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杂化二氧化硅干凝胶和二氧化钛/二氧化硅干凝胶分散体增强皮革的亲水性和抗菌性

Hybrid Silica Xerogel and Titania/Silica Xerogel Dispersions Reinforcing Hydrophilicity and Antimicrobial Resistance of Leathers.

作者信息

Arkas Michael, Bompotis Theofanis, Giannakopoulos Konstantinos, Favvas Evangelos P, Arvanitopoulou Marina, Arvanitopoulos Konstantinos, Arvanitopoulos Labros, Kythreoti Georgia, Vardavoulias Michail, Giannakoudakis Dimitrios A, Castellsagués Laura, Soto González Sara Maria

机构信息

Institute of Nanoscience Nanotechnology, NCSR "Demokritos", Patriarchou Gregoriou Street, 15310 Athens, Greece.

DARVICHEM Alexandrou, Papagou 5, 18233 Agios Ioannis Rentis, Greece.

出版信息

Gels. 2023 Aug 25;9(9):685. doi: 10.3390/gels9090685.

Abstract

Four leather substrates from different animals were treated by dispersions containing hydrophilic composite silica-hyperbranched poly(ethylene imine) xerogels. Antimicrobial activity was introduced by incorporating silver nanoparticles and/or benzalkonium chloride. The gel precursor solutions were also infused before gelation to titanium oxide powders typically employed for induction of self-cleaning properties. The dispersions from these biomimetically premade xerogels integrate environmentally friendly materials with short coating times. Scanning electron microscopy (SEM) provided information on the powder distribution onto the leathers. Substrate and coating composition were estimated by infrared spectroscopy (IR) and energy-dispersive X-ray spectroscopy (EDS). Surface hydrophilicity and water permeability were assessed by water-contact angle experiments. The diffusion of the leather's initial components and xerogel additives into the water were measured by Ultraviolet-Visible (UV-Vis) spectroscopy. Protection against GRAM- bacteria was tested for , , and against GRAM+ bacteria for and and against fungi for . Antibiofilm capacity experiments were performed against , , , and . The application of xerogel dispersions proved an adequate and economically feasible alternative to the direct gel formation into the substrate's pores for the preparation of leathers intended for medical uses.

摘要

用含有亲水性二氧化硅-超支化聚(乙烯亚胺)干凝胶的分散液对四种不同动物的皮革基材进行处理。通过掺入银纳米颗粒和/或苯扎氯铵来引入抗菌活性。凝胶前体溶液在凝胶化之前还被注入到通常用于诱导自清洁性能的二氧化钛粉末中。这些仿生预制干凝胶的分散液将环保材料与短涂覆时间相结合。扫描电子显微镜(SEM)提供了粉末在皮革上分布的信息。通过红外光谱(IR)和能量色散X射线光谱(EDS)估算基材和涂层的组成。通过水接触角实验评估表面亲水性和透水性。通过紫外可见(UV-Vis)光谱测量皮革的初始成分和干凝胶添加剂在水中的扩散。测试了对革兰氏阴性菌的防护效果,对革兰氏阳性菌的防护效果以及对真菌的防护效果。针对进行了抗生物膜能力实验。对于制备医用皮革而言,干凝胶分散液的应用被证明是一种比直接在基材孔隙中形成凝胶更合适且经济可行的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9046/10530134/7ae46bb98c50/gels-09-00685-g001.jpg

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