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The role of copper valence states in CuZnAl catalysts for CO_(2)-to-methanol conversion
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作者 QIU Zhengpu XU Yunzhao +11 位作者 WANG Peng TAO Xiaoxia ZHANG Huimin CHEN Yang LIU Yi YANG Hua CAO Fenghai FU Yajie WU Lizhi TANG Yu XU Xiaoying TAN Li 《燃料化学学报(中英文)》 北大核心 2026年第4期58-67,共10页
CuZnAl(CZA)is a classic industrial catalyst widely used for the synthesis of methanol from syngas,but its catalytic performance is not optimal for the hydrogenation of CO_(2) to methanol.Meanwhile,understanding the ca... CuZnAl(CZA)is a classic industrial catalyst widely used for the synthesis of methanol from syngas,but its catalytic performance is not optimal for the hydrogenation of CO_(2) to methanol.Meanwhile,understanding the catalytic mechanism of Cu species in the CZA catalyst remains a great challenge.In this study,we systematically investigated the valence state change of active Cu species in CZA catalyst and their influence on catalytic performance by modifying the catalysts with varying amounts of electron donor K,thus identifying the catalytic function of Cu species with different valence states.H2-TPR,XPS and HR-TEM characterizations reveal that the highly dispersed K species supported on CZA catalysts will inhibit the reduction of CuO,resulting in a small amount of Cu_(2)O active species being produced under reaction conditions thus causing a decrease in catalytic activity.Furthermore,XRD and Cu LMM spectra show that the proportion of Cu^(0) in K-modified CZA catalysts increases with K loading,but a higher proportion of Cu^(0) species on the surface obviously promotes the reverse water gas shift(RWGS)reaction.According to the results of in situ infrared spectroscopy,CZA catalyst follows the reaction pathway mediated by HCOO^(*)in the hydrogenation of CO_(2) to methanol. 展开更多
关键词 CO_(2)hydrogenation CuZnAl catalysts METHANOL active species electronic promoter
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Single-atom catalysts for CO_(2)-to-methanol conversion:A critical review
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作者 Jingying Wang Jianhui Zhao +2 位作者 Shaopo Wang Jingjie Yu Ning Li 《Chinese Chemical Letters》 2026年第2期274-283,共10页
Catalytic CO_(2)-to-methanol conversion presents a synergistic approach for concurrent greenhouse gas abatement and sustainable energy carrier synthesis.Single-atom catalysts(SACs)with maximized atomic utilization,tai... Catalytic CO_(2)-to-methanol conversion presents a synergistic approach for concurrent greenhouse gas abatement and sustainable energy carrier synthesis.Single-atom catalysts(SACs)with maximized atomic utilization,tailored electronic configurations and unique metal-support interactions,exhibit superior performance in CO_(2) activation and methanol synthesis.This review systematically compares reaction mechanisms and pathways across thermal,photocatalytic and electrocatalytic systems,emphasizing structure-activity relationships governed by active sites,coordination microenvironments and support functionalities.Through case studies of representative SACs,we elucidate how metal-support synergies dictate intermediate binding energetics and methanol selectivity.A critical analysis of reaction parameters(e.g.,temperature,pressure)reveals condition-dependent catalytic behaviors in thermal system,with fewer studies in photo/electrocatalytic systems identified as key knowledge gaps.While thermal catalysis achieves industrially viable methanol yields,the scalability is constrained by energy-intensive operation and catalyst sintering.Conversely,photo/electrocatalytic routes offer renewable energy integration but suffer from inefficient charge dynamics and mass transport limitations.To address the challenges,we propose strategic research priorities on precise design of active sites,synergy of multiple technological pathways,development of intelligent catalytic systems and diverse CO_(2) feedstock compatibility.These insights establish a framework for developing next-generation SACs,offering both theoretical foundations and technological blueprints for developing carbon-negative catalytic technologies. 展开更多
关键词 Single-atom catalysts CO_(2)conversion METHANOL CATALYSIS
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Multidimensional coordination engineering of single-atom catalysts for boosting electrochemical CO_(2) reduction
