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在“
Elsevier电子期刊
”中,
命中:
5,261
条,耗时:0.0709655 秒
在所有数据库中总计命中:
9,488
条
1.
In situ electrochemically generated composite-type CoO
x
/WO
x
in self-activated cobalt tungstate nanostructures: implication for highly enhanced electrocatalytic
oxygen
evolution
作者:
Tian Tian
;
Jing Jiang
;
0826zjjh@163.com
;
Lunhong Ai
;
ah_aihong@163.com
关键词:
Water oxidation
;
Oxygen
evolution
;
Cobalt tungstate
;
Nanostructures
;
Electrocatalyst
刊名:Electrochimica Acta
出版年:2017
2.
Facile synthesis of N/M/O (M= Fe, Co, Ni) doped carbons for
oxygen
evolution
catalysis in acid solution
作者:
Shiliu Yang
1
;
yangsl@ujs.edu.cn
;
Tianran Zhang
;
Guochun Li
;
Liuqing Yang
;
Jim Yang Lee
;
cheleejy@nus.edu.sg
关键词:
Doped carbon
;
Oxygen
evolution
reaction
;
Acid electrolyte
;
Active sites
刊名:Energy Storage Materials
出版年:2017
3.
Facile synthesis of three-dimensional porous nitrogen doped carbon supported Co
3
O
4
for
oxygen
reduction reaction and
oxygen
evolution
reaction
作者:
Qing Wang
a
;
Xin Qiu
b
;
Wenhui Hu
a
;
Yongmin Huang
a
;
huangym@ecust.edu.cn
关键词:
Nitrogen doped macro/mesoporous carbon materials
;
Oxygen
reduction reaction
;
Porous materials
;
Oxygen
evolution
reaction
;
Nanoparticles
刊名:Materials Letters
出版年:2017
4.
The urchin-like sphere arrays Co
3
O
4
as a bifunctional catalyst for hydrogen
evolution
reaction and
oxygen
evolution
reaction
作者:
Ruchun Li
;
Dan Zhou
;
Jiaxian Luo
;
Weiming Xu
;
Jingwei Li
;
Shuoshuo Li
;
Pengpeng Cheng
;
Dingsheng Yuan
;
tydsh@jnu.edu.cn
关键词:
Electrochemical water splitting
;
Bifunctional catalyst
;
Hydrogen
evolution
reaction
;
Oxygen
evolution
reaction
刊名:Journal of Power Sources
出版年:2017
5.
Spray-drying of milk for
oxygen
evolution
electrocatalyst and solar water splitting
作者:
Chenyi Cai
a
;
1
;
Min Kuang
b
;
1
;
Xiling Chen
a
;
Hao Wu
b
;
Hongtao Ge
b
;
Gengfeng Zheng
b
;
gfzheng@fudan.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Water splitting
;
Electrocatalyst
;
Oxygen
evolution
reaction
;
Milk
;
Overpotential
刊名:Journal of Colloid and Interface Science
出版年:2017
6.
In-situ growth of highly uniform and single crystalline Co
3
O
4
nanocubes on graphene for efficient
oxygen
evolution
作者:
Peng Zhang
a
;
Xiaotong Han
b
;
Han Hu
b
;
Jianzhou Gui
a
;
c
;
jzgui@hotmail.com" class="auth_mail" title="E-mail the corresponding author
;
Mingyu Li
b
;
Jieshan Qiu
b
;
jqiu@dlut.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Graphene
;
Hydrothermal synthesis
;
Co3O4
;
Oxygen
evolution
reaction
刊名:Catalysis Communications
出版年:2017
7.
An Electrodeposited NiSe for Electrocatalytic Hydrogen and
Oxygen
Evolution
Reactions in Alkaline Solution
作者:
Zhong Gao
a
;
Jing Qi
a
;
Mingxing Chen
b
;
Wei Zhang
a
;
zw@snnu.edu.cn
;
Rui Cao
a
;
b
;
ruicao@ruc.edu.cn
关键词:
water splitting
;
hydrogen
evolution
;
oxygen
evolution
;
electrocatalysis
;
nickel selenide
刊名:Electrochimica Acta
出版年:2017
8.
Fe/Ni-N-CNFs electrochemical catalyst for
oxygen
reduction reaction/
oxygen
evolution
reaction in alkaline media
作者:
Zhuang Wang
a
;
Mian Li
b
;
Liquan Fan
a
;
Jianan Han
a
;
Yueping Xiong
a
;
ypxiong@hit.edu.cn
关键词:
Bifunctional electrocatalyst
;
Oxygen
reduction reaction
;
Oxygen
evolution
reaction
;
Electrospinning
;
Fe/Ni alloy
刊名:Applied Surface Science
出版年:2017
9.
Nitrogen doped NiFe layered double hydroxide/reduced graphene oxide mesoporous nanosphere as an effective bifunctional electrocatalyst for
oxygen
reduction and
evolution
reactions
作者:
Tianrong Zhan
a
;
trzhan@sdu.edu.cn
;
Xiaolin Liu
a
;
SiSi Lu
a
;
Wanguo Hou
b
;
wghou@sdu.edu.cn
关键词:
NiFe layered double hydroxide
;
Reduced graphene oxide
;
Nitrogen doping
;
Oxygen
evolution
reaction
;
Oxygen
reduction reaction
刊名:Applied Catalysis B: Environmental
出版年:2017
10.
Role of
oxygen
on the phase stability and microstructure
evolution
of CaCu
3
Ti
4
O
12
ceramics
作者:
Anderson A. Felix
a
;
aafelixy@yahoo.com.br" class="auth_mail" title="E-mail the corresponding author
;
Viní
;
cius D.N. Bezzon
a
;
Marcelo O. Orlandi
a
;
Damjan Vengust
b
;
Matjaž Spreitzer
b
;
Elson Longo
a
;
Danilo Suvorov
b
;
José
;
A. Varela
a
关键词:
CaCu3Ti4O12
;
Oxygen
partial pressure
;
Phase stability
;
Non-stoichiometry
;
Grain growth
刊名:Journal of the European Ceramic Society
出版年:2017
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