,相较于NC、NC@FeNi和NC@Mo_(2)C,NC@FeNi-Mo_(2)C杂化物具有较低的超电势(188 mV)、较小的Tafel斜率(18.551 mV·dec^(-1))、较高的稳定性14 h,其对OER表现出高效的电催化活性。 展开更多
关键词 析氧反应 氮掺杂纳米碳 feni Mo_(2)c 催化剂 电解质 动力学
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前驱体中N含量对FeN/C催化剂氧还原活性的影响研究 被引量:1
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作者 杨智 沈亚云 +3 位作者 周娥 魏成玲 秦好丽 田娟 《电化学》 CAS CSCD 北大核心 2020年第1期130-135,共6页
采用热解法制备FeN/C催化剂,考察催化剂前驱体中氮含量对其氧还原活性的影响.使用X射线衍射、比表面积和孔径分布测试、透射电子显微镜以及热重分析等方法对催化剂的结构、形貌及催化剂前驱体的热性质等进行表征,使用线性扫描伏安法对... 采用热解法制备FeN/C催化剂,考察催化剂前驱体中氮含量对其氧还原活性的影响.使用X射线衍射、比表面积和孔径分布测试、透射电子显微镜以及热重分析等方法对催化剂的结构、形貌及催化剂前驱体的热性质等进行表征,使用线性扫描伏安法对催化剂的氧还原活性进行测试.结果表明,以1,10-菲啰啉为氮源,FeCl3为铁源,Black Pearl 2000为载体,催化剂前驱体中1,10-菲啰啉含量为20wt%,Fe含量为1wt%时,热处理制备所得催化剂粒子分布均匀,比表面积为824.48 m2·g-1,平均孔隙为10.58 nm,表面的氮元素含量为0.31wt%;并具有最好的氧还原催化活性.催化剂前驱体中氮源含量在热解过程中导致催化剂的比表面积、孔径结构及表面氮元素含量的变化是影响催化剂活性的关键因素. 展开更多
关键词 质子交换膜燃料电池 氧还原反应 fen/c催化剂 活性 氮含量
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Preparation of high active Pt/C cathode electrocatalyst for direct methanol fuel cell by citrate-stabilized method 被引量:3
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作者 蒋庆来 彭忠东 +3 位作者 谢晓峰 杜柯 胡国荣 刘业翔 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第1期127-132,共6页
Platinum nanoparticles supported on carbons(Pt/C,60%,mass fraction) electrocatalysts for direct methanol fuel cell(DMFC) were prepared by citrate-stabilized method with different reductants and carbon supports.The... Platinum nanoparticles supported on carbons(Pt/C,60%,mass fraction) electrocatalysts for direct methanol fuel cell(DMFC) were prepared by citrate-stabilized method with different reductants and carbon supports.The catalysts were characterized by X-ray diffraction(XRD),transmission electron microscopy(TEM) and cyclic voltammetry(CV).It is found that the size of Pt nanoparticles on carbon is controllable by citrate addition and reductant optimization,and the form of carbon support has a great influence on electrocatalytic activity of catalysts.The citrate-stabilized Pt nanoparticles supported on BP2000 carbon,which was reduced by formaldehyde,exhibit the best performance with about 2 nm in diameter and 66.46 m2/g(Pt) in electrocatalytic active surface(EAS) area.Test on single DMFC with 60%(mass fraction) Pt/BP2000 as cathode electrocatalyst showed maximum power density at 78.8 mW/cm2. 展开更多
关键词 direct methanol fuel cell catalyst PT/c cITRATE reductant carbon support
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非均相Fenton催化剂深度处理维生素C废水的试验 被引量:4
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作者 李海松 毛圣捷 +2 位作者 王敏 黄萌萌 史豪杰 《环境化学》 CAS CSCD 北大核心 2014年第8期1391-1395,共5页
为了探究非均相Fenton催化剂对实际废水的处理效果,以维生素C二级生化出水为研究对象,分别考察了针铁矿、磁铁矿和硫铁矿烧渣等含铁矿物质以及部分金属或金属氧化物的吸附性能和非均相Fenton技术的催化氧化性能.选取硫铁矿烧渣作为负载... 为了探究非均相Fenton催化剂对实际废水的处理效果,以维生素C二级生化出水为研究对象,分别考察了针铁矿、磁铁矿和硫铁矿烧渣等含铁矿物质以及部分金属或金属氧化物的吸附性能和非均相Fenton技术的催化氧化性能.选取硫铁矿烧渣作为负载催化剂,融合CuO、Al2O3、TiO2、NiO、Cr2O3、Ag2O,利用高温微孔技术制备非均相Fenton催化剂,当H2O2、FeSO4投加量分别为6.87、4.29 mmol·L-1时,COD去除率能稳定达到70%左右. 展开更多
