Suppr超能文献

熔融插层技术合成杂金属@壳聚糖生物复合材料作为可回收的硫逐膦酸酯水解催化剂。

Melt intercalation technique for synthesis of hetero-metallic@chitin bio-composite as recyclable catalyst for prothiofos hydrolysis.

机构信息

Department of Pretreatment and Finishing of Cellulosic based Textiles, Textile Industries Research Division, National Research Centre, Scopus affiliation ID 60014618, 33 EL Buhouth St., Dokki, Giza 12622, Egypt.

Chemistry Department, Faculty of Science, Helwan University, Ain-Helwan, Cairo 11795, Egypt.

出版信息

Carbohydr Polym. 2021 Aug 15;266:118163. doi: 10.1016/j.carbpol.2021.118163. Epub 2021 May 7.

Abstract

The compatibility of homo-metallic and hetero-metallic bio-composite was promisingly investigated as recyclable catalyst for prothiofos hydrolysis. Chitin as water insoluble biopolymer was functionalized as a template for generation of homo-metallic (Ag@chitin, Au@chitin and Pd@chitin) and hetero-metallic (Au@Ag@chitin, Pd@Ag@chitin and Pd@Au@Ag@chitin) composites, by using melt intercalation technique. Investigation of the compatibility of the synthesized homo-metallic and hetero-metallic bio-composites in hydrolysis of prothiofos was performed and affirmed via HPLC results. Immobilization of Pd in the composites showed perfection in the catalytic performance for prothiofos hydrolysis. Pd@Au@Ag@chitin exhibited the highest hydrolysis result of 99% for prothiofos was hydrolyzed within 150 min with rate constant (k) of 24.48 min. After five recycles for Pd@Au@Ag@chitin, the hydrolysis of prothiofos was lowered from 346 mg/g to 269 mg/g with reduction percentage of 22%. The synthesized bio-composite was highly effective as recyclable catalyst and can be easily served in the remediation of pesticides.

摘要

作为一种可回收的催化剂,用于研究硫膦水解,有望对同金属和异金属生物复合材料的相容性进行研究。壳聚糖作为不溶于水的生物聚合物,通过熔融插层技术,被功能化为生成同金属(Ag@壳聚糖、Au@壳聚糖和 Pd@壳聚糖)和异金属(Au@Ag@壳聚糖、Pd@Ag@壳聚糖和 Pd@Au@Ag@壳聚糖)复合材料的模板。通过 HPLC 结果证实了合成的同金属和异金属生物复合材料在硫膦水解中的相容性研究。将 Pd 固定在复合材料中,在催化硫膦水解方面表现出了完美的性能。Pd@Au@Ag@壳聚糖在 150 分钟内将硫膦的水解率提高到 99%,其速率常数(k)为 24.48 分钟。在对 Pd@Au@Ag@壳聚糖进行了五次循环后,硫膦的水解率从 346mg/g 降低到 269mg/g,降低了 22%。合成的生物复合材料作为一种高效的可回收催化剂,可用于修复农药。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验