Zobrazeno 1 - 10
of 21
pro vyhledávání: '"Mengyi Qiu"'
Autor:
Shasha Guo, Chao Chen, Mengyi Qiu, Xun Cao, Zude Shi, Mingyu Ma, Jun Di, Shuzhou Li, Chao Zhu, Yongmin He, Zheng Liu
Publikováno v:
Materials Today Catalysis, Vol 3, Iss , Pp 100022- (2023)
The urgent demand for terawatt-scale clean energy necessitates the rational design of noble metal catalysts with minimal noble metal loading while maintaining high catalytic activity. However, the durability of low-loading catalysts is a critical con
Externí odkaz:
https://doaj.org/article/a283ffb0147841168c7ccfafc2f1b348
Autor:
Chen Chen, Shuang Li, Xiaorong Zhu, Shuowen Bo, Kai Cheng, Nihan He, Mengyi Qiu, Chao Xie, Dezhong Song, Youzhen Liu, Wei Chen, Yafei Li, Qinghua Liu, Conggang Li, Shuangyin Wang
Publikováno v:
Carbon Energy, Vol 5, Iss 10, Pp n/a-n/a (2023)
Abstract Electrocatalytic urea synthesis via coupling of nitrate with CO2 is considered as a promising alternative to the industrial urea synthetic process. However, the requirement of sub‐reaction (NO3RR and CO2RR) activities for efficient urea sy
Externí odkaz:
https://doaj.org/article/3984da75ab7b460f8632fed1e402754b
Autor:
Xiaoran Zhang, Xiaorong Zhu, Shuowen Bo, Chen Chen, Mengyi Qiu, Xiaoxiao Wei, Nihan He, Chao Xie, Wei Chen, Jianyun Zheng, Pinsong Chen, San Ping Jiang, Yafei Li, Qinghua Liu, Shuangyin Wang
Publikováno v:
Nature Communications, Vol 13, Iss 1, Pp 1-9 (2022)
The direct electrocatalytic synthesis of urea via C–N coupling is of great significance. The authors report a diatomic catalyst with bonded Fe–Ni pairs to improve the efficiency of electrochemical urea synthesis from nitrate and CO2.
Externí odkaz:
https://doaj.org/article/ce101f66b60c424ebb092274ce984957
Autor:
Chuanyong Zhu, Changtong Zhu, Mengyi Qiu, Yichao Gai, Renqiang Li, Ling Li, Chen Wang, Na Yang, Baolin Wang, Lei Sun, Guihuan Yan, Chongqing Xu
Publikováno v:
Atmosphere, Vol 14, Iss 11, p 1672 (2023)
While air quality in China has improved significantly in recent years, the population is becoming increasingly vulnerable to air pollution due to the aging population. In this study, we assessed premature deaths attributable to long- and short-term e
Externí odkaz:
https://doaj.org/article/a677549f6db745808fa0174d71d385c0
Autor:
Mengyi Qiu, Xiaorong Zhu, Shuowen Bo, Kai Cheng, Nihan He, Kaizhi Gu, Dezhong Song, Chen Chen, Xiaoxiao Wei, Dongdong Wang, Yingying Liu, Shuang Li, Xiaojin Tu, Yafei Li, Qinghua Liu, Conggang Li, Shuangyin Wang
Publikováno v:
CCS Chemistry. :1-11
Autor:
Xiaoxiao Wei, Xiaojian Wen, Yingying Liu, Chen Chen, Chao Xie, Dongdong Wang, Mengyi Qiu, Nihan He, Peng Zhou, Wei Chen, Jun Cheng, Hongzhen Lin, Jianfeng Jia, Xian-Zhu Fu, Shuangyin Wang
Publikováno v:
Journal of the American Chemical Society. 144:11530-11535
The electrocatalytic C-N coupling for one-step urea synthesis under ambient conditions serves as the promising alternative to the traditional urea synthetic protocol. However, the hydrogenation of intermediate species hinders the efficient urea synth
Acidic oxygen evolution reaction is crucial for proton exchange membrane water electrolysers, which have been hindered by the high catalytic overpotential and high loading of noble metal catalysts and high mass transfer resistance. Here we present an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8f9f06f71b7adae713276fbc4e91b73e
https://doi.org/10.26434/chemrxiv-2023-pw7l8-v2
https://doi.org/10.26434/chemrxiv-2023-pw7l8-v2
Autor:
Yandong Wu, Wei Chen, Yimin Jiang, Yanzhi Xu, Bo Zhou, Leitao Xu, Chao Xie, Ming Yang, Mengyi Qiu, Dongdong Wang, Qie Liu, Qinghua Liu, Shuangyin Wang, Yuqin Zou
Publikováno v:
Angewandte Chemie.
Autor:
Hongmei Gao, Jiaqi Liu, Zijin Zhang, Yuxuan Lu, Ru Chen, Yu-Cheng Huang, Chao Xie, Mengyi Qiu, Tianyu Wu, Jinbo Wang, Yubin Jiang, Chung-Li Dong, Zhijie Kong, Shuangyin Wang
Publikováno v:
Chemical Engineering Journal. 463:142224
Autor:
Chuanyong Zhu, Xinyue Qu, Mengyi Qiu, Changtong Zhu, Chen Wang, Baolin Wang, Lei Sun, Na Yang, Guihuan Yan, Chongqing Xu, Ling Li
Publikováno v:
Science of The Total Environment. 873:162389