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首页> 外文期刊>International journal of hydrogen energy >Z-scheme design of Ag@g-C_3N_4/ZnS photoanode device for efficient solar water oxidation: An organic-inorganic electronic interface
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Z-scheme design of Ag@g-C_3N_4/ZnS photoanode device for efficient solar water oxidation: An organic-inorganic electronic interface

机译:Ag @ g-C_3N_4 / ZnS光电阳极器件用于高效太阳能氧化的Z方案设计:有机-无机电子界面

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Herein, we demonstrate a design of a composite photoanode comprising a very thin layer of ZnS NPs onto a dense layer of Ag@g-C3N4 to form a dual absorber tandem device based on organic-inorganic electronic interface for photo water-splitting. The XRD pattern of Ag@g-C3N4 showed both the diffraction peaks of cubic Ag and main peak of g-C3N3. The XPS survey spectrum confirms the existence of the C, N, Ag, Zn, and S elements on the surface of the Ag@g-C3N4/ZnS photoelectrode. With incorporating Ag in g-C3N4 structure, the band gap decreased from 2.90 for g-C3N4 to 2.55 eV for Ag@g-C3N4 and also light absorption ability increased. The device based on the architecture of TiO2/Ag@g-C3N4/ZnS/Ni(OH)(2) showed a photocurrent of about 0.1 and 0.2 mA cm(-2) at potential of 1.23 and 1.7 V vs. RHE. The Ag@g-C3N4/ZnS photoanode exhibited a photocurrent turn-on potential of 0.45 V vs. RHE. In this photoanode device, AgrOg-C3N4 as a second absorber layer could absorb the photons of visible light which are transparent to ZnS layer and transforms into additional photovoltage. This architecture introduces a successful band alignment for high efficiency water-splitting through organic-inorganic junction. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这里,我们展示了一种复合光电阳极的设计,该复合光电阳极包括一层非常薄的ZnS NPs到致密的Ag @ g-C3N4层上,从而形成了基于有机无机电子界面的双吸收器串联装置,用于光水分解。 Ag @ g-C3N4的XRD图谱显示了立方Ag的衍射峰和g-C3N3的主峰。 XPS调查光谱证实了Ag @ g-C3N4 / ZnS光电极表面上存在C,N,Ag,Zn和S元素。通过将Ag掺入g-C3N4结构中,带隙从g-C3N4的2.90降低至Ag @ g-C3N4的2.55eV,并且光吸收能力也增加。基于TiO2 / Ag @ g-C3N4 / ZnS / Ni(OH)(2)的体系结构的器件在相对于RHE的电势为1.23和1.7 V时显示出约0.1和0.2 mA cm(-2)的光电流。 Ag @ g-C3N4 / ZnS光电阳极相对于RHE表现出0.45 V的光电流开启电势。在该光电阳极装置中,作为第二吸收层的AgrOg-C3N4可以吸收对ZnS层透明的可见光光子,并转化为附加的光电压。该架构引入了成功的能带对准功能,可通过有机-无机连接高效分解水。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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