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基于自组装核壳可生物降解纳米纤维的多功能滤膜,用于通过摩擦电效应实现持久静电过滤。

Multifunctional Filter Membranes Based on Self-Assembled Core-Shell Biodegradable Nanofibers for Persistent Electrostatic Filtration through the Triboelectric Effect.

作者信息

Cho Yujang, Son Yongkoo, Ahn Jaewan, Lim Haeseong, Ahn Seongcheol, Lee Jiyoung, Bae Pan Kee, Kim Il-Doo

机构信息

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon34141, Republic of Korea.

BioNano Health Guard Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon34141, Republic of Korea.

出版信息

ACS Nano. 2022 Nov 22;16(11):19451-19463. doi: 10.1021/acsnano.2c09165. Epub 2022 Nov 14.

Abstract

The massive production of polymer-based respiratory masks during the COVID-19 pandemic has rekindled the issue of environmental pollution from nonrecyclable plastic waste. To mitigate this problem, conventional filters should be redesigned with improved filtration performance over the entire operational life while also being naturally degradable at the end. Herein, we developed a functional and biodegradable polymeric filter membrane consisting of a polybutylene adipate terephthalate (PBAT) matrix blended with cetyltrimethylammonium bromide (CTAB) and montmorillonite (MMT) clay, whose surface properties have been modified through cation exchange reactions for good miscibility with PBAT in an organic solvent. Particularly, the spontaneous evolution of a partial core-shell structure (i.e., PBAT core encased by CTAB-MMT shell) during the electrospinning process amplified the triboelectric effect as well as the antibacterial/antiviral activity that was not observed in naive PBAT. Unlike the conventional face mask filter that relies on the electrostatic adsorption mechanism, which deteriorates over time and/or due to external environmental factors, the PBAT@CTAB-MMT nanofiber membrane (NFM)-based filter continuously retains electrostatic charges on the surface due to the triboelectric effect of CTAB-MMT. As a result, the PBAT@CTAB-MMT NFM-based filter showed high filtration efficiencies (98.3%, PM) even at a low differential pressure of 40 Pa or less over its lifetime. Altogether, we not only propose an effective and practical solution to improve the performance of filter membranes while minimizing their environmental footprint but also provide valuable insight into the synergetic functionalities of organic-inorganic hybrid materials for applications beyond filter membranes.

摘要

在新冠疫情期间,基于聚合物的呼吸面罩大量生产,这再次引发了不可回收塑料垃圾造成环境污染的问题。为缓解这一问题,传统过滤器应重新设计,在整个使用寿命期间提高过滤性能,同时在使用结束时能够自然降解。在此,我们开发了一种功能性且可生物降解的聚合物滤膜,它由聚己二酸丁二醇酯-对苯二甲酸丁二醇酯(PBAT)基体与十六烷基三甲基溴化铵(CTAB)和蒙脱石(MMT)粘土混合而成,MMT粘土的表面性质通过阳离子交换反应进行了改性,以便在有机溶剂中与PBAT具有良好的混溶性。特别地,在静电纺丝过程中部分核壳结构(即PBAT核被CTAB-MMT壳包裹)的自发形成放大了摩擦电效应以及抗菌/抗病毒活性,而在单纯的PBAT中未观察到这种活性。与依赖静电吸附机制的传统面罩过滤器不同,这种机制会随着时间推移和/或由于外部环境因素而变差,基于PBAT@CTAB-MMT纳米纤维膜(NFM)的过滤器由于CTAB-MMT的摩擦电效应,在其表面持续保留静电荷。因此,基于PBAT@CTAB-MMT NFM的过滤器在其整个使用寿命期间,即使在40 Pa或更低的低压差下也显示出高过滤效率(98.3%,针对PM)。总之,我们不仅提出了一种有效且实用的解决方案,以提高滤膜性能同时最小化其环境足迹,还为有机-无机杂化材料在滤膜之外的应用中的协同功能提供了有价值的见解。

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