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Surface functionalization of 3D printed structures: Aesthetic and antibiofouling properties

机译:3D印刷结构的表面官能化:美学和抗辐射特性

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摘要

Additive manufacturing (AM) is a hot topic nowadays, having a first order in importance in research trends, improving existent technologies and carrying them further. AM can be applied to ceramics, which have importance in current technologies. Their capability to maintain functional properties for long time periods, combined with the easiness to process and the abundance of raw materials, make them a fundamental part of mankind development. Within ceramics, stoneware has a wide range of uses but in some conditions, it can be affected by biofouling. Ti(O)N and Ag-Ti(O)N coatings over 3D printed stoneware, were presented as multifunctional solution, linking aesthetical and antimicrobial properties. Films were developed by reactive direct current (DC) magnetron sputtering and characterized physical, chemical and morphologically, as well as regarding their colour variation. Moreover roughness, wettability, antibacterial and antibiofouling were also evaluated. The results revealed that the Ag doped coatings (with or without oxygen addition) had an enhanced multifunctionality compared to control samples (without Ag). Ag nanoparticles addition created a surface with potential antibacterial and antibiofouling activities, in order to resist outdoors and aqueous environments, making these films able to be applied in architectural pieces as sculptures or other decorative parts, maintaining their properties with good aesthetical properties.
机译:添加剂制造(AM)是现在的热门话题,在研究趋势中具有一首重要性,提高存在技术并进一步携带它们。我可以应用于陶瓷,这在目前的技术方面具有重要性。它们能够保持长时间的功能性能,与工艺的容易和丰富的原材料相结合,使其成为人类发展的基本部分。在陶瓷中,粗陶器具有广泛的用途,但在某些条件下,它可能会受到生物污染的影响。 Ti(O)N和Ag-Ti(O)N涂层通过3D印刷粗陶器,呈现为多功能溶液,连接含有含有含有和抗微生物性质的多功能溶液。通过反应直流(DC)磁控溅射和表征物理,化学和形态学以及它们的颜色变化来开发薄膜。此外,还评估了粗糙度,润湿性,抗菌剂和抗辐射。结果表明,与对照样品(无Ag)相比,Ag掺杂涂层(有或没有氧气添加)具有增强的多官能团。 Ag纳米颗粒添加产生具有潜在抗菌和抗辐射活动的表面,以抵抗户外和水环境,使这些薄膜能够以建筑件应用为雕塑或其他装饰性部位,使其具有良好的审美性能。

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