Xiao Wei, Xu Junbo, Liu Xiaoyan, Hu Qiaoling, Huang Jianguo
Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, China.
J Mater Chem B. 2013 Jul 28;1(28):3477-3485. doi: 10.1039/c3tb20303d. Epub 2013 Jun 6.
Uniform ultrathin titania/chitosan composite films were coated on the cellulose microfibril bundles of natural cellulose substance (common commercial filter paper) by a layer-by-layer self-assembly process. Relying on the strong chelating ability of chitosan for metal ions, silver ions were abundantly adsorbed on the titania/chitosan composite film coated cellulose substance and were thereafter in situ reduced to silver nanoparticles (Ag-NPs) under UV irradiation. As such, hybrid cellulose/titania/chitosan/Ag-NP composite materials were obtained, which feature the same hierarchically fibrous structure as the initial cellulose substance. Meanwhile, the hybrid fibres in the composite materials exhibit a cable-like core-shell structure, displaying a cellulose microfibril bundle core as well as a nanometer-thick titania/chitosan/Ag-NP composite film shell with Ag-NPs (4-20 nm in diameter) well distributed. The antibacterial activities of the titania/chitosan/Ag-NP composite film coated cellulose materials were evaluated against both Gram-positive and Gram-negative bacteria, and the materials as such disinfected almost all the inoculated bacteria due to the intrinsic biocidal effect of titania composition, positively charged chitosan component and high loading content of Ag-NPs with small sizes, showing excellent antibacterial activities.
通过层层自组装工艺,将均匀的超薄二氧化钛/壳聚糖复合膜涂覆在天然纤维素物质(普通商业滤纸)的纤维素微纤束上。依靠壳聚糖对金属离子的强螯合能力,银离子大量吸附在涂覆有二氧化钛/壳聚糖复合膜的纤维素物质上,随后在紫外光照射下原位还原为银纳米颗粒(Ag-NPs)。由此获得了杂化纤维素/二氧化钛/壳聚糖/Ag-NP复合材料,其具有与初始纤维素物质相同的分级纤维结构。同时,复合材料中的杂化纤维呈现出类似电缆的核壳结构,具有纤维素微纤束核心以及一层纳米厚的二氧化钛/壳聚糖/Ag-NP复合膜壳,其中Ag-NPs(直径4-20nm)分布良好。评估了涂覆有二氧化钛/壳聚糖/Ag-NP复合膜的纤维素材料对革兰氏阳性菌和革兰氏阴性菌的抗菌活性,由于二氧化钛成分的固有杀菌作用、带正电荷的壳聚糖成分以及小尺寸Ag-NPs的高负载量,这些材料几乎杀灭了所有接种的细菌,显示出优异的抗菌活性。