Underevaluated Solvent Effects in Electrocatalytic CO2 Reduction by FeIII Chloride Tetrakis(pentafluorophenyl)porphyrin

被引:25
作者
Zhao, Bin [1 ]
Lei, Haitao [1 ]
Wang, Ni [1 ]
Xu, Gelun [1 ]
Zhang, Wei [1 ]
Cao, Rui [1 ]
机构
[1] Shaanxi Normal Univ, Key Lab Appl Surface & Colloid Chem, Minist Educ, Sch Chem & Chem Engn, Xian 710119, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
CO2; reduction; CO2-to-CO conversion; electrocatalysis; Fe porphyrin; solvent effect; CO2-TO-CO ELECTROCHEMICAL CONVERSION; MOLECULAR CATALYSIS; CARBON-DIOXIDE; ORGANIC FRAMEWORKS; OXYGEN REDUCTION; EFFICIENT; IRON; PROTON; PORPHYRIN; HYDROGEN;
D O I
10.1002/chem.201903064
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Fe-III chloride tetrakis(pentafluorophenyl)porphyrin (1) is known to have poor electrocatalytic activity for the CO2-to-CO conversion in dimethylformamide. In this work, we re-examined Fe porphyrin 1 as a CO2 reduction catalyst in various solvents. Our results show that 1 displays fairly high electrocatalytic CO2-to-CO activity in acetonitrile with a turnover frequency (TOF) up to 4.2x10(4) s(-1). On the other hand, 1 shows a modest activity in propylene carbonate, and is inefficient to catalyze CO2 reduction in benzonitrile, dimethylformamide, and tetrahydrofuran. Several solvent effects were considered, but none of these effects alone can explain the observed large activity difference of 1 for CO2 reduction in these solvents. Based on the results, it is suggested that more care should be paid when comparing different CO2 reduction catalysts because solvent effects are significant and are underevaluated.
引用
收藏
页码:4007 / 4012
页数:6
相关论文
共 50 条
[21]   Electrocatalytic Alloys for CO2 Reduction [J].
He, Jingfu ;
Johnson, Noah J. J. ;
Huang, Aoxue ;
Berlinguette, Curtis P. .
CHEMSUSCHEM, 2018, 11 (01) :48-57
[22]   Heterogeneous molecular catalysts for electrocatalytic CO2 reduction [J].
Corbin, Nathan ;
Zeng, Joy ;
Williams, Kindle ;
Manthiram, Karthish .
NANO RESEARCH, 2019, 12 (09) :2093-2125
[23]   Enhanced Electrocatalytic Activity of a Zinc Porphyrin for CO2 Reduction: Cooperative Effects of Triazole Units in the Second Coordination Sphere [J].
Lashgari, Amir ;
Williams, Caroline K. ;
Glover, Jenna L. ;
Wu, Yueshen ;
Chai, Jingchao ;
Jiang, Jianbing Jimmy .
CHEMISTRY-A EUROPEAN JOURNAL, 2020, 26 (70) :16774-16781
[24]   Electrocatalytic CO2 Reduction to Syngas and HCOOH by Homogeneous Fc-NAP2 [J].
Akhter, Sk Samim ;
Padhi, Sumanta Kumar .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2022, 2022 (20)
[25]   Kinetic and Mechanistic Effects of Bipyridine (bpy) Substituent, Labile Ligand, and Bronsted Acid on Electrocatalytic CO2 Reduction by Re(bpy) Complexes [J].
Clark, Melissa L. ;
Cheung, Po Ling ;
Lessio, Martina ;
Carter, Emily A. ;
Kubiak, Clifford P. .
ACS CATALYSIS, 2018, 8 (03) :2021-2029
[26]   Syntheses and CO2 reduction activities of π-expanded/extended iron porphyrin complexes [J].
Okabe, Yuki ;
Lee, Sze Koon ;
Kondo, Mio ;
Masaoka, Shigeyuki .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2017, 22 (05) :713-725
[27]   Electrocatalytic CO2 Reduction by Cobalt Bis(pyridylmonoimine) Complexes: Effect of Ligand Flexibility on Catalytic Activity [J].
Nie, Weixuan ;
Wang, Yanming ;
Zheng, Tao ;
Ibrahim, Ammar ;
Xu, Ziqiao ;
McCrory, Charles C. L. .
ACS CATALYSIS, 2020, 10 (09) :4942-4959
[28]   Photocatalytic and electrocatalytic reduction of CO2 by MXene-based nanomaterials: A review [J].
Heo, Jiyong ;
Her, Namguk ;
Jang, Min ;
Park, Chang Min ;
Son, Ahjeong ;
Han, Jonghun ;
Yoon, Yeomin .
CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2023, 53 (09) :987-1008
[29]   Tailoring the Selectivity of Bimetallic Copper-Palladium Nanoalloys for Electrocatalytic Reduction of CO2 to CO [J].
Chen, Dong ;
Yao, Qaofeng ;
Cui, Penglei ;
Liu, Hui ;
Xie, Jianping ;
Yang, Jun .
ACS APPLIED ENERGY MATERIALS, 2018, 1 (02) :883-890
[30]   Electrocatalytic CO2 Reduction with a Half-Sandwich Cobalt Catalyst: Selectivity towards CO [J].
Kumar Pandey, Indresh ;
Kumar, Abhishek ;
Choudhury, Joyanta .
CHEMISTRY-AN ASIAN JOURNAL, 2020, 15 (06) :904-909