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Complete‐Lifecycle‐Available, Lightweight and Flexible Hierarchical Structured Bi 2 WO 6 /WO 3 /PAN Nanofibrous Membrane for X‐Ray Shielding and Photocatalytic Degradation
Author(s) -
He Dayong,
Ma Yuying,
Zhao Rui,
Qiu Ju,
Sun Bolun,
Wang Hao,
Yang Mei,
Jia Xiaoteng,
Li Xiang,
Li Yongxin,
Lu Xiaofeng,
Wang Ce
Publication year - 2021
Publication title -
advanced materials interfaces
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.671
H-Index - 65
ISSN - 2196-7350
DOI - 10.1002/admi.202002131
Subject(s) - materials science , polyacrylonitrile , electromagnetic shielding , raw material , nanofiber , electrospinning , composite material , membrane , polymer , nanotechnology , organic chemistry , chemistry , biology , genetics
Faced with the presence of radiation sources in many different areas, researchers are beginning to focus on the development of personal protective equipment. The design and manufacture of lightweight, lead‐free, and flexible X‐ray shielding materials have recently become a challenge in materials science, whereas, high‐Z materials, which are essential raw materials for high‐performance X‐ray protective fillers, are non‐renewable, and their exploitation and utilization usually require long‐term planning. In this study, a new route is demonstrated to the preparation of multifunctional polymer/high‐Z material nanofibrous membrane through electrospinning and subsequent solvothermal processes. The resultant Bi 2 WO 6 /WO 3 /polyacrylonitrile hybrid nanofibrous membrane possesses a remarkable X‐ray attenuating property with an attenuation rate of 90.10% at 30 keV and a mass attenuation coefficient of 2.97 cm 2 g −1 at 83 keV. In addition, the freestanding hybrid nanofibrous membrane also possesses excellent photocatalytic activities for the degrading of cationic water pollutants, showing promising potential in industrial wastewater treatment, and providing a new strategy for the design and applications of multifunctional and recyclable shielding materials.