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作者 Zemin Feng Huangcong Tang +3 位作者 Chenghong Hu Kui Shen Liyu Chen Yingwei Li 《Journal of Energy Chemistry》 2026年第3期929-935,共7页
The breaking of the symmetric electronic distribution of single-atom catalysts is effective in improving the intrinsic activity.However,traditional modification strategies can only disrupt the electronic distribution ... The breaking of the symmetric electronic distribution of single-atom catalysts is effective in improving the intrinsic activity.However,traditional modification strategies can only disrupt the electronic distribution in one dimension,resulting in limited regulation of electronic structure.Herein,we report a multidimensional coordination strategy to significantly break the symmetrical electron distribution of the metal single site to achieve highly efficient electrochemical CO_(2) reduction reaction(CO_(2) RR).Ni singleatom sites decorated with planar P and axial Cl atoms are successfully constructed on carbon support(Ni-NPCl-C).Ni-NPCl-C affords CO Faraday efficiency over 90%in a wide potential window range from-0.5 to-1.2 V and an ultrahigh turnover frequency of 1.17×10^(5)h^(-1),much superior to its counterparts with single-dimensional coordination.Ni-NPCl-C can be further applied as a bifunctional catalyst to construct a rechargeable Zn-CO_(2) battery.Spectroscopic characterizations and theoretical calculations demonstrate that the dual adjustments with axial Cl and planar P can synergistically disrupt the electron distribution in two dimensions to increase electrons around Ni sites with the upshift of the d-band center,thereby facilitating the formation of*COOH intermediates and improving the CO_(2) RR performance. 展开更多
关键词 ELECTROCATALYSIS CO_(2)reduction Electronic modulation Single atom catalysts Zn-CO_(2)battery
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纳米SiO_(2)和混杂纤维增强环氧树脂水泥基修复材料抗压强度研究
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作者 吴靖江 张鹏 +2 位作者 尉晓雪 张承实 魏士尧 《华北水利水电大学学报(自然科学版)》 北大核心 2026年第2期103-110,共8页
【目的】研究纳米SiO_(2)和混杂纤维增强环氧树脂水泥基修复材料(NF-ECRM)抗压强度的变化规律,揭示环氧树脂乳液、纳米SiO_(2)和聚乙烯醇(PVA)-钢混杂纤维对抗压强度的影响机理。【方法】通过立方体抗压强度试验分析了环氧树脂、纳米SiO... 【目的】研究纳米SiO_(2)和混杂纤维增强环氧树脂水泥基修复材料(NF-ECRM)抗压强度的变化规律,揭示环氧树脂乳液、纳米SiO_(2)和聚乙烯醇(PVA)-钢混杂纤维对抗压强度的影响机理。【方法】通过立方体抗压强度试验分析了环氧树脂、纳米SiO_(2)和PVA-钢混杂纤维的掺量对NF-ECRM抗压强度的影响规律;通过扫描电子显微镜试验研究,揭示NF-ECRM抗压强度的增强机理。【结果】随着环氧树脂掺量的增加,环氧树脂水泥基修复材料和NF-ECRM的抗压强度均呈下降趋势;NF-ECRM的抗压强度随着纳米SiO_(2)掺量的增加呈逐渐上升的趋势,随着PVA纤维掺量的增加呈先增大后减小的趋势,且在PVA纤维掺量增加至0.9%时达到峰值。【结论】环氧树脂可有效缓解水泥基修复材料基体内应力,抑制微裂纹的产生和扩展;纳米SiO_(2)可减少水泥基修复材料基体孔洞缺陷,提高界面过渡区的致密性;PVA-钢混杂纤维可显著提高水泥基修复材料基体的整体性和抗裂性。 展开更多
关键词 环氧树脂 纳米sio 2 PVA纤维 钢纤维 抗压强度
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临氢热解制备高分散Ni/SiO_(2)及萘加氢性能
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作者 梁正 罗雷 +2 位作者 王小曼 苏秋成 仇松柏 《中山大学学报(自然科学版)(中英文)》 北大核心 2026年第2期124-135,共12页
萘作为煤焦油中含量最为丰富的多环芳烃,不仅是一种环境污染物,也是一种高附加值的化工原料。通过催化加氢,萘可转化为具有更高价值的四氢萘和十氢萘。在各类加氢催化剂中,负载型镍基材料因其成本优势,被视为潜在的非贵金属替代方案。... 萘作为煤焦油中含量最为丰富的多环芳烃,不仅是一种环境污染物,也是一种高附加值的化工原料。通过催化加氢,萘可转化为具有更高价值的四氢萘和十氢萘。在各类加氢催化剂中,负载型镍基材料因其成本优势,被视为潜在的非贵金属替代方案。本研究采用柠檬酸(CA)辅助的溶胶凝胶法,结合临氢热解策略,成功制备了高分散Ni/SiO_(2)催化剂。通过系统表征与催化性能测试,重点探究了柠檬酸用量、热解气氛及临氢热解温度对催化剂物化性质与萘加氢性能的调控规律。结果表明,在优化的柠檬酸配比与H_(2)气氛下热解所得的w=20%Ni/SiO_(2)-CA(H_(2))催化剂,表现出优于无CA对照组及其他热解工艺催化剂的加氢活性。在相同低温反应条件下,其活性显著高于商业Ru/C催化剂。本研究为开发高效非贵金属加氢催化剂提供了新思路与实验依据。 展开更多
关键词 高分散Ni/sio_(2)催化剂 溶液凝胶法 临氢热解 萘加氢反应
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Cu/SiO_(2)催化剂的制备及其乙醇脱氢制乙醛性能
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作者 魏浩宇 李晓晨 +4 位作者 苏振宇 王春雪 宋诗鹏 王国玮 祝晓琳 《石化技术与应用》 2026年第1期8-12,19,共6页
分别采用NH_(3)蒸发法和浸渍法制备了一系列Cu/SiO_(2)催化剂,利用X射线粉末衍射仪、全自动多用吸附仪、物理吸附仪、透射电子显微镜等仪器对上述催化剂进行了表征,考察了催化剂制备参数和反应条件对乙醇脱氢反应性能的影响。结果表明:... 分别采用NH_(3)蒸发法和浸渍法制备了一系列Cu/SiO_(2)催化剂,利用X射线粉末衍射仪、全自动多用吸附仪、物理吸附仪、透射电子显微镜等仪器对上述催化剂进行了表征,考察了催化剂制备参数和反应条件对乙醇脱氢反应性能的影响。结果表明:相比浸渍法,NH_(3)蒸发法制备的催化剂的活性组分金属Cu分散得更均匀,在乙醇脱氢反应中呈现出更高的催化活性;NH_(3)蒸发法制备的催化剂在Cu负载量(质量分数)为5%,反应温度为320℃,进料质量空速为2 h-1的优化条件下,乙醇转化率约为85.0%,乙醛选择性高于95.0%,且在60 h内呈现出良好的反应稳定性。 展开更多
关键词 Cu/sio_(2)催化剂 制备方法 NH_(3)蒸发法 金属负载量 乙醇脱氢 乙醛 稳定性 选择性
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Progress in MOF-based catalyst design and reaction mechanisms for CO_(2)hydrogenation to methanol
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作者 YU Zhifu JIANG Lei WU Mingbo 《燃料化学学报(中英文)》 北大核心 2026年第1期146-162,共17页
