Jiao Yue, Wan Caichao, Zhang Wenbo, Bao Wenhui, Li Jian
Material Science and Engineering College, Northeast Forestry University, Harbin 150040, China.
College of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.
Nanomaterials (Basel). 2019 Mar 19;9(3):460. doi: 10.3390/nano9030460.
A facile and scalable two-step method (including pyrolysis and magnetron sputtering) is created to prepare a core‒shell structured composite consisting of cotton-derived carbon fibers (CDCFs) and nano-copper. Excellent hydrophobicity (water contact angle = 144°) and outstanding antibacterial activity against and (antibacterial ratios of >92%) are achieved for the composite owing to the composition transformation from cellulose to carbon and nano-size effects as well as strong oxidizing ability of oxygen reactive radicals from interactions of nano-Cu with sulfhydryl groups of enzymes. Moreover, the core‒shell material with high electrical conductivity induces the interfacial polarization loss and conduction loss, contributing to a high electromagnetic interference (EMI) shielding effectiveness of 29.3 dB. Consequently, this flexible and multi-purpose hybrid of nano-copper/CDCFs may be useful for numerous applications like self-cleaning wall cladding, EMI shielding layer and antibacterial products.
创建了一种简便且可扩展的两步法(包括热解和磁控溅射)来制备由棉衍生碳纤维(CDCFs)和纳米铜组成的核壳结构复合材料。由于从纤维素到碳的成分转变、纳米尺寸效应以及纳米铜与酶的巯基相互作用产生的氧活性自由基的强氧化能力,该复合材料具有优异的疏水性(水接触角 = 144°),并且对大肠杆菌和金黄色葡萄球菌具有出色的抗菌活性(抗菌率>92%)。此外,具有高电导率的核壳材料会引起界面极化损耗和传导损耗,从而实现29.3 dB的高电磁干扰(EMI)屏蔽效能。因此,这种纳米铜/CDCFs的柔性多功能复合材料可用于许多应用,如自清洁墙面装饰、EMI屏蔽层和抗菌产品。