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Elsevier电子期刊(2605)
在“
Elsevier电子期刊
”中,
命中:
2,605
条,耗时:小于0.01 秒
在所有数据库中总计命中:
2,605
条
1.
Micelle confined mechanistic pathway for 4-
nitrophenol
reduction
作者:
Anindita Roy
;
Biplab Debnath
;
Ramkrishna Sahoo
;
Teresa Aditya
;
Tarasankar Pal
;
tpal@chem.iitkgp.ernet.in
关键词:
Metal free 4-
nitrophenol
reduction
;
Confinement effect
;
Anion radical stabilization
;
Graphene-like Stern layer
刊名:Journal of Colloid and Interface Science
出版年:2017
2.
Degradation of p-
Nitrophenol
using magnetic Fe
0
/Fe
3
O
4
/Coke composite as a heterogeneous Fenton-like catalyst
作者:
Dong Wan
;
Wenbing Li
;
liwenbing@wust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Guanghua Wang
;
Lulu Lu
;
Xiaobi Wei
关键词:
Magnetic composite
;
Coke
;
p-
Nitrophenol
;
Heterogeneous degradation
;
Response surface methodology
刊名:Science of the Total Environment
出版年:2017
3.
Natural cellulose fiber derived hollow-tubular-oriented polydopamine: In-situ formation of Ag nanoparticles for reduction of 4-
nitrophenol
作者:
Enjuan Cao
a
;
Wenzhen Duan
a
;
Feng Wang
b
;
Aiqin Wang
b
;
Yian Zheng
a
;
c
;
zhengya@lzu.edu.cn
;
zhyian@gmail.com
关键词:
Kapok fiber
;
Calotropis gigantea fiber
;
Polydopamine
;
In-situ reduction
;
4-
Nitrophenol
刊名:Carbohydrate Polymers
出版年:2017
4.
Core-shell Ag@Pt nanoparticles supported on sepiolite nanofibers for the catalytic reduction of
nitrophenol
s in water: Enhanced catalytic performance and DFT study
作者:
Ying Ma
a
;
b
;
Xiaoyong Wu
a
;
Gaoke Zhang
a
;
gkzhang@whut.edu.cn
关键词:
Ag@Pt Nanoparticles
;
Sepiolite nanofibers
;
Core-shell structure
;
DFT Calculations
;
Catalytic reduction of
nitrophenol
s
刊名:Applied Catalysis B: Environmental
出版年:2017
5.
Novel Ag
2
S nanoparticles on reduced graphene oxide sheets as a super-efficient catalyst for the reduction of 4-
nitrophenol
作者:
Bin Lang
;
Hong-Kun Yu
;
hkyu@fudan.edu.cn
关键词:
Reduced graphene oxide
;
Ag2S nanoparticles
;
Nanocomposites
;
4-
Nitrophenol
;
Catalytic activity
刊名:Chinese Chemical Letters
出版年:2017
6.
Fabrication of highly dispersed Pd nanoparticles supported on reduced graphene oxide for catalytic reduction of 4-
nitrophenol
作者:
Wenhuan Dong
;
Saisai Cheng
;
Cheng Feng
;
fengchengcctv@163.com
;
Ningzhao Shang
;
Shutao Gao
;
Chun Wang
;
chunwang69@126.com
关键词:
Pd nanoparticles
;
Reduced graphene oxide
;
Sacrificial method
;
p-
Nitrophenol
;
Catalytic reduction
刊名:Catalysis Communications
出版年:2017
7.
Synthesis of Pd/Au bimetallic nanoparticle-loaded ultrathin graphitic carbon nitride nanosheets for highly efficient catalytic reduction of p-
nitrophenol
作者:
Wei Fang
a
;
b
;
Yaocheng Deng
a
;
b
;
Lin Tang
a
;
b
;
tanglin@hnu.edu.cn
;
Guangming Zeng
a
;
b
;
zgming@hnu.edu.cn
;
Yaoyu Zhou
c
;
Xia Xie
a
;
b
;
Jingjing Wang
a
;
b
;
Yang Wang
a
;
b
;
Jiajia Wang
a
;
b
关键词:
Au/Pd bimetallic nanoparticles
;
Catalytic reduction
;
p-
Nitrophenol
;
Heterogeneous catalyst
;
Graphitic carbon nitride nanosheets
刊名:Journal of Colloid and Interface Science
出版年:2017
8.
Selection of active phase of MnO
2
for catalytic ozonation of 4-
nitrophenol
作者:
Faheem Nawaz
a
;
b
;
Hongbin Cao
a
;
Yongbing Xie
a
;
ybxie@ipe.ac.cn
;
Jiadong Xiao
a
;
b
;
Yue Chen
a
;
Zahid Ali Ghazi
b
关键词:
MnO2
;
Active phase
;
4-
Nitrophenol
;
Catalytic ozonation
;
Average oxidation state
刊名:Chemosphere
出版年:2017
9.
Anchoring of silver nanoparticles on graphitic carbon nitride sheets for the synergistic catalytic reduction of 4-
nitrophenol
作者:
Xiu Wang
a
;
Fatang Tan
a
;
Fatangtan@hust.edu.cn
;
Wei Wang
a
;
Xueliang Qiao
a
;
Xiaolin Qiu
b
;
Jianguo Chen
a
关键词:
Ag/g-C3N4 composite
;
Electro/photo catalyst
;
4-
nitrophenol
;
Catalytic activity
;
Synergistic effect
刊名:Chemosphere
出版年:2017
10.
Hydrogenation of 4-
nitrophenol
to 4-aminophenol at room temperature: Boosting palladium nanocrystals efficiency by coupling with copper via liquid phase pulsed laser ablation
作者:
Hanbit Park
;
D. Amaranatha Reddy
;
Yujin Kim
;
Seunghee Lee
;
Rory Ma
;
Manho Lim
;
mhlim@pusan.ac.kr
;
Tae Kyu Kim
;
tkkim@pusan.ac.kr
关键词:
PdCu
;
Liquid phase pulsed laser ablation
;
Catalytic activity
;
Nitrophenol
reduction
;
Environmental remediation
刊名:Applied Surface Science
出版年:2017
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题名(798)
关键词(949)
文摘(2328)
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