Against the backdrop of escalating global climate change and energy crises,the resource utilization of carbon dioxide(CO_(2)),a major greenhouse gas,has become a crucial pathway for achieving carbon peaking and carbon... Against the backdrop of escalating global climate change and energy crises,the resource utilization of carbon dioxide(CO_(2)),a major greenhouse gas,has become a crucial pathway for achieving carbon peaking and carbon neutrality goals.The hydrogenation of CO_(2)to methanol not only enables carbon sequestration and recycling,but also provides a route to produce high value-added fuels and basic chemical feedstocks,holding significant environmental and economic potential.However,this conversion process is thermodynamically and kinetically limited,and traditional catalyst systems(e.g.,Cu/ZnO/Al_(2)O_(3))exhibit inadequate activity,selectivity,and stability under mild conditions.Therefore,the development of novel high-performance catalysts with precisely tunable structures and functionalities is imperative.Metal-organic frameworks(MOFs),as crystalline porous materials with high surface area,tunable pore structures,and diverse metal-ligand compositions,have the great potential in CO_(2)hydrogenation catalysis.Their structural design flexibility allows for the construction of well-dispersed active sites,tailored electronic environments,and enhanced metal-support interactions.This review systematically summarizes the recent advances in MOF-based and MOF-derived catalysts for CO_(2)hydrogenation to methanol,focusing on four design strategies:(1)spatial confinement and in situ construction,(2)defect engineering and ion-exchange,(3)bimetallic synergy and hybrid structure design,and(4)MOF-derived nanomaterial synthesis.These approaches significantly improve CO_(2)conversion and methanol selectivity by optimizing metal dispersion,interfacial structures,and reaction pathways.The reaction mechanism is further explored by focusing on the three main reaction pathways:the formate pathway(HCOO*),the RWGS(Reverse Water Gas Shift reaction)+CO*hydrogenation pathway,and the trans-COOH pathway.In situ spectroscopic studies and density functional theory(DFT)calculations elucidate the formation and transformation of key intermediates,as well as the roles of active sites,metal-support interfaces,oxygen vacancies,and promoters.Additionally,representative catalytic performance data for MOFbased systems are compiled and compared,demonstrating their advantages over traditional catalysts in terms of CO_(2)conversion,methanol selectivity,and space-time yield.Future perspectives for MOF-based CO_(2)hydrogenation catalysts will prioritize two main directions:structural design and mechanistic understanding.The precise construction of active sites through multi-metallic synergy,defect engineering,and interfacial electronic modulation should be made to enhance catalyst selectivity and stability.In addition,advanced in situ characterization techniques combined with theoretical modeling are essential to unravel the detailed reaction mechanisms and intermediate behaviors,thereby guiding rational catalyst design.Moreover,to enable industrial application,challenges related to thermal/hydrothermal stability,catalyst recyclability,and cost-effective large-scale synthesis must be addressed.The development of green,scalable preparation methods and the integration of MOF catalysts into practical reaction systems(e.g.,flow reactors)will be crucial for bridging the gap between laboratory research and commercial deployment.Ultimately,multi-scale structure-performance optimization and catalytic system integration will be vital for accelerating the industrialization of MOF-based CO_(2)-to-methanol technologies. 展开更多
关键词 CO_(2)hydrogenation metal-organic frameworks(MOFs) catalyst design reaction mechanism METHANOL
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CaO-Co_(3)O_(4)/SiO_(2)催化氧化环戊烯制备环戊酮的研究
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作者 宋志强 李红良 +4 位作者 贾太轩 明岩 聂鹏 赵利娜 王孟奇 《工业催化》 2026年第1期43-46,共4页
在原料投料比n(二氧化硅)∶n(硝酸钴)∶n(硝酸钙)=3∶1∶0.02下,采用浸渍法制备了催化剂CaO-Co_(3)O_(4)/SiO_(2),并用于以过氧化氢氧化环戊烯制备环戊酮反应。在自搭建分离精制装置对反应液提纯,得到环戊酮样品,并对环戊酮进行FTIR、GC... 在原料投料比n(二氧化硅)∶n(硝酸钴)∶n(硝酸钙)=3∶1∶0.02下,采用浸渍法制备了催化剂CaO-Co_(3)O_(4)/SiO_(2),并用于以过氧化氢氧化环戊烯制备环戊酮反应。在自搭建分离精制装置对反应液提纯,得到环戊酮样品,并对环戊酮进行FTIR、GC、^(1)H-NMR和^(13)C-NMR分析检测,FTIR从化学键角度揭示出五元环酮类的微观结构。GC检测出环戊酮纯度为99.981%。^(1)H-NMR和^(13)C-NMR波谱分析检测出氢原子数为8,碳原子数为5,与分子式C_(5)H_(8)O相吻合,本研究为技术工业集成和开拓应用提供了基础实验数据。 展开更多
关键词 催化剂工程 环戊烯 环戊酮 催化氧化 CaO-Co_(3)O_(4)/sio_(2)
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Recent Advances in Regulation Strategy and Catalytic Mechanism of Bi-Based Catalysts for CO_(2) Reduction Reaction
