首页|期刊导航|物理化学学报|ZnCoP/CdLa2S4肖特基异质结的构建促进光催化产氢

ZnCoP/CdLa2S4肖特基异质结的构建促进光催化产氢OA北大核心CSTPCD

Construction of ZnCoP/CdLa2S4 Schottky Heterojunctions for Enhancing Photocatalytic Hydrogen Evolution

中文摘要英文摘要

采用异质结光催化剂来光催化产氢被认为是一种解决环境和能源危机的有效方法.本文采用水浴加热辅助的物理混合法制备了ZnCoP/CdLa2S4肖特基异质结,以提高光催化产氢的效率.由于ZnCoP具有较高的功函数和金属导电性,光生电子可以通过ZnCoP/CdLa2S4界面从CdLa2S4转移到ZnCoP上,从而抑制了光生电子与空穴的复合.此外,在ZnCoP与CdLa2S4的界面处形成的肖特基异质结抑制了电子从ZnCoP回流到CdLa2S4,进一步促进了电子-空穴对的分离.同时,与CdLa2S4相比,ZnCoP/CdLa2S4异质结具有更强的可见光吸收性能.此外,ZnCoP可作为电子受体和产氢的活性位点.紧密的ZnCoP/CdLa2S4界面、ZnCoP较高的功函数和金属电导率与肖特基结之间的协同作用显著增强了CdLa2S4光催化产氢的性能.当ZnCoP的质量分数为30%时,30ZCP/CLS复合材料具有最佳的光催化性能,在可见光照射下,以Na2S和Na2SO3为牺牲剂时,光催化产氢的速率达到10.26 mmol·g-1·h-1,是CdLa2S4的7.7倍.结合活性数据和表征结果,提出了ZnCoP/CdLa2S4肖特基异质结光催化产氢可能的反应机理.

Photocatalytic hydrogen evolution by heterojunction photocatalysts is considered an effective way to address environmental and energy crises.In this work,a novel ZnCoP/CdLa2S4 Schottky heterojunction was prepared via a physical mixing method assisted by water bath heating and used to enhance the efficiency of photocatalytic hydrogen production.Owing to the higher work function and metallic conductivity of ZnCoP,the photoinduced electrons can transfer from CdLa2S4 to ZnCoP through the ZnCoP/CdLa2S4 interface,which suppresses the recombination of photoinduced electrons and holes.Moreover,the Schottky heterojunction formed at the interface between ZnCoP and CdLa2S4 inhibits electron backflow from ZnCoP to CdLa2S4,which further promotes the separation of electron-hole pairs.Meanwhile,the ZnCoP/CdLa2S4 heterojunction exhibited enhanced visible light absorption compared to CdLa2S4.In addition,ZnCoP acts as an electron acceptor and hydrogen evolution active site.The synergistic effect of the tight ZnCoP/CdLa2S4 interface,the higher work function and metallic conductivity of ZnCoP,and the formation of Schottky junctions significantly enhance the photocatalytic hydrogen production evolution performance of CdLa2S4.When the amount of ZnCoP was 30 wt%(wt%,mass fraction),the 30ZCP/CLS composite showed the highest photocatalytic performance,and the hydrogen production rate reached 10.26 mmol·g-1·h-1 under visible light irradiation and with Na2S and Na2SO3 as sacrificial agents,which was 7.7 times that of CdLa2S4.Combined with the activity data and characterization results,a potential mechanism for photocatalytic hydrogen production over ZnCoP/CdLa2S4 Schottky heterojunctions was proposed.

何建印;陈柳云;谢新玲;秦祖赠;纪红兵;苏通明

广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004||浙江工业大学化学工程学院,浙江绿色石化与轻烃转化研究院,杭州 310014广西大学化学化工学院,广西石化资源加工与过程强化技术重点实验室,南宁 530004

化学

CdLa2S4ZnCoP肖特基异质结光催化电荷转移

CdLa2S4ZnCoPSchottky heterojunctionPhotocatalyticCharge transfer

《物理化学学报》 2024 (11)

31-32,2

This work was supported by the National Natural Science Foundation of China(22208065),Guangxi Natural Science Foundation(2022GXNSFBA035483),Opening Project of Guangxi Key Laboratory of Petrochemical Resource Processing and Process Intensification Technology(2023K012),and Special Funding for'Guangxi Bagui Scholars'. 国家自然科学基金项目(22208065)广西自然科学基金项目(2022GXNSFBA035483)广西石化资源加工及过程强化技术重点实验室开放项目(2023K012)和广西八桂学者专项资金支持

10.3866/PKU.WHXB202404030

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