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典型文献
Atomically Dispersed Main Group Magnesium on Cadmium Sul-fide as the Active Site for Promoting Photocatalytic Hydrogen Evolution Catalysis
文献摘要:
Photoabsorption charge separation/transfer and surface reaction are the three main factors influencing the efficiency of photocatalysis.Band structure engineering has been extensively applied to improve the light absorption of photocatalysts,however,most of the developed photo-catalysts still suffer from low photocatalytic performance due to the limited active site(s) and fast recombination of photogenerated charge carriers.In this work,atomically dispersed main group magnesium (Mg) is introduced onto CdS monodispersed nanospheres,which greatly enhances the photocatalytic hydrogen evolution reaction.The photocatalytic hydrogen evolution reaction rate reaches 30.6 mmol·gcatalyst-1·h-1,which is about 11.8 and 2.5 times that of pure CdS and Pt (2 wt.%)-CdS.The atomically dispersed Mg on CdS acts as an electron sink to trap photogenerated electrons,and at the same time,greatly reduces the Gibbs free energy of hydrogen evolution reaction(HER) and accelerates HER.
文献关键词:
作者姓名:
Ran Chen;Juan Chen;Huinan Che;Gang Zhou;Yanhui Ao;Bin Liu
作者机构:
Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes,Ministry of Education,College of Environment,Hohai University,Nanjing 210098,China;School of Chemical and Biomedical Engineering,Nanyang Technological University,Singapore 637459,Singapore;Division of Chemistry and Biological Chemistry,School of Physical and Mathematical Sciences,Nanyang Technological University,21 Nanyang Link,Singapore 637371,Singapore
文献出处:
引用格式:
[1]Ran Chen;Juan Chen;Huinan Che;Gang Zhou;Yanhui Ao;Bin Liu-.Atomically Dispersed Main Group Magnesium on Cadmium Sul-fide as the Active Site for Promoting Photocatalytic Hydrogen Evolution Catalysis)[J].结构化学,2022(01):14-18
A类:
Photoabsorption,gcatalyst
B类:
Atomically,Dispersed,Main,Group,Magnesium,Cadmium,Sul,fide,Active,Site,Promoting,Photocatalytic,Hydrogen,Evolution,Catalysis,charge,separation,transfer,surface,reaction,are,three,main,factors,influencing,efficiency,photocatalysis,Band,structure,engineering,has,been,extensively,applied,improve,light,photocatalysts,however,most,developed,still,suffer,from,low,photocatalytic,performance,due,limited,active,site,fast,recombination,photogenerated,carriers,In,this,work,atomically,group,magnesium,Mg,introduced,onto,CdS,monodispersed,nanospheres,which,greatly,enhances,hydrogen,evolution,reaches,about,times,that,pure,Pt,wt,acts,sink,trap,electrons,same,reduces,Gibbs,free,energy,HER,accelerates
AB值:
0.651777
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