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首页> 外文期刊>ACS Omega >Solar-Light-Driven Improved Photocatalytic Performance of Hierarchical ZnIn2S4 Architectures
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Solar-Light-Driven Improved Photocatalytic Performance of Hierarchical ZnIn2S4 Architectures

机译:太阳能光驱动的改善了层次Znin 2 S 4 架构的光催化性能

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In the quest for developing novel narrow band gap semiconductor materials, the research in metal chalcogenides has gained a strong attraction. In the present investigation, a surfactant-free hydrothermal route has been followed to design hierarchical self-assembled flower-like ZnIn_(2)S_(4) structures through control over precursor concentration and hydrothermal processing parameters. Uniform hexagonal marigold flower-like ZnIn_(2)S_(4) architectures (~4 μm) were formed with self-assembly of petals (thickness ~8–12 nm) forming rose-like structures and finally forming marigold flowers in 24 h duration. The hierarchical ZnIn_(2)S_(4) flower structure has been used as photocatalysts for the degradation of dye and chlorinated phenols. Photodegradation demonstrates that the high surface area from the porous flower architecture (~72 m~(2)/g) with an enhanced visible light absorption giving low band gap energy (2.15 eV) is responsible for higher photocatalytic performance. Complete degradation of the organic pollutants has been observed within 90 min in the presence of natural sunlight. To understand the participating reactive species contributing to degradation, scavenger studies were performed for deducing the plausible photocatalytic degradation pathways. This study might open new insights into the design of novel hierarchical structures.
机译:在寻求开发新型窄带隙半导体材料的过程中,金属硫属元素化物的研究已经获得了强烈的吸引力。在本发明的研究中,通过控制前体浓度和水热处理参数,通过控制表面活性剂的水热路径进行表面活性剂的水热路径。均匀的六角形万寿菊花样Znin_(2)S_(4)架构(4)架构(〜4μm)形成花瓣(厚度〜8-12nm)的自组装,形成玫瑰状结构,最终在24小时内形成万寿菊花。等级Znin_(2)S_(4)花结构已被用作光催化剂,用于染料和氯化酚的降解。光降解证明,具有增强的可见光吸收的多孔花卉结构(〜72m〜(2)/ g)的高表面积,其具有低带隙能量(2.15eV)负责更高的光催化性能。在自然阳光存在下,在90分钟内完成了有机污染物的完全降解。为了了解有助于降解的参与的反应性物种,进行清除剂研究,以推导出可合理的光催化降解途径。本研究可能对新型等级结构的设计开辟了新的见解。

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