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首页> 外文期刊>International journal of hydrogen energy >Fabrication of 3-D ZnO/CN nanorods for photo-/electrocatalytic water splitting: An efficient morphology for charge carriers transportation
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Fabrication of 3-D ZnO/CN nanorods for photo-/electrocatalytic water splitting: An efficient morphology for charge carriers transportation

机译:用于光/电催化水分解的3-D ZnO / CN纳米棒的制备:电荷载流子传输的有效形态

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The present study is about the fabrication of an efficient photo-/electrocatalyst, prepared via in-situ hydrothermal coupling of ZnO with g-C3N4. The results prove this electrocatalyst as suitable band structure semiconductor. The crystalline nature and related morphological parameters are controlled by optimized hydrothermal and calcination temperatures conditions. A series of physicochemical characterization are applied to inquire the crystalline structure, surface morphology, optical capabilities and charge transportation properties. Results revealed that the sample acts as excellent electrocatalyst with OER current density at 10 mAcm(-2) @ 335 mV and the HER at 100 mAcm(-2) @ -225 mV. While upon illuminations its catalytic properties further enhance at OER 10 mAcm(-2) @ 326 mV and for HER current density of 100 mAcm(-2) @ 167 mV. It can be seen from the present study that g-C3N4 play gigantic role in enhancing the catalytic property of ZnO and hence it leads to a relationship between hierarchical features and photo-/electrochemical activity for water splitting. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究是关于通过ZnO与g-C3N4的原位水热偶合制备的高效光/电催化剂的制备。结果证明该电催化剂是合适的带状半导体。通过优化的水热和煅烧温度条件来控制晶体性质和相关的形态参数。应用一系列的物理化学表征来查询晶体结构,表面形态,光学性能和电荷传输性质。结果表明,该样品可作为出色的电催化剂,在335 mV的10 mAcm(-2)下的OER电流密度和在-225 mV的100 mAcm(-2)下的HER。在照明时,其催化性能在326 mV的OER 10 mAcm(-2)和167 mV的100 mAcm(-2)的HER电流密度下进一步增强。从本研究中可以看出,g-C3N4在增强ZnO的催化性能方面起着巨大作用,因此导致分层特征与光解/电化学活性之间的关系。 (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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