Recent Progress in Surface-Defect Engineering Strategies for Electrocatalysts toward Electrochemical CO2 Reduction: A Review

被引:34
作者
Balu, Sridharan [1 ,2 ]
Hanan, Abdul [3 ]
Venkatesvaran, Harikrishnan [1 ]
Chen, Shih-Wen [1 ,2 ]
Yang, Thomas C. -K. [1 ,2 ]
Khalid, Mohammad [3 ,4 ]
机构
[1] Natl Taipei Univ Technol, Dept Chem Engn & Biotechnol, Taipei 10608, Taiwan
[2] Natl Taipei Univ Technol, Precis Anal & Mat Res Ctr, Taipei 10608, Taiwan
[3] Sunway Univ, Sch Engn & Technol, Graphene & Adv 2D Mat Res Grp GAMRG, 5 Jalan Univ, Bandar Sunway 47500, Petaling Jaya, Malaysia
[4] Uttaranchal Univ, Sch Appl & Life Sci, Dehra Dun 248007, Uttarakhand, India
关键词
CO2; electroreduction; electrocatalyst; defect engineering; CARBON NANOTUBE ARRAYS; BORON-DOPED GRAPHENE; FORMIC-ACID; METAL-ELECTRODES; HIGHLY-EFFICIENT; AQUEOUS CO2; SELECTIVE ELECTROREDUCTION; OXYGEN VACANCIES; COPPER ELECTRODE; RATIONAL DESIGN;
D O I
10.3390/catal13020393
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Climate change, caused by greenhouse gas emissions, is one of the biggest threats to the world. As per the IEA report of 2021, global CO2 emissions amounted to around 31.5 Gt, which increased the atmospheric concentration of CO2 up to 412.5 ppm. Thus, there is an imperative demand for the development of new technologies to convert CO2 into value-added feedstock products such as alcohols, hydrocarbons, carbon monoxide, chemicals, and clean fuels. The intrinsic properties of the catalytic materials are the main factors influencing the efficiency of electrochemical CO2 reduction (CO2-RR) reactions. Additionally, the electroreduction of CO2 is mainly affected by poor selectivity and large overpotential requirements. However, these issues can be overcome by modifying heterogeneous electrocatalysts to control their morphology, size, crystal facets, grain boundaries, and surface defects/vacancies. This article reviews the recent progress in electrochemical CO2 reduction reactions accomplished by surface-defective electrocatalysts and identifies significant research gaps for designing highly efficient electrocatalytic materials.
引用
收藏
页数:37
相关论文
共 274 条
[1]   A Prospective Life Cycle Assessment of Electrochemical CO2 Reduction to Selective Formic Acid and Ethylene [J].
Ai, Ling ;
Ng, Sue-Faye ;
Ong, Wee-Jun .
CHEMSUSCHEM, 2022, 15 (19)
[2]   Electroreduction of Carbon Dioxide into Formate: A Comprehensive Review [J].
Al-Tamreh, Shaima A. ;
Ibrahim, Mohamed H. ;
El-Naas, Muftah H. ;
Vaes, Jan ;
Pant, Deepak ;
Benamor, Abdelbaki ;
Amhamed, Abdulkarem .
CHEMELECTROCHEM, 2021, 8 (17) :3207-3220
[3]   Porous aza-doped graphene-analogous 2D material a unique catalyst for CO2 conversion to formic-acid by hydrogenation and electroreduction approaches [J].
Ali, Sajjad ;
Yasin, Ghulam ;
Iqbal, Rashid ;
Huang, Xiang ;
Su, Jun ;
Ibraheem, Shumaila ;
Zhang, Zhe ;
Wu, Xiaoqiang ;
Wahid, Fazli ;
Ismail, Pir Muhammad ;
Qiao, Liang ;
Xu, Hu .
MOLECULAR CATALYSIS, 2022, 524
[4]   From 3D ZIF Nanocrystals to Co-Nx/C Nanorod Array Electrocatalysts for ORR, OER, and Zn-Air Batteries [J].
Amiinu, Ibrahim Saana ;
Liu, Xiaobo ;
Pu, Zonghua ;
Li, Wenqiang ;
Li, Qidong ;
Zhang, Jie ;
Tang, Haolin ;
Zhang, Haining ;
Mu, Shichun .
ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (05)
[5]   Exclusive Formation of Formic Acid from CO2 Electroreduction by a Tunable Pd-Sn Alloy [J].
Bai, Xiaofang ;
Chen, Wei ;
Zhao, Chengcheng ;
Li, Shenggang ;
Song, Yanfang ;
Ge, Ruipeng ;
Wei, Wei ;
Sun, Yuhan .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (40) :12219-12223
[6]   The Advance and Critical Functions of Energetic Carbon Dots in Carbon Dioxide Photo/Electroreduction Reactions [J].
Bao, Kaili ;
Shi, Jie ;
Liao, Fan ;
Huang, Hui ;
Liu, Yang ;
Kang, Zhenhui .
SMALL METHODS, 2022, 6 (12)
[7]   Electrocatalytic and homogeneous approaches to conversion of CO2 to liquid fuels [J].
Benson, Eric E. ;
Kubiak, Clifford P. ;
Sathrum, Aaron J. ;
Smieja, Jonathan M. .
CHEMICAL SOCIETY REVIEWS, 2009, 38 (01) :89-99
[8]   Recent Technological Progress in CO2 Electroreduction to Fuels and Energy Carriers in Aqueous Environments [J].
Bevilacqua, Manuela ;
Filippi, Jonathan ;
Miller, Hamish A. ;
Vizza, Francesco .
ENERGY TECHNOLOGY, 2015, 3 (03) :197-210
[9]   Atomically Thin Two-Dimensional Solids: An Emerging Platform, for CO2 Electroreduction [J].
Bi, Wentuan ;
Wu, Changzheng ;
Xie, Yi .
ACS ENERGY LETTERS, 2018, 3 (03) :624-633
[10]   Surface Immobilization of Transition Metal Ions on Nitrogen-Doped Graphene Realizing High-Efficient and Selective CO2 Reduction [J].
Bi, Wentuan ;
Li, Xiaogang ;
You, Rui ;
Chen, Minglong ;
Yuan, Ruilin ;
Huang, Weixin ;
Wu, Xiaojun ;
Chu, Wangsheng ;
Wu, Changzheng ;
Xie, Yi .
ADVANCED MATERIALS, 2018, 30 (18)