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作者 Jianglong Liu Yunpeng Liu +5 位作者 Shunzheng Zhao Baotong Chen Guang Mo Zhongjun Chen Yuechang Wei Zhonghua Wu 《Nano-Micro Letters》 2026年第1期647-697,共51页
Using photoelectrocatalytic CO_(2) reduction reaction(CO_(2)RR)to produce valuable fuels is a fascinating way to alleviate environmental issues and energy crises.Bismuth-based(Bi-based)catalysts have attracted widespr... Using photoelectrocatalytic CO_(2) reduction reaction(CO_(2)RR)to produce valuable fuels is a fascinating way to alleviate environmental issues and energy crises.Bismuth-based(Bi-based)catalysts have attracted widespread attention for CO_(2)RR due to their high catalytic activity,selectivity,excellent stability,and low cost.However,they still need to be further improved to meet the needs of industrial applications.This review article comprehensively summarizes the recent advances in regulation strategies of Bi-based catalysts and can be divided into six categories:(1)defect engineering,(2)atomic doping engineering,(3)organic framework engineering,(4)inorganic heterojunction engineering,(5)crystal face engineering,and(6)alloying and polarization engineering.Meanwhile,the corresponding catalytic mechanisms of each regulation strategy will also be discussed in detail,aiming to enable researchers to understand the structure-property relationship of the improved Bibased catalysts fundamentally.Finally,the challenges and future opportunities of the Bi-based catalysts in the photoelectrocatalytic CO_(2)RR application field will also be featured from the perspectives of the(1)combination or synergy of multiple regulatory strategies,(2)revealing formation mechanism and realizing controllable synthesis,and(3)in situ multiscale investigation of activation pathways and uncovering the catalytic mechanisms.On the one hand,through the comparative analysis and mechanism explanation of the six major regulatory strategies,a multidimensional knowledge framework of the structure-activity relationship of Bi-based catalysts can be constructed for researchers,which not only deepens the atomic-level understanding of catalytic active sites,charge transport paths,and the adsorption behavior of intermediate products,but also provides theoretical guiding principles for the controllable design of new catalysts;on the other hand,the promising collaborative regulation strategies,controllable synthetic paths,and the in situ multiscale characterization techniques presented in this work provides a paradigm reference for shortening the research and development cycle of high-performance catalysts,conducive to facilitating the transition of photoelectrocatalytic CO_(2)RR technology from the laboratory routes to industrial application. 展开更多
关键词 Bismuth-based catalysts CO_(2)reduction reaction Regulation strategy Catalytic mechanism REVIEW
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Anion-regulated reconstruction of bismuth-based electrocatalysts for enhanced electrocatalytic CO_(2) reduction
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作者 Lili Wang Bangwei Deng +5 位作者 Hongtao Xie Xianlong Lu Pengcheng Xiang Xueyang Zhao Yizhao Li Fan Dong 《Journal of Energy Chemistry》 2026年第2期598-609,I0014,共13页
Elucidating the active site formation mechanism of bismuth(Bi)-based catalysts in electrochemical CO_(2)reduction remains challenging for achieving high activity,selectivity,and long-term stability.Here we confirm thr... Elucidating the active site formation mechanism of bismuth(Bi)-based catalysts in electrochemical CO_(2)reduction remains challenging for achieving high activity,selectivity,and long-term stability.Here we confirm through experimental results that Bi-based catalysts containing halogen ions(I^(-),Cl^(-),Br^(-))and SO_(4)^(2-)maintain the system stability,keeping Faraday efficiency of formic acid above90%in the current range of 50-800 mA cm^(-2).In contrast,anions containing S^(2-)and NO_(3)^(-)in the electrolyte can be reduced to produce by-products.These anions and their by-products could poison the active center,leading to increased side reactions and thus significantly reducing the Faraday efficiency of formic acid.The combination of non-in situ and in situ characterization results revealed that the Bi-based catalysts all underwent the transition from the initial state to the Bi/Bi_(2)O_(2)CO_(3)(BOC)intermediate state in high-concentration KHCO_(3) solution,and the different anions could selectively modulate the degree of exposure of specific crystalline surfaces of BOC.At the late stage of the reaction,BOC was completely converted to metal Bi and became the real active center.Combined with in situ IR and DFT calculations,it is further verified that^(*)OCHO is the key intermediate on the metallic Bi surface,which is most favorable for formic acid formation.This study reveals the key mechanism by which anions affect the formation of active sites via modulating the catalyst reconstruction process,which provides an important theoretical basis for the design and optimization of test conditions of Bi-based catalysts. 展开更多
