首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >A novel 3D nanofibrous aerogel-based MoS2@Co3S4 heterojunction photocatalyst for water remediation and hydrogen evolution under simulated solar irradiation
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A novel 3D nanofibrous aerogel-based MoS2@Co3S4 heterojunction photocatalyst for water remediation and hydrogen evolution under simulated solar irradiation

机译:一种新型3D纳米纤维气凝胶基MOS2 @ CO3S4异质结光催化剂,用于仿形太阳辐射下的水修复和氢气进化

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摘要

The integration of nanostructured photocatalysts into 3D ordered assemblies holds great promise for boosting their dispersibility and stability, and thus allows for the development of competitive strategies for enhancing their photocatalytic performance for various applications. In addition, heterostructure construction for photo catalysts is another effective method to improve their catalytic activity because of the remarkable role the heterostructure plays in charge separation. In this study, a dual-templated method for fabricating molybdenum disulfide@cobaltosic sulfide on nanofibrous aerogel (MoS2@Co3S4/NFA) was effectively used. The NFA carrier comprising bi-component nanofibers was successfully used as the first step template for in-situ growth of ZIF-67. Moreover, ZIF-67 could convert into Co3S4 and be used as the second template for MoS2. The MoS2@Co3S4/NFA delivered excellent photocatalytic activity toward typical contaminants (Cr(VI), sulfamethoxazole, and bacteria), and good hydrogen evolution activity. This paper describes a novel photocatalyst design strategy and opens new horizons for solving environmental and energy issues.
机译:纳米结构光催化剂将纳米结构光催化剂与3D订购组件的整合具有很大的希望,可以提高其分散性和稳定性,从而允许开发竞争策略,以提高其对各种应用的光催化性能。此外,由于异质结构在电荷分离中起作用的显着作用,其外性结构构造是改善其催化活性的另一种有效的方法。在该研究中,有效地使用了用于在纳米纤维(MOS2 @ CO3S4 / NFA)上制造二硫化钼@ Cobaltosic硫化物的双模板化方法。包含双组分纳米纤维的NFA载体成功用作ZIF-67的原位生长的第一步模板。此外,ZIF-67可以转换为CO3S4并用作MOS2的第二模板。 MOS2 @ CO3S4 / NFA为典型的污染物(Cr(vi),磺胺嘧唑和细菌)提供了优异的光催化活性,以及​​良好的氢进化活性。本文介绍了一种新型光催化设计策略,并开启了解决环境和能源问题的新视野。

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