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2020 Roadmap on gas-involved photo- and electro- catalysis

Authors :
Yang, Yulu
Tang, Yang
Jiang, Haomin
Chen, Yongmei
Wan, Pingyu
Fan, Maohong
Zhang, Rongrong
Ullah, Sana
Pan, Lun
Zou, Ji
Lao, Mengmeng
Sun, Wenping
Yang, Chao
Zheng, Gengfeng
Peng, Qiling
Wang, Ting
Luo, Yonglan
Sun, Xuping
Konev, Alexander
Levin, Oleg
Lianos, Panagiotis
Zhuofeng, Hu
Shen, Zhurui
Zhao, Qinglan
Wang, Ying
Todorova, Nadia
Trapalis, Christos
Sheridan, Matthew
Wang, Haipeng
Zhang, Ling
Sun, Songmei
Wang, Wenzhong
Ma, Jianmin
Yang, Yulu
Tang, Yang
Jiang, Haomin
Chen, Yongmei
Wan, Pingyu
Fan, Maohong
Zhang, Rongrong
Ullah, Sana
Pan, Lun
Zou, Ji
Lao, Mengmeng
Sun, Wenping
Yang, Chao
Zheng, Gengfeng
Peng, Qiling
Wang, Ting
Luo, Yonglan
Sun, Xuping
Konev, Alexander
Levin, Oleg
Lianos, Panagiotis
Zhuofeng, Hu
Shen, Zhurui
Zhao, Qinglan
Wang, Ying
Todorova, Nadia
Trapalis, Christos
Sheridan, Matthew
Wang, Haipeng
Zhang, Ling
Sun, Songmei
Wang, Wenzhong
Ma, Jianmin
Source :
Australian Institute for Innovative Materials - Papers
Publication Year :
2019

Abstract

© 2019 Green reactions not only provide us chemical products without any pollution, but also offer us the viable technology to realize difficult tasks in normal conditions. Photo-, photoelectro-, and electrocatalytic reactions are indeed powerful tools to help us to embrace bright future. Especially, some gas-involved reactions are extremely useful to change our life environments from energy systems to liquid fuels and cost-effective products, such as H2 evolution (H2 production), O2 evolution/reduction, CO2 reduction, N2 reduction (or N2 fixation) reactions. We can provide fuel cells clean H2 for electric vehicles from H2 evolution reaction (HER), at the same time, we also need highly efficient O2 reduction reaction (ORR) in fuel cells for improving the reaction kinetics. Moreover, we can get the clean oxidant O2 from water through O2 evolution reaction (OER), and carry out some reactions without posing any pollution to reaction systems. Furthermore, we can translate the greenhouse gas CO2 into useful liquid fuels through CO2 reduction reaction (CRR). Last but not the least, we can get ammonia from N2 reduction reaction (NRR), which can decrease energy input compared to the traditional Hubble process. These reactions, such as HER, ORR, OER, CRR, and NRR could be realized through solar-, photoelectro- and electro-assisted ways. For them, the catalysts used play crucial roles in determining the efficiency and kinds of products, so we should consider the efficiency of catalysts. However, the cost, synthetic methods of catalysts should also be considered. Nowadays, significant progress has been achieved, however, many challenges still exist, reaction systems, catalysts underlying mechanisms, and so on. As extremely active fields, we should pay attention to them. Under the background, it has motivated us to contribute with a roadmap on ‘Gas-Involved Photo- and Electro-Catalysis’.

Details

Database :
OAIster
Journal :
Australian Institute for Innovative Materials - Papers
Publication Type :
Electronic Resource
Accession number :
edsoai.on1298580087
Document Type :
Electronic Resource