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具有分级多孔结构的 S 缺陷富 MoS 气凝胶:用于去除有机染料的高效光催化和方便再利用。

S defect-rich MoS aerogel with hierarchical porous structure: Efficient photocatalysis and convenient reuse for removal of organic dyes.

机构信息

Fundamental Science on Nuclear Wastes and Environmental Safety Laboratory, Southwest University of Science and Technology, Mianyang, 621000, PR China; School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang, 621010, PR China.

School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang, 621010, PR China.

出版信息

Chemosphere. 2024 Apr;354:141649. doi: 10.1016/j.chemosphere.2024.141649. Epub 2024 Mar 6.

Abstract

To avoid the difficulty of separating solids from liquids when reusing powder photocatalysts, 3D stereoscopic photocatalysts were constructed. In this study, three-dimensional S defect-rich MoS hierarchical aerogel was prepared by chemical cross-linking of functional ultrathin 2D MoS. Its phase, micro-morphology and structure were characterized, and it was used in the study of photocatalytic degradation of organic pollutants. Of the samples tested, MS@CA-3 (i.e., defect-rich 3D MoS aerogel with a loading of 30 mg of defect-rich MoS) exhibited the best photocatalytic activity due to its suitable load, good light transmission, and a degradation rate of up to 91.0% after 3 h. In addition, MS@CA-3 aerogel offers high recyclability and structural stability, and the degradation rate of the organic pollutant methylene blue decreases only 9.8% after more than ten cycles of photocatalytic degradation. It combines the high catalytic performance of S defect-rich 2D MoS and the convenient reusability of hierarchical porous aerogel. This study provides valuable data and a reference for the practical promotion and application of photocatalytic technology in the field of environmental remediation.

摘要

为避免重复使用粉末光催化剂时固液分离的困难,构建了 3D 立体光催化剂。本研究通过功能化超薄二维 MoS 的化学交联制备了具有 S 缺陷富的三维 MoS 分级气凝胶。对其进行了相、微观形貌和结构的表征,并用于研究有机污染物的光催化降解。在测试的样品中,MS@CA-3(即负载有 30mg S 缺陷富 MoS 的 3D MoS 气凝胶)由于其适宜的负载量、良好的透光性,在 3 小时后光催化降解率高达 91.0%,表现出最好的光催化活性。此外,MS@CA-3 气凝胶具有较高的可回收性和结构稳定性,经过十多次光催化降解循环后,有机污染物亚甲基蓝的降解率仅下降了 9.8%。它结合了 S 缺陷富二维 MoS 的高催化性能和分级多孔气凝胶的方便可重复使用性。本研究为光催化技术在环境修复领域的实际推广和应用提供了有价值的数据和参考。

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