关键词 Bismuth-based catalysts Surface reconstruction Electrocatalytic CO_(2)reduction Anion effects In situ spectroscopy
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Preparation and electrochemical performance of nitrogen-doped carbon-coated Cu_(x)S nanobox catalyst for hybrid Na-CO_(2)batteries
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作者 Jing ZHAN Zi-zhuo HUA +1 位作者 Fei-xiang WU Qi-hou LI 《Transactions of Nonferrous Metals Society of China》 2026年第3期929-942,共14页
To promote CO_(2)redox kinetics on the cathode of hybrid sodium-carbon dioxide(Na-CO_(2))batteries,hollow cubic CuS nanoboxes were encapsulated in polypyrrole and polydopamine by in situ polymerization of pyrrole and ... To promote CO_(2)redox kinetics on the cathode of hybrid sodium-carbon dioxide(Na-CO_(2))batteries,hollow cubic CuS nanoboxes were encapsulated in polypyrrole and polydopamine by in situ polymerization of pyrrole and dopamine monomers,respectively,and coupled with high-temperature heat treatment to obtain nitrogen-carbon encapsulated Cu_(x)S@NC_(PPy)and Cu_(x)S@NCPDA catalysts.The results show that the encapsulation of nitrogen-doped carbon not only increases the specific surface area and improves the electron affinity but also promotes the synergistic interaction between the CuS-based active species and the defect carbon,thus providing abundant active sites for CO_(2)conversion.The electrochemical performances of the carbon-coated modified samples were all improved,especially the hybrid Na-CO_(2)battery based on Cu_(x)S@NC_(PPy),which showed a low voltage gap of 0.74 V at 0.1 mA/cm^(2)and a high power density of 3.42 mW/cm^(2). 展开更多
关键词 CO_(2)reutilization copper(I)sulfide catalyst nitrogen-doped carbon high power density Na-CO_(2)batteries
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Asymmetric coupling of atop-type and hollow-type adsorbed ^(*)CO to boost electrocatalytic CO_(2)-to-C_(2) conversion on high-index Cu_(2)O crystal planes
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作者 Wei Peng Yao Shen +6 位作者 Xiaolin Yu Chenghang Zheng Xiao Zhang Jingkai Zhao Jiexu Ye Shihan Zhang Xiang Gao 《Chinese Chemical Letters》 2026年第1期577-583,共7页
Cuprous oxide(Cu_(2)O) is one of the most promising catalysts for electrochemical conversion of CO_(2) into value-added C_(2) products.The efficiency of CO_(2)-to-C_(2) conversion is highly dependent on the Cu_(2)O cr... Cuprous oxide(Cu_(2)O) is one of the most promising catalysts for electrochemical conversion of CO_(2) into value-added C_(2) products.The efficiency of CO_(2)-to-C_(2) conversion is highly dependent on the Cu_(2)O crystal plane orientation and the corresponding adsorbed ^(*)CO species.Herein,we constructed high-index crystal planes(311) in Cu_(2)O(CO-Cu_(2)O) via a facile self-selective CO-induced strategy under a CO atmosphere,which was verified by high-resolution transmission electron microscopy(HR-TEM) and atomic force microscopy(AFM) results.By exploiting the high surface energy of the high index crystal planes,^(*)CO species are stabilized in CO-Cu_(2)O during CO_(2)RR,resulting in exceptional catalytic performance for CO_(2)-to-C_(2)products.In situ infrared spectroscopy revealed that both atop-type(^(*)CO_(atop)) and hollow-type(^(*)CO_(hollow)) adsorption of ^(*)CO species occurred on the CO-Cu_(2)O.The asymmetric C-C coupling energy barrier between ^(*)CO_(atop) and ^(*)CO_(hollow) in(311) crystal plane decreases by 47.8 % compared to the symmetric coupling of ^(*)CO_(atop) in conventional(100) crystal planes.Consequently,the Faradaic efficiency of C_(2) products generated with CO-Cu_(2)O was increased by as high as 100 % compared to that with pristine Cu_(2)O. 展开更多
关键词 Electrocatalytic conversion Adsorbed^(*)CO Asymmetric C-C coupling Self-selective CO-induced strategy Cu_(2)O-based catalysts
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丝胶蛋白/SiO2纳米复合溶胶对芳纶服用性能的影响
