Chen Qi-Yuan, Xiao Sheng-Ling, Shi Sheldon Q, Cai Li-Ping
College of Engineering and Technology, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China.
Department of Mechanical and Energy Engineering, University of North Texas, Denton, TX 76203, USA.
Polymers (Basel). 2020 Feb 13;12(2):440. doi: 10.3390/polym12020440.
Using N,N-dimethylacetamide (DMAc) as a reducing agent in the presence of PVP-K30, the stable silver nanoparticles (Ag-NPs) solution was prepared by a convenient method for the in situ reduction of silver nitrate. The cellulose-Ag-NPs composite film (CANF) was cast in the same container using lithium chloride (LiCl) giving the Ag-NPs-PVP/DMAc solution cellulose solubility as well as -mercaptopropyltrimethoxysilane (MPTS) to couple Ag-NPs and cellulose. The results showed that the Ag-NPs were uniformly dispersed in solution, and the solution had strong antibacterial activities. It was found that the one-pot synthesis allowed the growth of and cross-linking with cellulose processes of Ag-NPs conducted simultaneously. Approximately 61% of Ag-NPs was successfully loaded in CANF, and Ag-NPs were uniformly dispersed in the surface and internal of the composite film. The composite film exhibited good tensile properties (tensile strength could reach up to 86.4 MPa), transparency (light transmittance exceeds 70%), thermal stability, and remarkable antibacterial activities. The sterilization effect of CANF against and exceed 99.9%. Due to low residual LiCl/DMAc and low diffusion of Ag-NPs, the composite film may have potential for applications in food packaging and bacterial barrier.
在聚乙烯吡咯烷酮-K30(PVP-K30)存在的情况下,使用N,N-二甲基乙酰胺(DMAc)作为还原剂,通过一种简便的原位还原硝酸银的方法制备了稳定的银纳米颗粒(Ag-NPs)溶液。使用氯化锂(LiCl)在同一容器中浇铸纤维素-Ag-NPs复合膜(CANF),使Ag-NPs-PVP/DMAc溶液具有纤维素溶解性以及使用3-巯基丙基三甲氧基硅烷(MPTS)来偶联Ag-NPs和纤维素。结果表明,Ag-NPs均匀分散在溶液中,且该溶液具有很强的抗菌活性。发现一锅合成法能使Ag-NPs的生长与纤维素的交联过程同时进行。约61%的Ag-NPs成功负载在CANF中,且Ag-NPs均匀分散在复合膜的表面和内部。该复合膜表现出良好的拉伸性能(拉伸强度可达86.4MPa)、透明度(透光率超过70%)、热稳定性以及显著的抗菌活性。CANF对大肠杆菌和金黄色葡萄球菌的杀菌效果超过99.9%。由于LiCl/DMAc残留量低且Ag-NPs扩散性低,该复合膜在食品包装和细菌屏障方面可能具有应用潜力。