TY - JOUR
T1 - 2020 roadmap on pore materials for energy and environmental applications
AU - Wei, Zengxi
AU - Ding, Bing
AU - Dou, Hui
AU - Gascon, Jorge
AU - Kong, Xiang Jian
AU - Xiong, Yujie
AU - Cai, Bin
AU - Zhang, Ruiyang
AU - Zhou, Ying
AU - Long, Mingce
AU - Miao, Jie
AU - Dou, Yuhai
AU - Yuan, Ding
AU - Ma, Jianmin
N1 - Publisher Copyright:
© 2019 The Author
PY - 2019/12
Y1 - 2019/12
N2 - Porous materials have attracted great attention in energy and environment applications, such as metal organic frameworks (MOFs), metal aerogels, carbon aerogels, porous metal oxides. These materials could be also hybridized with other materials into functional composites with superior properties. The high specific area of porous materials offer them the advantage as hosts to conduct catalytic and electrochemical reactions. On one hand, catalytic reactions include photocatalytic, photoelectrocatalytic and electrocatalytic reactions over some gases. On the other hand, they can be used as electrodes in various batteries, such as alkaline metal ion batteries and electrochemical capacitors. So far, both catalysis and batteries are extremely attractive topics. There are also many obstacles to overcome in the exploration of these porous materials. The research related to porous materials for energy and environment applications is at extremely active stage, and this has motivated us to contribute with a roadmap on ‘porous materials for energy and environment applications’.
AB - Porous materials have attracted great attention in energy and environment applications, such as metal organic frameworks (MOFs), metal aerogels, carbon aerogels, porous metal oxides. These materials could be also hybridized with other materials into functional composites with superior properties. The high specific area of porous materials offer them the advantage as hosts to conduct catalytic and electrochemical reactions. On one hand, catalytic reactions include photocatalytic, photoelectrocatalytic and electrocatalytic reactions over some gases. On the other hand, they can be used as electrodes in various batteries, such as alkaline metal ion batteries and electrochemical capacitors. So far, both catalysis and batteries are extremely attractive topics. There are also many obstacles to overcome in the exploration of these porous materials. The research related to porous materials for energy and environment applications is at extremely active stage, and this has motivated us to contribute with a roadmap on ‘porous materials for energy and environment applications’.
KW - Aerogels
KW - Covalent organic frameworks
KW - Electrocatalysis
KW - Electrochemical capacitors
KW - Metal organic frameworks
KW - Metal-ion batteries
KW - Photocatalysis
KW - Photoelectrocatalysis
KW - Zeolitic imidazolate frameworks
UR - http://www.scopus.com/inward/record.url?scp=85075821263&partnerID=8YFLogxK
U2 - 10.1016/j.cclet.2019.11.022
DO - 10.1016/j.cclet.2019.11.022
M3 - 文章
AN - SCOPUS:85075821263
SN - 1001-8417
VL - 30
SP - 2110
EP - 2122
JO - Chinese Chemical Letters
JF - Chinese Chemical Letters
IS - 12
ER -