Baghali Mitra, Jayathilaka W A D M, Ramakrishna Seeram
Center for Nanotechnology and Sustainability, Department of Mechanical Engineering, National University of Singapore, Singapore 117576, Singapore.
Materials (Basel). 2021 Jan 25;14(3):558. doi: 10.3390/ma14030558.
Electrospinning is one of the most successful and efficient techniques for the fabrication of one-dimensional nanofibrous materials as they have widely been utilized in multiple application fields due to their intrinsic properties like high porosity, large surface area, good connectivity, wettability, and ease of fabrication from various materials. Together with current trends on energy conservation and environment remediation, a number of researchers have focused on the applications of nanofibers and their composites in this field as they have achieved some key results along the way with multiple materials and designs. In this review, recent advances on the application of nanofibers in the areas-including energy conversion, energy storage, and environmental aspects-are summarized with an outlook on their materials and structural designs. Also, this will provide a detailed overview on the future directions of demanding energy and environment fields.
电纺丝是制备一维纳米纤维材料最成功、最高效的技术之一,由于其具有高孔隙率、大表面积、良好的连通性、润湿性以及易于由各种材料制备等固有特性,已被广泛应用于多个领域。随着当前节能和环境修复的趋势,许多研究人员专注于纳米纤维及其复合材料在该领域的应用,因为他们在此过程中使用多种材料和设计取得了一些关键成果。在本综述中,总结了纳米纤维在能量转换、能量存储和环境等领域应用的最新进展,并对其材料和结构设计进行了展望。此外,这将详细概述能源和环境需求领域的未来发展方向。