关键词 非均相fenton催化剂 金属氧化物加载 维生素c废水 深度处理
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N掺杂生物质炭支撑FeN-N-C催化剂及高效氧还原性能 被引量:1
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作者 刁金香 张超 +1 位作者 张玉竹 刘肖杰 《炭素技术》 CAS 北大核心 2022年第2期40-44,共5页
合成优于Pt/C性能的高效非贵金属催化剂仍旧是挑战。通过热处理生物质炭和硝酸铁的前驱体制备了一种新的高活性ORR电催化剂,FeN纳米颗粒分散在N掺杂的生物质炭上,所制备的FeN-N-C电催化剂表现出色的ORR活性,在0.1 mol/L KOH溶液中的半... 合成优于Pt/C性能的高效非贵金属催化剂仍旧是挑战。通过热处理生物质炭和硝酸铁的前驱体制备了一种新的高活性ORR电催化剂,FeN纳米颗粒分散在N掺杂的生物质炭上,所制备的FeN-N-C电催化剂表现出色的ORR活性,在0.1 mol/L KOH溶液中的半波电压为0.72 V,起始电压为0.87 V。FeN-N-C在碱性溶液中表现出优异的ORR活性。 展开更多
关键词 fen-N-c N掺杂生物质炭 电催化剂 氧还原反应
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热处理对FeN/C催化剂氧还原性能的影响 被引量:4
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作者 郑秋燕 沈亚云 +2 位作者 杨智 秦好丽 田娟 《功能材料》 EI CAS CSCD 北大核心 2019年第12期12142-12147,共6页
高活性、低沉本的阴极氧还原催化剂是目前质子交换膜燃料电池的重要研究内容之一。考察了FeN/C作为氧还原催化剂的催化性能,研究氨气气氛下的二次热处理对催化剂氧还原催化活性与稳定性的影响。使用X射线衍射、比表面积和孔径分布测试... 高活性、低沉本的阴极氧还原催化剂是目前质子交换膜燃料电池的重要研究内容之一。考察了FeN/C作为氧还原催化剂的催化性能,研究氨气气氛下的二次热处理对催化剂氧还原催化活性与稳定性的影响。使用X射线衍射、比表面积和孔径分布测试、透射电子显微镜等方法对催化剂的结构进行表征,使用线性扫描伏安法对催化剂的氧还原活性进行测试。结果表明,经二次热处理后,催化剂表现出更好的氧还原催化活性及稳定性。催化剂在二次热处理后,具有更高的比表面积(931.2 m^2/g)、较高的表面氮含量(1.67%(原子分数))、以及催化剂中存在的Fe3C,是其催化性能提高的可能原因。 展开更多
关键词 质子交换膜燃料电池 氧还原反应 fen/c催化剂 热处理 活性 稳定性
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硫源对FeNS/C催化剂氧还原活性的影响研究 被引量:1
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作者 魏成玲 沈亚云 +2 位作者 杨智 秦好丽 田娟 《贵州师范大学学报(自然科学版)》 CAS 2018年第6期54-58,共5页
在前期FeN/C催化剂研究的基础上,以不同的含硫化合物为硫源,在Ar气氛下高温热处理获得一系列FeNS/C催化剂。使用线性扫描伏安法测试催化剂的氧还原活性,通过热重分析、比表面积和孔径分布测试对催化剂前驱体的热性质及催化剂的结构等进... 在前期FeN/C催化剂研究的基础上,以不同的含硫化合物为硫源,在Ar气氛下高温热处理获得一系列FeNS/C催化剂。使用线性扫描伏安法测试催化剂的氧还原活性,通过热重分析、比表面积和孔径分布测试对催化剂前驱体的热性质及催化剂的结构等进行表征。结果表明,分别以硫脲为硫源,1,10-菲啰啉为氮源,FeCl_3为铁源,Black Pearl 2000为载体,催化剂前驱体中硫含量为1wt.%时,所得催化剂比表面积为559. 39 m^2/g,且催化剂表现出较好的氧还原催化活性。硫源的种类、热性质对催化剂的氧还原活性有着明显影响。 展开更多
关键词 质子交换膜燃料电池 氧还原活性 阴极催化剂 fenS/c催化剂 硫源
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热解型Fe-N-C催化剂在燃料电池阴极氧还原反应中的应用研究进展
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作者 孙寒雪 李孟雪 +3 位作者 焦芮 李吉焱 朱照琪 李安 《太阳能学报》 北大核心 2025年第12期29-40,共12页
该文总结了近年来铁氮共掺杂碳基催化剂(Fe-N-C)的制备策略和合成方法(模板法、浸渍法、原位捕获法等),重点梳理了以金属有机框架、有机多孔聚合物和生物质为前驱体制备热解型Fe-N-C催化剂的研究现状,讨论了Fe-N-C催化剂中活性位点的结... 该文总结了近年来铁氮共掺杂碳基催化剂(Fe-N-C)的制备策略和合成方法(模板法、浸渍法、原位捕获法等),重点梳理了以金属有机框架、有机多孔聚合物和生物质为前驱体制备热解型Fe-N-C催化剂的研究现状,讨论了Fe-N-C催化剂中活性位点的结构和反应机制,同时对该材料领域当前存在的挑战和未来重点发展方向进行了总结和展望。 展开更多
关键词 燃料电池 催化 氧还原反应 Fe-N-c 活性位点
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Hydrogen etching induced hierarchical meso/micro-pore structure with increased active density to boost ORR performance of Fe-N-C catalyst 被引量:4
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作者 Liqin Gao Meiling Xiao +3 位作者 Zhao Jin Changpeng Liu Junjie Ge Wei Xing 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第8期17-23,I0002,共8页
