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一维/二维W_(18)O_(49)/多孔g-C_(3)N_(4)梯形异质结构建及其光催化析氢性能研究 被引量:16
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作者 黄悦 梅飞飞 +2 位作者 张金锋 代凯 Graham Dawson 《物理化学学报》 SCIE CAS CSCD 北大核心 2022年第7期7-15,共9页
提高光催化分解水制氢的效率是能量转换领域的关键挑战。本研究首先合成了二维多孔氮化碳(PCN),然后在二维PCN上原位生长了一维W_(18)O_(49)(WO),形成了一种新型的梯形(S型)异质结。该异质结可以加快界面电荷的分离和转移,赋予WO/PCN体... 提高光催化分解水制氢的效率是能量转换领域的关键挑战。本研究首先合成了二维多孔氮化碳(PCN),然后在二维PCN上原位生长了一维W_(18)O_(49)(WO),形成了一种新型的梯形(S型)异质结。该异质结可以加快界面电荷的分离和转移,赋予WO/PCN体系更好的氧化还原能力。此外,具有多孔结构的PCN提供了更多的催化活性位点。与WO和PCN相比,20%WO/PCN复合材料具有更高的H_(2)产率(1700μmol∙g^(−1)∙h^(−1)),是PCN(30μmol∙g^(−1)∙h^(−1))的56倍。本研究提供了一种新S型光催化剂用于光催化制氢领域。 展开更多
关键词 S型 光催化制氢 W_(18)O_(49) 多孔氮化碳 异质结
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Step-scheme porous g-C3N4/Zn0.2Cd0.8S-DETA composites for efficient and stable photocatalytic H2 production 被引量:11
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作者 feifei mei Zhen Li +2 位作者 Kai Dai Jinfeng Zhang Changhao Liang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第1期41-49,共9页
In recent years,environmental pollution and energy crisis have become increasingly serious issues owing to the burning of fossil fuels.Among the many technologies,decomposition of water to produce hydrogen has attract... In recent years,environmental pollution and energy crisis have become increasingly serious issues owing to the burning of fossil fuels.Among the many technologies,decomposition of water to produce hydrogen has attracted much attention because of its sustainability and non-polluting characteristic.However,highly efficient decomposition of water that is driven by visible light is still a challenge.Herein,we report the large-scale preparation of step-scheme porous graphite carbon nitride/Zn0.2Cd0.8S-diethylenetriamine(Pg-C3N4/Zn0.2Cd0.8S-DETA)composite by a facile solvothermal method.It was found by UV-vis spectroscopy that 15%Pg-C3N4/Zn0.2Cd0.8S-DETA exhibited suitable visible absorption edge and band gap for water decomposition.The hydrogen production rate of 15%Pg-C3N4/Zn0.2Cd0.8S-DETA composite was 6.69 mmol g^-1 h^-1,which was 16.73,1.61,and 1.44 times greater than those of Pg-C3N4,CdS-DETA,and Zn0.2Cd0.8S-DETA,respectively.In addition,15%Pg-C3N4/Zn0.2Cd0.8S-DETA composite displayed excellent photocatalytic stability,which was maintained for seven cycles of photocatalytic water splitting test.We believe that 15%Pg-C3N4/Zn0.2Cd0.8S-DETA composite can be a valuable guide for the development of solar hydrogen production applications in the near future. 展开更多
关键词 Pg-C3N4 Zn0.2Cd0.8S DIETHYLENETRIAMINE Photocatalysis Step-scheme porous composite
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