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首页> 外文期刊>Advanced Functional Materials >In Situ Self-Assembled Polyoxotitanate Cages on Flexible Cellulosic Substrates: Multifunctional Coating for Hydrophobic, Antibacterial, and UV-Blocking Applications
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In Situ Self-Assembled Polyoxotitanate Cages on Flexible Cellulosic Substrates: Multifunctional Coating for Hydrophobic, Antibacterial, and UV-Blocking Applications

机译:柔性纤维素基材上的原位自组装聚氧钛酸酯笼:用于疏水,抗菌和防紫外线应用的多功能涂料

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摘要

Surface coating is a powerful approach to fabricate multifunctional materials that are essential for numerous applications. However, to achieve such multifunctional coating with a facile single-step procedure, especially on flexible substrates, is still a big challenge, as current fabrication protocols usually require sophisticated equipment and complicated procedures. Here, a novel coating technology involving in situ self-assembly of the polyoxotitanate (POT) cage [Ti18Mn4O30(OEt)(20)Phen(3)] is reported to fabricate multifunctional cotton fabrics in a single step. The in situ generated spherical microparticles of 0.8 mu m average diameter are firmly mounted on the underlying cotton substrate, imparting the coated surface with robust hydrophobicity (water contact angle of 148.1 +/- 5.4 degrees), antibacterial activity (against Escherichia coli, Staphylococcus epidermidis, and Staphylococcus aureus), and excellent UV-blocking performance (89% blocked at 350 nm). This coating technology is efficient, straightforward, requires no specialized equipment, and most importantly, is readily extendable to other flexible substrates. Combined with the rapidly developing area of POT cages and similar molecular materials, the reported technology based on in situ self-assembly holds great promise for further advancing the fabrication of multifunctional flexible devices via a single-step coating operation.
机译:表面涂层是制造多功能材料的强大方法,而多功能材料是众多应用必不可少的。然而,由于目前的制造方案通常需要复杂的设备和复杂的程序,因此要用简便的单步程序来实现这种多功能涂层,特别是在柔性基板上,仍然是一个很大的挑战。在这里,据报道一种涉及原位自组装聚氧钛酸酯(POT)笼[Ti18Mn4O30(OEt)(20)Phen(3)]的新型涂层技术可以在一个步骤中制造多功能棉织物。将原位生成的平均直径为0.8μm的球形微粒牢固地安装在下面的棉质基材上,赋予涂层表面强大的疏水性(水接触角为148.1 +/- 5.4度),抗菌活性(针对大肠埃希氏菌,表皮葡萄球菌)和金黄色葡萄球菌)和出色的紫外线阻隔性能(89%在350 nm处被阻隔)。这种涂层技术高效,简单,不需要专门的设备,最重要的是,它很容易扩展到其他柔性基材。结合POT笼和类似分子材料的快速发展领域,已报道的基于原位自组装的技术为通过一步涂覆操作进一步推进多功能柔性设备的制造提供了广阔的前景。

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