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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Fabrication of selective interface of ZnO/CdS heterostructures for more efficient photocatalytic hydrogen evolution
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Fabrication of selective interface of ZnO/CdS heterostructures for more efficient photocatalytic hydrogen evolution

机译:ZnO / Cds异质结构选择性界面的制备以进行更高效的光催化氢气进化

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摘要

In previous studies, photocatalytic heterostructures between two components have usually been distributed randomly at the material's surface. It is significant and important to fabricate a selective heterostructure interface with more efficient charge separation and transfer. In this study, active pores were first investigated through competitive adsorption, degradation efficiency, and selective corrosion. It was found that selective adsorption-induced photosensitization along with active facets led to selective photocorrosion around the pores in ZnO nanosheets. Then, comparison between the properties of selectively and randomly distributed ZnO/CdS heterostructures is presented, namely, phase composition, morphology, pore size, absorbance, electronic band structure, photocurrent density, electrochemical impedance, and hydrogen evolution. Due to the Z-scheme, ZnO/CdS heterostructure selectively bound at the active pores, due to which more efficient charge separation and higher hydrogen evolution were achieved for ZnO/CdS-S. Thus, fabrication of selective heterostructure interface endows ZnO/CdS with more efficient hydrogen evolution.
机译:在先前的研究中,两种组分之间的光催化异质结构通常在材料表面随机分布。制造具有更有效电荷分离和转移的选择性异质结构界面是显着和重要的。在该研究中,首先通过竞争性吸附,降解效率和选择性腐蚀来研究活性孔隙。发现选择性吸附引起的光敏聚致敏感性以及有源方面导致在ZnO NanosheS中的孔周围选择性光腐蚀。然后,呈现了选择性和随机分布的ZnO / Cds异质结构的性质之间的比较,即相位成分,形态,孔径,吸光度,电子带结构,光电流密度,电化学阻抗和氢气进化。由于Z形方案,由于该ZnO / Cds在活性孔隙中选择性地结合的ZnO / Cds异质结构,因为对ZnO / Cds-s实现了更有效的电荷分离和更高的氢进化。因此,选择性异质结构界面的制备赋予ZnO / Cds具有更有效的氢进化。

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