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作 者:Xin Li Peng Wang Ya-Qiang Wu Zhen-Hua Liu Qian-Qian Zhang Ting-Ting Zhang Ze-Yan Wang Yuan-Yuan Liu Zhao-Ke Zheng Bai-Biao Huang
机构地区:[1]State Key Laboratory of Crystal Materials,Shandong University,Jinan 250100,China [2]Engineering Technology Research Center of Henan Province for Solar Catalysis,College of Chemistry and Pharmaceutical Engineering,Nanyang Normal University,Nanyang 473061,China [3]Comprehensive Technical Service Center,Linyi Customs,Linyi 276034,China
出 处:《Frontiers of physics》2020年第2期93-99,共7页物理学前沿(英文版)
基 金:the National Natural Science Foundation of China(Grant Nos.21832005,51602179,51972195,21972078,and U1832145);the Major Special Projects of Shandong Province(public welfare,2019GGX103026)。
摘 要:In this work,we prepared ZnGeP2(ZGP)photocatalyst using single flat temperature zone(SFT)method in a vacuum quartz ampoule.The XRD,SEM,EDS,DRS and XPS were used to characterize the crystal structure,morphology,elemental content,optical absorption and band gap structure of ZGP.The results of photocatalytic hydrogen evolution and apparent quantum efficiency show that ZGP is a promising photocatalyst for hydrogen production both under visible and near-infrared light irradiation.In addition,it is also found that adding the common stabilizer H3PO2 and ultrasonic treatment can efficiently improve the photocatalytic activity and stability of ZGP.
关 键 词:ZNGEP2 near-infrared-activated PHOTOCATALYST H2 production
分 类 号:TN21[电子电信—物理电子学] O643.36[理学—物理化学]
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