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作者 田恬 尉霞 +3 位作者 康青青 罗璟娴 王庆博 刘阳 《纺织科技进展》 2026年第1期27-30,共4页
为解决芳纶织物服用性能不足的问题,制备丝胶蛋白/SiO2纳米复合溶胶并将其整理到间位芳纶上,研制出不同复合溶胶的织物试样,并探究复合溶胶浓度对芳纶织物服用性能的影响。结果表明,当复合溶胶浓度为4%时,整理后织物的各项性能较好。在... 为解决芳纶织物服用性能不足的问题,制备丝胶蛋白/SiO2纳米复合溶胶并将其整理到间位芳纶上,研制出不同复合溶胶的织物试样,并探究复合溶胶浓度对芳纶织物服用性能的影响。结果表明,当复合溶胶浓度为4%时,整理后织物的各项性能较好。在最优整理条件(浓度4%)下,间位芳纶的回潮率、导湿性、抗静电性及透湿性均有所改善,而透气性略微下降,总体而言,芳纶织物的服用性能得到改善。 展开更多
关键词 丝胶蛋白/sio2纳米复合溶胶 间位芳纶 服用性能
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Doping engineering in copper-based electrocatalysts:A strategic approach for enhancing CO_(2) electroreduction efficiency
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作者 Meifang Huang Chenjing Wang +3 位作者 Yanru Yuan Binbin Jia Xiaoyu Fan Jinlong Zheng 《Journal of Energy Chemistry》 2026年第2期622-668,I0014,共48页
Electrocatalytic carbon dioxide reduction is a crucial method for addressing energy issues and achieving carbon neutrality.Doping of Cu catalysts represents an effective approach to regulate electrocatalytic carbon di... Electrocatalytic carbon dioxide reduction is a crucial method for addressing energy issues and achieving carbon neutrality.Doping of Cu catalysts represents an effective approach to regulate electrocatalytic carbon dioxide reduction.This review article summarizes the research progress on improving the performance of Cu-based material electrocatalysts through doping regulation.The background,fundamental research,evaluation parameters,and methods for catalyst design,along with their influencing factors,are introduced.Emphasis is placed on the impact of doping with different elements(such as noble metals,transition metals,main-group metals,non-metals,etc.)on the performance of Cu-based catalysts,including the mechanisms for enhancing activity,selectivity,and stability.In-situ characterization techniques have revealed the structural evolution and catalytic mechanisms during the doping process.Mechanistic studies,leveraging the ever-advancing computational capabilities and high-throughput methods,have given rise to typical computational descriptors like volcano plots,free-energy diagrams,and machine-learning-based approaches.These descriptors have become key tools for screening high-efficiency catalysts in various application scenarios of the electrochemical carbon dioxide reduction reaction(CO_(2)RR).This article comprehensively summarizes the current research achievements and looks ahead to the future,indicating that strengthening the combination of theory and experiment and exploring industrial applications are the future research directions,aiming to provide a comprehensive reference for the development of highly efficient doped Cu-based electrocatalysts. 展开更多
关键词 Cu-based doped catalysts Electrochemical CO_(2)RR Doping strategies Operando characterization Machine learning descriptors
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Insight into plasma-catalytic CO_(2)methanation mechanism at Ni-Ov-Ni and basic sites in NaF-modified Ni/La_(2)O_(3)catalysts with excellent activity
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作者 Cenxin Ma Jin Zhang +2 位作者 Ke Yin Ziwei Wang Daiqi Ye 《Journal of Energy Chemistry》 2026年第1期170-182,I0005,共14页
Large-scale CO_(2)emissions have exacerbated the greenhouse effect,reinforcing the critical need for efficient CO_(2)mitigation methods.Plasma-catalytic technology enables CO_(2)conversion under mild conditions,especi... Large-scale CO_(2)emissions have exacerbated the greenhouse effect,reinforcing the critical need for efficient CO_(2)mitigation methods.Plasma-catalytic technology enables CO_(2)conversion under mild conditions,especially for CO_(2)methanation(the Sabatier reaction),which has attracted significant attention due to its economic benefits and the potential for safe energy transportation via existing natural gas pipelines.The development of high-performance CO_(2)methanation catalysts remains an ongoing and long-term objective,and there is a lack of adequate in-situ characterization techniques to investigate the mechanisms.This study focuses on the Ni/La_(2)O_(3)(LN)catalyst and introduces two CO_(2)activation strategies through F and Na modifications:the Ni-Ov-Ni site activation with electron transfer from Ni0 under low-power conditions and basic site activation under high-power conditions.The LN-NaF catalysts enhance CO_(2)methanation activity across the entire power range compared to LN,achieving a CO_(2)conversion of 86.3%and CH4 selectivity of 99.4%.Additionally,LN-F(h)reaches a CH4 yield 4.15 times higher than that of LN at low power.Furthermore,in-situ diffuse reflectance infrared Fourier transform(DRIFT)spectroscopy with a self-made reactor are performed under plasma-catalytic conditions to reveal the CO_(2)adsorption and conversion mechanisms,indicating that different dopants(F,Na,and NaF)exhibit promoting effects on different intermediates,resulting in variations in CO_(2)methanation activity.This study provides valuable insights for improving catalyst performance and a thorough comprehension of mechanisms in CO_(2)methanation. 展开更多