Rational regulation on pore structure and active site density plays critical roles in enhancing the performance of Fe-N-C catalysts. As the microporous structure of the carbon substrate is generally regarded as the ac... Rational regulation on pore structure and active site density plays critical roles in enhancing the performance of Fe-N-C catalysts. As the microporous structure of the carbon substrate is generally regarded as the active site hosts, its hostility to electron/mass transfer could lead to the incomplete fulfillment of the catalytic activity. Besides, the formation of inactive metallic Fe particles during the conventional catalyst synthesis could also decrease the active site density and complicate the identification of real active site. Herein, we developed a facial hydrogen etching methodology to yield single site Fe-N-C catalysts featured with micro/mesoporous hierarchical structure. The hydrogen concentration in pyrolysis process was designated to effectively regulate the pore structure and active site density of the resulted catalysts.The optimized sample achieves excellent ORR catalytic performance with an ultralow H2O2 yield(1%)and superb stability over 10,000 cycles. Our finding provides new thoughts for the rational design of hierarchically porous carbon-based materials and highly promising non-precious metal ORR catalysts. 展开更多
关键词 HIERARcHIcAL meso/micro-pore structure HYDROGEN ETcHING Single site Fe-N-c catalysts carbon-nitrogen-coordinated iron(fen4) Oxygen reduction reaction
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Preparation of Ultrafine and High Dispersion Pd/C Catalyst and Its Electrocatalytic Performance for Formic Acid Oxidation 被引量:8
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作者 TANG Ya-wen ZHANG Lin-lin +4 位作者 WANG Xin BAO Jian-chun ZHOU Yi-ming LU Lu-de LU Tian-hong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2009年第2期239-242,共4页
A carbon supported Pd(Pd/C) catalyst used as the anodic catalyst in the direct formic acid fuel cells(DFAFC) was prepared via the improved complex reduction method with sodium ethylenediamine tetracetate(EDTA) a... A carbon supported Pd(Pd/C) catalyst used as the anodic catalyst in the direct formic acid fuel cells(DFAFC) was prepared via the improved complex reduction method with sodium ethylenediamine tetracetate(EDTA) as stabilizer and complexing agent. This method is very simple. The average size of the Pd particles in the Pd/C catalyst prepared with the improved complex reduction method is as small as about 2.1 nm and the Pd particles in the Pd/C catalyst possess an excellent uniformity. The Pd/C catalyst shows a high electrocatalytic activity and stability for the formic acid oxidation. 展开更多
关键词 Pd/c catalyst complex reduction method Formic acid oxidation
