Ag-TiO2 / PDMS纳米复合防护涂层:合成、表征,并用作自清洁和抗菌剂

ty10086 提交于 周三, 08/25/2021 - 15:48
文章英文标题
Ag-TiO2/PDMS nanocomposite protective coatings: Synthesis, characterization, and use as a self-cleaning and antimicrobial agent
正文
由于污染、微生物定植、水体等诱发的几种腐烂现象,保护我们的文物成为必要。本研究一直致力于阐述光激活纳米复合材料对户外遗产建筑的保护。因此,具有增强光响应活性的新型Ag-TiO2 / PDMS疏水纳米复合材料(掺杂率低)薄膜被开发用于自清洁耐久的古迹保护涂层。本工作阐述的防护涂料意在具有多功能性能(拒水特性、自清洁活性、抗菌剂)。为了达到我们的目的,首先采用溶胶-凝胶法合成了不同掺杂量( 0.1、1、3、5 mol % )的银掺杂二氧化钛纳米颗粒( Ag-TiO2 NPs )。对制备的纳米颗粒进行了表征,并对其性能进行了对比评价,通过测试光降解和光杀伤活性,找出了合适的掺杂剂低掺杂率。本研究的第二部分重点阐述了Ag-TiO2 / PDMS疏水纳米复合材料(选定的低掺杂率)作为自清洁防护涂层。为此,将Ag掺杂TiO2纳米颗粒分散在聚合物粘结剂(聚二甲基硅氧烷,PDMS )中,应用于非常多孔的石材基材,即Lecce石材( LS )中,通过色度学测试、接触角测试、水毛细管吸收测试、水蒸气透过率测试、铅笔和维氏硬度测试、光学显微镜分析、扫描电镜分析、能谱仪( SEM- EDS )、微生物实验、自清洁实验等不同的实验分析,评价所得纳米复合材料(最佳Ag掺杂TiO2纳米颗粒/粘结剂比、最佳掺杂量)对石材基材的适宜性。此外,还评估了纳米复合涂层在不同老化周期下的耐久性。结果表明,低浓度(≤1 mol % )银( Ag掺杂TiO2 )与PDMS共掺杂的样品,可作为高孔隙率生物辉石的高效持久防护涂层。这样的掺杂量相对于其他在同一领域已经开展的研究工作被认为很低。
文章内容(英文)
The protection of our artifacts becomes a necessity due to several decay phenomena induced by pollution, microorganism colonization, and water. This research study has been focused on elaborating photo-activated nanocomposites to protect outdoors heritage buildings. Hence, novel Ag-TiO 2 /PDMS hydrophobic nanocomposites (with low doping rates) thin films with enhanced photo-response activity have been developed to be used as self-cleaning durable protective coatings in the field of monument conservation. The protective coatings elaborated in this work are intended to have multifunctional properties (water repellent features, self-cleaning activity, antimicrobial agent). To reach our objective, silver-doped titanium dioxide nanoparticles (Ag-TiO 2 NPs) at different doping amounts (0.1, 1, 3, and 5 mol%) were firstly synthesized by the sol-gel method. As-prepared NPs were characterized and their performance was evaluated comparatively to find out the appropriate low doping rates of the dopant by testing photo-degradation as well as photo-killing activities. The second part of this research is focused on elaborating Ag-TiO 2 /PDMS hydrophobic nanocomposites (selected low doping rates) as self-cleaning protective coatings. For this purpose, Ag-doped TiO 2 NPs were dispersed in a polymeric binder (polydimethylsiloxane, PDMS) and applied to the very porous stone substrate, i.e., Lecce stone (LS). The suitability of the resulting nanocomposites (optimal Ag doped TiO 2 NPs/ binder ratio; optimal doping amount) on the stone substrate was evaluated by performing different experimental analyses: chromatic measurements, contact angle measurements, water capillary absorption test, permeability to water vapour, pencil and Vickers hardness tests, optical microscope analyses, and scanning electron microscopic analyses combined with energy-dispersive X-ray spectroscopy (SEM-EDS), microbiological experiments, and self-cleaning test. Moreover, the durability of the nanocomposite coatings was also assessed after exposing to different ageing cycles. Results suggested that the samples doped with low concentrations (≤1 mol%) of silver (Ag-doped TiO 2 ) together with PDMS can be considered as efficient and durable protective coatings for the highly porous bio-calcarenite stone. Such doping amount is considered very low compared to the other research works that have been performed in the same field.
来源出处
Journal|[J]Progress in Organic CoatingsVolume 158, 2021.
DOI
https://doi.org/10.1016/J.PORGCOAT.2021.106342

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此链接为PDMS-微流控芯片/PDMS/道康宁SYLGARD184/小桶0.5KG装的链接。

一般性的产品性能参数表参考以下小桶装的参数:

微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;

品牌型号:道康宁SYLGARD184

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产品颜色:保质期限:36个月

存放环境说明:室温,阴凉处保存

备注说明:

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