关键词 NaF-Ni/La_(2)O_(3)catalysts Ni-Oy-Ni activity site Dual CO_(2)activation sites Plasma-catalytic CO_(2)methanation Plasma-catalytic in-situ DRIFTs
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Selective Synthesis of Bio-based Benzaldehyde Using Magnetic CoFe_(2)O_(4)@Biochar(HTR)Catalyst
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作者 Wanyun Tang Yuehui Luo +2 位作者 Can Zhu Nan Huang Quanxin Li 《Chinese Journal of Chemical Physics》 2026年第1期125-135,I0034-I0041,I0043,共20页
Developing green and efficient methods to acquire lignocellulose-based chemicals with high added value is beneficial for facilitating green chemistry and sustainable development.The goal of this study is to demonstrat... Developing green and efficient methods to acquire lignocellulose-based chemicals with high added value is beneficial for facilitating green chemistry and sustainable development.The goal of this study is to demonstrate that bio-based benzaldehyde,a noteworthy high-value chemical,is able to be directionally prepared from lignocellulosic biomass.This new control-lable transformation was materialized by uniting catalytic-pyrolysis of lignocellulose to toluene intermediate and catalytic oxidation of toluene intermediate to bio-based benzalde-hyde.This work also developed a highly active magnetic catalyst(CoFe_(2)O_(4)@Biochar(HTR)),achieving 77.1%benzaldehyde selectivity and 46.7%benzaldehyde yield using this catalyst.It was found that introducing the biochar carrier into the cobalt iron composite metal oxide cat-alyst enhanced hydroxyl radical formation and bio-based benzaldehyde synthesis.Based on catalyst characterizations and hydroxyl radical analysis,potential reaction mechanism for bio-based benzaldehyde synthesis was proposed.This strategy may provide a beneficial pathway for developing high-value bio-based chemical(benzaldehyde)using renewable lignocellulosic biomass. 展开更多
关键词 Lignocellulosic biomass Bio-based benzaldehyde Selective oxidation Toluene intermediate CoFe_(2)O_(4)@Biochar(HTR)catalyst
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纳米TiO_(2)-SiO_(2)复合光催化剂在污水降解中的应用
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作者 王楠楠 高树会 +1 位作者 朱孟龙 彭佃钦 《工业催化》 2026年第2期73-78,共6页
污水中常含有多种复杂有机物、重金属离子等,单一催化剂难以高效降解所有污染物。通过制备纳米Ti O_(2)-SiO_(2)复合光催化剂,揭示复合催化剂对污水有机污染物的降解原理,为污水治理提供一种可靠的解决方案。基于Ti O_(2)粉体和SiO_(2)... 污水中常含有多种复杂有机物、重金属离子等,单一催化剂难以高效降解所有污染物。通过制备纳米Ti O_(2)-SiO_(2)复合光催化剂,揭示复合催化剂对污水有机污染物的降解原理,为污水治理提供一种可靠的解决方案。基于Ti O_(2)粉体和SiO_(2)粉体,利用溶胶-凝胶法制备了不同质量配比的纳米Ti O_(2)-SiO_(2)复合光催化剂并模拟不同pH值的污水,设定不同的光照条件,对制备的催化剂性能进行测试。在不同质量配比催化剂性能对比结果中,A4催化剂对不同pH值污水的降解率数值最大,为65.12%;在光照条件对催化剂性能的分析过程中,G006条件能够大幅降低污水中污染物的浓度,其降解率为85.15%。当光照强度为200 m W/cm^(2)、光照时间为90min时,Ti O_(2)质量分数为75%、SiO_(2)质量分数为20%的复合光催化剂在污水降解处理中的应用性能最佳。 展开更多
关键词 水污染防治工程 纳米TiO_(2)-sio_(2)复合催化剂 光催化 降解率 光照条件
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100%Conversion of CO_(2)-CH_(4)with Non‑Precious Co@ZnO Catalyst in Hot Water
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作者 Yang Yang Xu Liu +1 位作者 Daoping He Fangming Jin 《Nano-Micro Letters》 2025年第9期251-264,共14页
The combination of solar energy and natural hydro-thermal systems will innovate the chemistry ofCO_(2)hydrogenation;however,the approach remains challenging due to the lack of robust and cost-effective catalytic syste... The combination of solar energy and natural hydro-thermal systems will innovate the chemistry ofCO_(2)hydrogenation;however,the approach remains challenging due to the lack of robust and cost-effective catalytic system.Here,Zn which can be recycled with solar energy-induced approach was chosen as the reductant and Co as catalyst to achieve robust hydrothermalCO_(2)methanation.Nanosheets of honeycomb ZnO were grown in situ on the Co surface,resulting in a new motif(Co@ZnO catalyst)that inhibits Co deacti-vation through ZnO-assistedCoOx reduction.The stabilized Co and interaction between Co and ZnO functioned collaboratively toward the full conversion ofCO_(2)–CH_(4).In situ hydrothermal infrared spectros-copy confirmed the formation of formic acid as an intermediate,thereby avoiding CO formation and unwanted side reaction pathways.This study presents a straightforward one-step process for both highly efficientCO_(2)conversion and catalyst synthesis,paving the way for solar-drivenCO_(2)methanation. 展开更多
