Suppr超能文献

具有生物碳疏松装饰的微孔钴铁氧体构建多功能复合材料用于染料吸附、抗菌和电磁屏蔽。

Microporous Cobalt Ferrite with Bio-Carbon Loosely Decorated to Construct Multi-Functional Composite for Dye Adsorption, Anti-Bacteria and Electromagnetic Protection.

机构信息

College of Science, Sichuan Agricultural University, Ya'an, 625014, P. R. China.

School of Materials Science and Engineering, Hubei University of Automotive Technology, Shiyan, 442002, P. R. China.

出版信息

Small. 2024 Nov;20(45):e2404449. doi: 10.1002/smll.202404449. Epub 2024 Jul 16.

Abstract

Currently, facing electromagnetic protection requirement under complex aqueous environments, the bacterial reproduction and organic dye corrosion may affect the composition and micro-structures of absorbers to weaken their electromagnetic properties. To address such problems, herein, a series of CoFeO@BCNPs (cobalt ferrite @ bio-carbon nanoparticles) composites are synthesized via co-hydrothermal and calcining process. The coupling of magnetic cobalt ferrite and dielectric bio-carbon derived from Apium can endow the composite multiple absorption mechanisms and matched impedance for effective microwave absorption, attaining a bandwidth of 8.12 GHz at 2.36 mm and an intensity of -49.85 dB at 3.0 mm. Due to the ROS (reactive oxygen species) stimulation ability and heavy metal ions of cobalt ferrite, the composite realizes an excellent antibacterial efficiency of 99% against Gram negative bacteria of Escherichia coli. Moreover, the loose porous layer of surface stacked bio-carbon can promote the adsorption of methylene blue for subsequent eliminating, a high removal rate of 90.37% for organic dye can be also achieved. This paper offers a new insight for rational design of composite's component and micro-structure to construct multi-functional microwave absorber for satisfying the electromagnetic protection demand in complicated environments.

摘要

目前,面对复杂水介质环境下的电磁防护要求,细菌繁殖和有机染料腐蚀可能会影响吸收剂的组成和微观结构,从而削弱其电磁性能。针对这些问题,本文通过共水热和煅烧工艺合成了一系列 CoFeO@BCNPs(四氧化三钴@生物炭纳米颗粒)复合材料。磁性四氧化三钴和芹菜衍生的介电生物炭的耦合赋予了复合材料多种吸收机制和匹配的阻抗,从而实现了有效的微波吸收,在 2.36mm 处达到了 8.12GHz 的带宽和在 3.0mm 处达到了-49.85dB 的强度。由于四氧化三钴的 ROS(活性氧)刺激能力和重金属离子,该复合材料对革兰氏阴性菌大肠杆菌表现出 99%的优异抗菌效率。此外,表面堆叠生物炭的疏松多孔层可以促进亚甲基蓝的吸附,从而实现后续的去除,对有机染料的去除率高达 90.37%。本文为合理设计复合材料的成分和微观结构提供了新的思路,以构建用于满足复杂环境下电磁防护需求的多功能微波吸收剂。

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