H2进化效率高和没有去除Ag纳米粒子架桥g-C3N4 WS2异质结催化剂:(High efficiency for H2 evolution and NO removal over the Ag nanoparticles bridged g-C3N4 and WS2 heterojunction photocatalysts).pdfVIP
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Applied Catalysis B: Environmental 219 (2017) 467–478
Contents lists available at ScienceDirect
Applied Catalysis B: Environmental
j o u r na l h o m e p ag e: w w w. elsev /locate/apc atb
High efficiency for H2 evolution and NO removal over the Ag
nanoparticles bridged g-C3 N4 and WS2 heterojunction photocatalysts
Yongning Ma a , Juan Li a,d , Enzhou Liu a,b,c , Jun Wan a , Xiaoyun Hu b,∗ , Jun Fan a,∗
a School of Chemical Engineering, Northwest University, Xi’an, 710069, PR China
b School of Physics, Northwest University, Xi’an, 710069, PR China
c Institute of Modern Physics, Northwest University, Xi’an, 710069, PR China
d School of Environmental Engineering and Chemistry, Luoyang Institute of Science and Technology, Luoyang, 471023, PR China
a r t i c l e i n f o a b s t r a c t
Article history: Ag nanoparticles bridged g-C3 N4 and WS2 nanosheets heterojunction (x-y-WAC) and Ag nanoparti-
Received 20 March 2017 cles deposited g-C N /WS heterojunction (x-y-AWCA) were prepared through a solvent evaporation
3 4 2
Received in revised form 13 July 2017 and high temperature calcinations method, the x is the percentage of Ag nanoparticles and y is WS2
Accepted 23 July 2017
nanosheets in mass fraction, respectively. The as-prepared heterojunctions were applied to water split-
Available online 24 July 2017
ting for H2 evolution and NO removal at the indoor air level under simu
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