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Ultralow platinum-loading PtPdRu@PtRuIr/C catalyst with excellent CO tolerance and high performance for the methanol oxidation reaction 被引量:3
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作者 Yan-Ni Wu Shi-Jun Liao +2 位作者 Hai-Fu Guo Xiang-Ying Hao Zhen-Xing Liang 《Rare Metals》 SCIE EI CAS CSCD 2014年第3期337-342,共6页
Carbon-supported PtPdRuIr, Pd@PtRuIr, PtPd@PtRuIr, and PtPdRu@PtRuIr catalysts were prepared by a colloidal method and their catalytic activities to the methanol oxidation reaction in the acidic media were extensively... Carbon-supported PtPdRuIr, Pd@PtRuIr, PtPd@PtRuIr, and PtPdRu@PtRuIr catalysts were prepared by a colloidal method and their catalytic activities to the methanol oxidation reaction in the acidic media were extensively investigated at room temperature. The catalysts were characterized by transmission electron microscopy and X-ray diffraction techniques, and their electrochemical behavior was evaluated by the cyclic voltammetry. The PtPdRu@PtRuIr/C catalyst is found to yield much higher electrocatalytic activity than the other ones and the commercial catalyst. For example, the Pt metal mass-specific activity of this PtPdRu@PtRuIr/C(Pt content 10 wt%,1.7 mAácm-2ámg-1) electrocatalyst is *3-fold higher than that of the commercial JM 40 % Pt/C(0.6 mAácm-2ámg-1)electrocatalysts, and the If/Ib ratio of PtPdRu@PtRuIr/C is1.6, which is higher than that of the JM 40 % Pt/C(0.9). The improvement may result from the high dispersion of the active metal catalyst and the synergistic effect between the PtRuIr and PtPdRu layers. It is thus concluded that the pseudo-core-shell structure could significantly improve the methanol electro-oxidation activity and CO tolerance of the electrocatalyst. 展开更多
关键词 catalyst colloidal approach Methanoloxidation PtPdRu@PtRuIr/c
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Preparation of Pt/C Catalyst with a New and Simple Organic Sol Method 被引量:4
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作者 YaWenTANG GangLI +2 位作者 ChangPengLIU WeiX1NG TianHongLU 《Chinese Chemical Letters》 SCIE CAS CSCD 2004年第7期875-878,共4页
It is reported for the first time that the Pt/C catalyst can be prepared with a new and simple organic sol method using SnCl2 as the reductant. It was found that the average size of the Pt particles in the Pt/C cataly... It is reported for the first time that the Pt/C catalyst can be prepared with a new and simple organic sol method using SnCl2 as the reductant. It was found that the average size of the Pt particles in the Pt/C catalysts could be controlled with controlling the preparation conditions. The effect of the average sizes of the Pt particles in the Pt/C catalysts obtained with this method on the electrocatalytical activity of the oxidation of methanol was investigated. 展开更多
关键词 Pt colloid Pt/c catalyst particle size.
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