关键词 CO_(2)methanation Cobalt catalyst HYDROTHERMAL Formic acid Co@ZnO catalyst
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Integrated CO_(2)capture and electrochemical reduction:From mechanism understanding to gas diffusion electrode and catalyst design
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作者 Xinyu Zhang Ming Sun +3 位作者 Yao Wang Hanya Zhang Juan Du Aibing Chen 《Journal of Energy Chemistry》 2025年第7期81-100,共20页
Integrating the CO_(2)capture process with the CO_(2)electrochemical reduction process into a single system can eliminate the need for storage and transportation following CO_(2)capture.This integrated process offers ... Integrating the CO_(2)capture process with the CO_(2)electrochemical reduction process into a single system can eliminate the need for storage and transportation following CO_(2)capture.This integrated process offers several advantages over multi-step cascade processes,including reduced costs and enhanced CO_(2)utilization.However,the integrated CO_(2)capture and electrochemical reduction(CCER)process encounters several challenges,including the low CO_(2)adsorption performance of the gas diffusion electrode(GDE)and catalyst,as well as the poor activity and selectivity of the catalyst for the electrochemical reduction of CO_(2).This review aims to systematically summarize the fundamentals of the CCER process.Based on an in-depth understanding of the CO_(2)mass transfer,adsorption,and electrochemical reduction processes,GDE design strategies based on the modulation of wettability and structure are discussed to enhance the CO_(2)capture capability at the GDE level.At the catalyst level,catalyst design strategies based on the introduction of CO_(2)capture sites and the construction of CO_(2)mass transfer channels were analyzed,and catalyst design strategies for enhanced CO_(2)capture were proposed.This review summarizes the most common catalysts for CO_(2)electrochemical reduction,such as Ni-based,Bi-based,and Cubased catalysts,and analyzes their design strategies based on reaction pathways for generating specific products.Finally,the problems and challenges of the CCER process are summarized and proposed,which provide ideas for the further application of this technology in the future. 展开更多
关键词 CO_(2)capture Electrochemical reduction Gasdiffusion electrode catalyst Application
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Electrochemical CO_(2)RR to C^(2+)products:A vision of dynamic surfaces of Cu-based catalysts
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作者 Jinxin Wang Jiaqi Zhang Chen Chen 《Chinese Journal of Catalysis》 2025年第1期83-102,共20页
Electrochemical reduction of CO_(2)(CO_(2)RR)to form high-energy-density and high-value-added multicarbon products has attracted much attention.Selective reduction of CO_(2)to C^(2+)products face the problems of low r... Electrochemical reduction of CO_(2)(CO_(2)RR)to form high-energy-density and high-value-added multicarbon products has attracted much attention.Selective reduction of CO_(2)to C^(2+)products face the problems of low reaction rate,complex mechanism and low selectivity.Currently,except for a few examples,copper-based catalysts are the only option capable of achieving efficient generation of C^(2+)products.However,the continuous dynamic reconstruction of the catalyst causes great difficulty in understanding the structure-performance relationship of CO_(2)RR.In this review,we first discuss the mechanism of C^(2+)product generation.The structural factors promoting C^(2+)product generation are outlined,and the dynamic evolution of these structural factors is discussed.Furthermore,the effects of electrolyte and electrolysis conditions are reviewed in a vision of dynamic surface.Finally,further exploration of the reconstruction mechanism of Cu-based catalysts and the application of emerging robotic AI chemists are discussed. 展开更多
关键词 ELECTROCATALYSIS CO_(2)RR Cu-based catalyst RECONSTRUCTION Multicarbon product Structural evolution
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