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Special Resins for Stereolithography: In Situ Generation of Silver Nanoparticles

机译:立体光刻专用树脂:银纳米颗粒的原位生成

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摘要

The limited availability of materials with special properties represents one of the main limitations to a wider application of polymer-based additive manufacturing technologies. Filled resins are usually not suitable for vat photo-polymerization techniques such as stereolithography (SLA) or digital light processing (DLP) due to a strong increment of viscosity derived from the presence of rigid particles within the reactive suspension. In the present paper, the possibility to in situ generate silver nanoparticles (AgNPs) starting from a homogeneous liquid system containing a well dispersed silver salt, which is subsequently reduced to metallic silver during stereolithographic process, is reported. The simultaneous photo-induced cross-linking of the acrylic resin produces a filled thermoset resin with thermal-mechanical properties significantly enhanced with respect to the unfilled resin, even at very low AgNPs concentrations. With this approach, the use of silver salts having carbon-carbon double bonds, such as silver acrylate and silver methacrylate, allows the formation of a nanocomposite structure in which the release of by-products is minimized due to the active role of all the reactive components in the three dimensional (3D)-printing processes. The synergy, between this nano-technology and the geometrical freedom offered by SLA, could open up a wide spectrum of potential applications for such a material, for example in the field of food packaging and medical and healthcare sectors, considering the well-known antimicrobial effects of silver nanoparticles.
机译:具有特殊性能的材料的有限可用性代表了基于聚合物的增材制造技术的广泛应用的主要限制之一。填充树脂通常不适合于桶式光聚合技术,例如立体光刻(SLA)或数字光处理(DLP),原因是由于反应性悬浮液中存在刚性颗粒而导致粘度大大增加。在本文中,报道了从包含分散良好的银盐的均相液体系统开始原位生成银纳米颗粒(AgNPs)的可能性,随后在立体光刻工艺中将其还原为金属银。丙烯酸树脂的同时光诱导交联产生了填充的热固性树脂,即使在非常低的AgNPs浓度下,其热机械性能也比未填充的树脂显着提高。通过这种方法,使用具有碳-碳双键的银盐,例如丙烯酸银和甲基丙烯酸银,可以形成纳米复合结构,其中由于所有活性物质的活性作用,副产物的释放最小化三维(3D)打印过程中的组件。这种纳米技术与SLA提供的几何自由之间的协同作用,可以为这种材料开辟广泛的潜在应用领域,例如考虑到众所周知的抗菌剂,例如在食品包装和医疗保健领域纳米银的影响。

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