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Electrospun Ceramic Nanofiber Mats Today: Synthesis Properties and Applications

机译:如今的电纺陶瓷纳米纤维垫:合成性能和应用

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摘要

Ceramic nanofibers (NFs) have recently been developed for advanced applications due to their unique properties. In this article, we review developments in electrospun ceramic NFs with regard to their fabrication process, properties, and applications. We find that surface activity of electrospun ceramic NFs is improved by post pyrolysis, hydrothermal, and carbothermal processes. Also, when combined with another surface modification methods, electrospun ceramic NFs result in the advancement of properties and widening of the application domains. With the decrease in diameter and length of a fiber, many properties of fibrous materials are modified; characteristics of such ceramic NFs are different from their wide and long (bulk) counterparts. In this article, electrospun ceramic NFs are reviewed with an emphasis on their applications as catalysts, membranes, sensors, biomaterials, fuel cells, batteries, supercapacitors, energy harvesting systems, electric and magnetic parts, conductive wires, and wearable electronic textiles. Furthermore, properties of ceramic nanofibers, which enable the above applications, and techniques to characterize them are briefly outlined.
机译:陶瓷纳米纤维(NFs)最近因其独特的性能而被开发用于高级应用。在本文中,我们回顾了电纺陶瓷NF的制造工艺,性能和应用方面的发展。我们发现电纺陶瓷NFs的表面活性通过后热解,水热和碳热过程得以改善。同样,当与其他表面改性方法结合使用时,电纺陶瓷NF会导致性能提升和应用领域的扩大。随着纤维直径和长度的减小,纤维材料的许多特性得到了改变。这种陶瓷NF的特性不同于它们的宽和长(散装)对应物。在本文中,对电纺陶瓷NFs进行了综述,重点介绍了它们在催化剂,膜,传感器,生物材料,燃料电池,电池,超级电容器,能量收集系统,电气和磁性零件,导电线以及可穿戴电子纺织品中的应用。此外,简要概述了能够实现上述应用的陶瓷纳米纤维的特性以及表征它们的技术。

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