Wan Xuejuan, Wu Lisi, Pei Hang, Ke Haoqi, Yang Guanghui, Tang Jiaoning
Shenzhen Key Laboratory of Polymer Science and Technology, College of Materials Science and Engineering, Shenzhen University Shenzhen 518060 China
RSC Adv. 2018 May 25;8(35):19420-19425. doi: 10.1039/c8ra02903b.
Hierarchical wrinkled mesoporous silica nanoparticles (WMS NPs) bedecked with diverse functionality density of amino groups (WMSs-N2, WMSs-NN and WMSs-NNN) were first synthesized typical Sol-Gel method, and then utilized for the reduction of nanosilver with sodium borohydride. Elegantly distributed Ag NPs ( 7-10 nm, 3-5 nm) on WMSs-N2 and WMSs-NN without any agglomeration were obtained respectively, while Ag NPs ( 50 nm) dispersed on WMSs-NNN were obviously larger and slightly agglomerated. Compared to pure Ag NPs, all the obtained Ag@WMSs composites were durable and displayed much better antibacterial performance, with a minimal inhibitory concentration of 12-80 mg L and a minimal bactericidal concentration of 24-108 mg L, respectively. Moreover, it was found that the functionality density of amino groups and the specific surface area of WMSs played a crucial role for the antibacterial performance of the obtained nanocomposites. Because WMSs-NN had higher specific surface area and surface amino density than WMSs-N2, the size and dispersion of Ag NPs on WMSs-NN were smaller and superior to those of Ag NPs on WMSs-N2, respectively. Accordingly, Ag@WMSs-NN displayed a better antibacterial capacity than Ag@WMSs-N2. As for Ag@WMSs-NNN, owing to the high loading content of Ag NPs, they exhibited the best antibacterial and bactericidal properties.
首先采用典型的溶胶 - 凝胶法合成了负载不同氨基功能密度的分级皱纹介孔二氧化硅纳米颗粒(WMS NPs,即WMSs - N2、WMSs - NN和WMSs - NNN),然后用于硼氢化钠还原纳米银。分别在WMSs - N2和WMSs - NN上获得了优雅分布的Ag NPs(7 - 10 nm、3 - 5 nm),且无任何团聚现象,而分散在WMSs - NNN上的Ag NPs(50 nm)明显更大且略有团聚。与纯Ag NPs相比,所有获得的Ag@WMSs复合材料都很耐用,并且表现出更好的抗菌性能,其最小抑菌浓度分别为12 - 80 mg/L,最小杀菌浓度分别为24 - 108 mg/L。此外,发现氨基的功能密度和WMSs的比表面积对所得纳米复合材料的抗菌性能起着关键作用。由于WMSs - NN比WMSs - N2具有更高的比表面积和表面氨基密度,WMSs - NN上Ag NPs的尺寸和分散性分别比WMSs - N2上的更小且更优。因此,Ag@WMSs - NN比Ag@WMSs - N2表现出更好的抗菌能力。至于Ag@WMSs - NNN,由于Ag NPs的高负载量,它们表现出最佳的抗菌和杀菌性能。