Highly Active Oxygen Evolution Integrating with Highly Selective CO2-to-CO Reduction

被引:2
作者
Wang, Chaowei [1 ,2 ]
Geng, Laihong [3 ]
Bi, Yingpu [1 ]
机构
[1] Chinese Acad Sci, Lanzhou Inst Chem Phys, Natl Engn Res Ctr Fine Petrochem Intermediates, State Key Lab Oxo Synth & Select Oxidat, Lanzhou 730000, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[3] Gansu Chem Ind Res Inst Co LTD, Lanzhou 730000, Peoples R China
基金
中国国家自然科学基金; 中国科学院西部之光基金;
关键词
Photosynthesis; Oxygen evolution; CO2; reduction; Photoanode; Single-atom Co-N-5; BIVO4; PHOTOANODES; CO2; REDUCTION; CATALYSTS; CONVERSION; CATHODE; SYNGAS; CARBON;
D O I
10.1007/s40820-025-01688-2
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Artificial carbon fixation is a promising pathway for achieving the carbon cycle and environment remediation. However, the sluggish kinetics of oxygen evolution reaction (OER) and poor selectivity of CO2 reduction seriously limited the overall conversion efficiencies of solar energy to chemical fuels. Herein, we demonstrated a facile and feasible strategy to rationally regulate the coordination environment and electronic structure of surface-active sites on both photoanode and cathode. More specifically, the defect engineering has been employed to reduce the coordination number of ultrathin FeNi catalysts decorated on BiVO4 photoanodes, resulting in one of the highest OER activities of 6.51 mA cm(-2) (1.23 V-RHE, AM 1.5G). Additionally, single-atom cobalt (II) phthalocyanine anchoring on the N-rich carbon substrates to increase Co-N coordination number remarkably promotes CO2 adsorption and activation for high selective CO production. Their integration achieved a record activity of 109.4 mu mol cm(-2) h(-1) for CO production with a faradaic efficiency of > 90%, and an outstanding solar conversion efficiency of 5.41% has been achieved by further integrating a photovoltaic utilizing the sunlight (> 500 nm).
引用
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页数:13
相关论文
共 47 条
[1]   Bias-free solar syngas production by integrating a molecular cobalt catalyst with perovskite-BiVO4 tandems [J].
Andrei, Virgil ;
Reuillard, Bertrand ;
Reisner, Erwin .
NATURE MATERIALS, 2020, 19 (02) :189-+
[2]   Alkali-loaded silica, a solid base:: Investigation by FTIR spectroscopy of adsorbed CO2 and its catalytic activity [J].
Bal, R ;
Tope, BB ;
Das, TK ;
Hegde, SG ;
Sivasanker, S .
JOURNAL OF CATALYSIS, 2001, 204 (02) :358-363
[3]   Solar-Driven Sustainability: III-V Semiconductor for Green Energy Production Technologies [J].
Chandran, Bagavath ;
Oh, Jeong-Kyun ;
Lee, Sang-Wook ;
Um, Dae-Young ;
Kim, Sung-Un ;
Veeramuthu, Vignesh ;
Park, Jin-Seo ;
Han, Shuo ;
Lee, Cheul-Ro ;
Ra, Yong-Ho .
NANO-MICRO LETTERS, 2024, 16 (01)
[4]   Stable Aqueous Photoelectrochemical CO2 Reduction by a Cu2O Dark Cathode with Improved Selectivity for Carbonaceous Products [J].
Chang, Xiaoxia ;
Wang, Tuo ;
Zhang, Peng ;
Wei, Yijia ;
Zhao, Jiubing ;
Gong, Jinlong .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (31) :8840-8845
[5]   Carbon-based catalysts for Fischer-Tropsch synthesis [J].
Chen, Yanping ;
Wei, Jiatong ;
Duyar, Melis S. ;
Ordomsky, Vitaly V. ;
Khodakov, Andrei Y. ;
Liu, Jian .
CHEMICAL SOCIETY REVIEWS, 2021, 50 (04) :2337-2366
[6]   Efficient multicarbon formation in acidic CO2 reduction via tandem electrocatalysis [J].
Chen, Yuanjun ;
Li, Xiao-Yan ;
Chen, Zhu ;
Ozden, Adnan ;
Huang, Jianan Erick ;
Ou, Pengfei ;
Dong, Juncai ;
Zhang, Jinqiang ;
Tian, Cong ;
Lee, Byoung-Hoon ;
Wang, Xinyue ;
Liu, Shijie ;
Qu, Qingyun ;
Wang, Sasa ;
Xu, Yi ;
Miao, Rui Kai ;
Zhao, Yong ;
Liu, Yanjiang ;
Qiu, Chenyue ;
Abed, Jehad ;
Liu, Hengzhou ;
Shin, Heejong ;
Wang, Dingsheng ;
Li, Yadong ;
Sinton, David ;
Sargent, Edward H. .
NATURE NANOTECHNOLOGY, 2024, 19 (03) :311-318
[7]   Steric Modification of a Cobalt Phthalocyanine/Graphene Catalyst To Give Enhanced and Stable Electrochemical CO2 Reduction to CO [J].
Choi, Jaecheol ;
Wagner, Pawel ;
Gambhir, Sanjeev ;
Jalili, Rouhollah ;
MacFarlane, Douglas R. ;
Wallace, Gordon G. ;
Officer, David L. .
ACS ENERGY LETTERS, 2019, 4 (03) :666-672
[8]   2D Bismuthene as a Functional Interlayer between BiVO4 and NiFeOOH for Enhanced Oxygen-Evolution Photoanodes [J].
Cui, Junyi ;
Daboczi, Matyas ;
Regue, Miriam ;
Chin, Yi-Chun ;
Pagano, Katia ;
Zhang, Jifang ;
Isaacs, Mark A. ;
Kerherve, Gwilherm ;
Mornto, Aris ;
West, James ;
Gimenez, Sixto ;
Kim, Ji-Seon ;
Eslava, Salvador .
ADVANCED FUNCTIONAL MATERIALS, 2022, 32 (44)
[9]   Future CO2 Emissions and Climate Change from Existing Energy Infrastructure [J].
Davis, Steven J. ;
Caldeira, Ken ;
Matthews, H. Damon .
SCIENCE, 2010, 329 (5997) :1330-1333
[10]   Can CO2 and Renewable Carbon Be Primary Resources for Sustainable Fuels and Chemicals? [J].
Hasan, M. M. Faruque ;
Rossi, Liane M. ;
Debecker, Damien P. ;
Leonard, Kevin C. ;
Li, Zhenxing ;
Makhubela, Banothile C. E. ;
Zhao, Chuan ;
Kleij, Arjan .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (37) :12427-12430