Recent progress of photothermal effect on photocatalytic reduction of CO2

被引:34
作者
Guo, Rui-tang [1 ,2 ]
Xia, Cheng [1 ]
Bi, Zhe-xu [1 ]
Zhang, Zhen-rui [1 ]
Pan, Wei-guo [1 ,2 ]
机构
[1] Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai, Peoples R China
[2] Shanghai Noncarbon Energy Convers & Utilizat Inst, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
CO2; Phototcatalytic reduction; Photothermal effect; Mechanism; OXYGEN VACANCY; CARBON-DIOXIDE; CATALYTIC-REDUCTION; CONVERSION; TIO2; HETEROJUNCTION; PHOTOREDUCTION; ENERGY; HYDROGENATION; NANOCATALYSTS;
D O I
10.1016/j.fuproc.2022.107617
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Using photocatalysis to reduce carbon dioxide to hydrocarbons is a promising way to mitigate the greenhouse effect and the energy crisis simultaneously. However, conventional photocatalytic technology is inefficient due to its low utilization of the full spectrum. Photothermal effect can combine the advantages of photocatalysis and thermocatalysis to overcome inherent defects and elevate the catalytic activity by one order of magnitude compared with single photocatalysis. This review focuses on the generation and promotion mechanism of photothermal effect on photocatalytic reduction of CO2. In addition, the developments of several practical catalysts with photothermal effect are presented, including non-precious metal-based catalysts, precious metalbased catalysts, and oxygen vacancy-riched catalysts. Eventually, the prospects and challenges of the applications of the photothermal effect are in consideration, which is instructive for the discovery of non-expensive and efficient photothermal catalysts for photocatalytic reduction of CO2.
引用
收藏
页数:15
相关论文
共 203 条
[51]   Narrowing band gap energy of CeO2 in (Ni/CeO2)@SiO2 catalyst for photothermal methane dry reforming [J].
Han, Kaihang ;
Wang, Yan ;
Wang, Shuo ;
Liu, Qiying ;
Deng, Zhiyong ;
Wang, Fagen .
CHEMICAL ENGINEERING JOURNAL, 2021, 421
[52]   1D/0D Z-scheme heterostructure of Bi2S3/CdXZn1-XS with strong interfacial electric field coupling enhanced mass transfer based on gas-liquid-solid micro interface contact for efficient photothermal synergistic catalytic CO2 reduction to syngas [J].
He, Hongbin ;
Gao, Xiaoming ;
Xu, Kaixuan ;
Li, Haoyang ;
Hu, Yanan ;
Yang, Chunming ;
Fu, Feng .
CHEMICAL ENGINEERING JOURNAL, 2022, 450
[53]   MOFs-Based Materials for Photocatalytic CO2 Reduction [J].
He Pengchen ;
Zhou Jian ;
Zhou Awu ;
Dou Yibo ;
Li Jianrong .
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2019, 40 (05) :855-866
[54]  
He Y., 2022, Environ. Funct. Mater., V1, P204
[55]   Photothermal CO2 hydrogenation to methanol over a CoO/Co/TiO2 catalyst in aqueous media under atmospheric pressure [J].
He, Zhen-Hong ;
Jiang, Chong-Shan ;
Wang, Kuan ;
Wang, Zhong-Yu ;
Li, Na ;
Wang, Wei-Tao ;
Liu, Zhao-Tie .
CATALYSIS TODAY, 2020, 356 :579-588
[56]   The technological and economic prospects for CO2 utilization and removal [J].
Hepburn, Cameron ;
Adlen, Ella ;
Beddington, John ;
Carter, Emily A. ;
Fuss, Sabine ;
Mac Dowell, Niall ;
Minx, Jan C. ;
Smith, Pete ;
Williams, Charlotte K. .
NATURE, 2019, 575 (7781) :87-97
[57]   Heterogeneous photocatalysis: fundamentals and applications to the removal of various types of aqueous pollutants [J].
Herrmann, JM .
CATALYSIS TODAY, 1999, 53 (01) :115-129
[58]   Urchinlike W18O49/g-C3N4 Z-Scheme Heterojunction for Highly Efficient Photocatalytic Reduction of CO2 under Full Spectrum Light [J].
Hong, Long-fei ;
Guo, Rui-tang ;
Yuan, Ye ;
Ji, Xiang-yin ;
Lin, Zhi-dong ;
Gu, Jing-wen ;
Pan, Wei-guo .
ENERGY & FUELS, 2021, 35 (14) :11468-11478
[59]   Recent progress of two-dimensional MXenes in photocatalytic applications: a review [J].
Hong, Long-fei ;
Guo, Rui-tang ;
Yuan, Ye ;
Ji, Xiang-yin ;
Li, Zheng-sheng ;
Lin, Zhi-dong ;
Pan, Wei-guo .
MATERIALS TODAY ENERGY, 2020, 18
[60]   Recent Progress of Transition Metal Phosphides for Photocatalytic Hydrogen Evolution [J].
Hong, Long-fei ;
Guo, Rui-tang ;
Yuan, Ye ;
Ji, Xiang-yin ;
Lin, Zhi-dong ;
Li, Zheng-sheng ;
Pan, Wei-guo .
CHEMSUSCHEM, 2021, 14 (02) :539-557