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科研机构
金属研究所 [5]
湖南大学 [4]
北京航空航天大学 [2]
福州大学 [2]
上海大学 [1]
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期刊论文 [14]
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2020 [3]
2019 [6]
2018 [1]
2017 [4]
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Controlled One-pot Synthesis of Nickel Single Atoms Embedded in Carbon Nanotube and Graphene Supports with High Loading
期刊论文
CHEMNANOMAT, 2020, 卷号: 6, 期号: 7, 页码: 13
作者:
Zhao, Shiyong
;
Wang, Tianshuai
;
Zhou, Guanmin
;
Zhang, Liji
;
Lin, Chao
收藏
  |  
浏览/下载:30/0
  |  
提交时间:2021/02/02
Ni single-atom catalysts
controlled synthesis
carbon nanotube
graphene
carbon dioxide reduction (CO2RR)
Controlled One-pot Synthesis of Nickel Single Atoms Embedded in Carbon Nanotube and Graphene Supports with High Loading
期刊论文
CHEMNANOMAT, 2020, 页码: 13
作者:
Zhao, Shiyong
;
Wang, Tianshuai
;
Zhou, Guanmin
;
Zhang, Liji
;
Lin, Chao
收藏
  |  
浏览/下载:26/0
  |  
提交时间:2021/02/02
Ni single-atom catalysts
controlled synthesis
carbon nanotube
graphene
carbon dioxide reduction (CO2RR)
A Universal Seeding Strategy to Synthesis Single Atom Catalysts on 2D Materials for Electrocatalytic Applications
期刊论文
ADVANCED FUNCTIONAL MATERIALS, 2020, 卷号: 30, 期号: 6
作者:
Zhao, Shiyong
;
Chen, Guangxu
;
Zhou, Guangmin
;
Yin, Li-Chang
;
Veder, Jean-Pierre
收藏
  |  
浏览/下载:16/0
  |  
提交时间:2021/02/03
Unsaturated edge-anchored Ni single atoms on porous microwave exfoliated graphene oxide for electrochemical CO2
期刊论文
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 卷号: 243, 页码: 294-303
作者:
Cheng, Yi
;
Zhao, Shiyong
;
Li, Haobo
;
He, Shuai
;
Veder, Jean-Pierre
收藏
  |  
浏览/下载:3/0
  |  
提交时间:2021/02/02
Ni single-atom catalysts
Edge-anchored
Defects
Electrochemical CO2 reduction
Density functional simulation
Unsaturated edge-anchored Ni single atoms on porous microwave exfoliated graphene oxide for electrochemical CO2
期刊论文
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 卷号: 243, 页码: 294-303
作者:
Cheng, Yi
;
Zhao, Shiyong
;
Li, Haobo
;
He, Shuai
;
Veder, Jean-Pierre
收藏
  |  
浏览/下载:22/0
  |  
提交时间:2021/02/02
Ni single-atom catalysts
Edge-anchored
Defects
Electrochemical CO2 reduction
Density functional simulation
Tuning the Electrochemical Property of the Ultrafine Metal‐oxide Nanoclusters by Iron Phthalocyanine as Efficient Catalysts for Energy Storage and Conversion.
期刊论文
Energy & Environmental Materials, 2019, 卷号: Vol.2 No.1, 页码: 5-17
作者:
Cheng, Yi
;
Wu, Xing
;
Veder, Jean‐Pierre
;
Thomsen, Lars
;
Jiang, San Ping
收藏
  |  
浏览/下载:4/0
  |  
提交时间:2019/12/13
CO2 reduction reaction
iron phthalocyanine
metal‐oxide nanoclusters
oxygen evolution reaction
oxygen reduction reaction
Tuning the Electrochemical Property of the Ultrafine Metal‐oxide Nanoclusters by Iron Phthalocyanine as Efficient Catalysts for Energy Storage and Conversion
期刊论文
ENERGY & ENVIRONMENTAL MATERIALS, 2019, 卷号: Vol.2 No.1, 页码: 5-17
作者:
Yi Cheng
;
Xing Wu
;
Jean‐Pierre Veder
;
Lars Thomsen
;
San Ping Jiang
收藏
  |  
浏览/下载:7/0
  |  
提交时间:2019/12/17
CO2 reduction reaction
iron phthalocyanine
metal‐oxide nanoclusters
oxygen evolution reaction
oxygen reduction reaction
Unsaturated edge-anchored Ni single atoms on porous microwave exfoliated graphene oxide for electrochemical CO2
期刊论文
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 卷号: 243, 页码: 294-303
作者:
Cheng, Yi
;
Zhao, Shiyong
;
Li, Haobo
;
He, Shuai
;
Veder, Jean-Pierre
收藏
  |  
浏览/下载:3/0
  |  
提交时间:2019/12/30
Ni single-atom catalysts
Edge-anchored
Defects
Electrochemical CO2 reduction
Density functional simulation
Iron Single Atoms on Graphene as Nonprecious Metal Catalysts for High-Temperature Polymer Electrolyte Membrane Fuel Cells
期刊论文
ADVANCED SCIENCE, 2019, 卷号: 6, 页码: 1802066
作者:
Cheng, Yi
;
He, Shuai
;
Lu, Shanfu
;
Veder, Jean-Pierre
;
Johannessen, Bernt
收藏
  |  
浏览/下载:2/0
  |  
提交时间:2019/12/30
high loading
high temperature polymer electrolyte membrane fuel cells
iron single atom catalysts
nonprecious metal catalysts
oxygen reduction reaction
Active, durable bismuth oxide-manganite composite oxygen electrodes: Interface formation induced by cathodic polarization
期刊论文
JOURNAL OF POWER SOURCES, 2018, 卷号: 397, 页码: 16-24
作者:
Chen, Minle
;
Cheng, Yi
;
He, Shuai
;
Ai, Na
;
Veder, Jean-Pierre
收藏
  |  
浏览/下载:15/0
  |  
提交时间:2019/11/21
Solid oxide cells
Manganite
Bismuth oxide
In situ electrode/electrolyte interface formation
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