5. *CHO基本上不参与C2+途径。 上述反应机理为构筑高效催化C2+产物生成的CO2RR催化剂提供了理论依据,并为CO2RR电催化剂的设计提供了清晰的指导原则。 文献信息 Time-resolvedobservation of C-C coupling intermediates on Cu electrodes for selectiveelect...
Identifying an Interfacial Stabilizer for Regeneration-Free 300 h Electrochemical CO2 Reduction to C2 Products. Journal of the American Chemical Society, 2022. DOI: 10.1021/jacs.2c11109清新电源投稿通道(Scan)阅读原文微信扫一扫关注该...
A. (2024). Computational Electrocatalysis beyond Conventional Hydrogen Electrode Model: CO2 Reduction to C2 Species on Copper Facilitated by Dynamically Formed Solvent Halide Ions at the Solid-Liquid Interface. Chemical Science.https://doi.org/10.1039/D3SC06471A ...
he is an Associate Professor working at Xi’an Jiaotong University.His research primarily focuses on the solar-driven CO2reduction to hydrocarbon fuels or high-value chemicals.
相关工作以“Steering the Dynamics of Reaction Intermediates and Catalyst Surface during Electrochemical Pulsed CO2Reduction for Enhanced C2+Selectivity”为题发表在国际著名期刊Journal of the American Chemical Society上。 研究要点 要点1. 作者使用多晶铜箔作为模型系统,重点研究了CO2RR中反应中间体的脉冲诱导动力...
该研究表明利用聚合物粘合剂调节电催化剂的疏水性是调节气-固-液界面电化学反应性能的一种很有前途的方法。 Enhanced Electrocatalytic CO2Reduction to C2+Products by Adjusting the Local Reaction Environment with Polymer Binders., DOI: 10.1002/aenm.202103663. https://doi.org/10.1002/aenm.202103663....
图5. 阳离子-水-吸附物模型 文献信息 Yang, X., Ding, H., Li, S., Zheng, S., Li, J. F., & Pan, F. (2024). Cation-Induced Interfacial Hydrophobic Microenvironment Promotes the C–C Coupling in Electrochemical CO2 Reduction. Journal of the American Chemical Society.
模拟Cu基金属-有机框架酶还原CO2成C2产物的计算设计与实验验证:配体调制促进的C-C偶联和最佳Cu-Cu距离 Computational Design and Experimental Validation of Enzyme Mimicking Cu-Based Metal–Organic Frameworks for the Reduction of CO2 into C2 Products: C–C Coupling Promoted by Ligand Modulation and the Opt...
因此,Nd是金属掺杂TiO2对C3H8生成起到了决定因素。图5 原子筛选以及描述符的提出 文献信息 Ren, C., Li, Q., Ling, C., & Wang, J. (2023). Mechanism-Guided Design of Photocatalysts for CO2 Reduction toward Multicarbon Products. Journal of the American Chemical Society.
Stabilization of Undercoordinated Cu Sites in Strontium Copper Oxides for Enhanced Formation of C2+ Products in Electrochemical CO2 Reduction. ACS Catalysis, 2022. DOI: 10.1021/acscatal.2c01019 发布于 2024-01-31 12:24・IP 属地广东 科研 科研成果 中国科研 ...