首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simultaneous Formation of a Self-Wrinkled Surface and Silver Nanoparticles on a Functional Photocuring Coating
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Simultaneous Formation of a Self-Wrinkled Surface and Silver Nanoparticles on a Functional Photocuring Coating

机译:在功能性光固化涂层上同时形成自皱表面和银纳米粒子

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Bioinspired functional surface with microanostructures are particularly attractive because of the potential for outstanding characteristics, such as self-cleaning, self-replenishing and antibiosis. Here, we presented a facile approach to fabricate a functional photocuring coating with both a self-wrinkling patterned surface and incorporated silver nanoparticles (Ag NPs). Fluorinated polymeric photoinitiator (FPPI) and silver precursor (TFAAg) can self-assemble together on the air/acrylate interface to form a top layer of photocuring liquid resin. Under UV irradiation, a wrinkled pattern was formed as a result of the mismatch in shrinkage caused by photopolymerization between the top layer and the bulk layer. Simultaneously, Ag NPs with sizes of 15 +/- 8 nm in diameter were in situ generated in the photocuring coating through the photoreduction of TFAAg. Their number density is higher in the top layer than in the bulk. Scanning electron microscope (SEM) and atomic force microscope (AFM) measurements revealed that the characteristic wavelength (lambda ) and amplitude (A) of the wrinkled morphology increased with growing concentration of FPPI, and that the generation of Ag NPs led to the wrinkle-to-fold transition. Furthermore, the obtained functional coatings possess a low surface energy and self-replenishing and antibiosis capabilities as a result of the synergistic effect of the wrinkled surface covered by FPPI and Ag NPs.
机译:具有微观/纳米结构的受生物启发的功能性表面特别吸引人,因为它具有出众的特性(例如自清洁,自补水和抗菌)的潜力。在这里,我们提出了一种简便的方法来制造功能性光固化涂层,该涂层既具有自皱纹的图案表面,又具有掺入的银纳米颗粒(Ag NPs)。氟化聚合物光引发剂(FPPI)和银前体(TFAAg)可以在空气/丙烯酸酯界面上自组装在一起,形成光固化液态树脂的顶层。在紫外线照射下,由于顶层和主体层之间的光聚合引起的收缩率不匹配,形成了皱纹图案。同时,通过TFFAg的光还原在光固化涂层中原位产生直径为15 +/- 8nm的Ag NP。它们的数字密度在顶层比在本体中更高。扫描电子显微镜(SEM)和原子力显微镜(AFM)测量表明,皱纹形态的特征波长(λ)和幅度(A)随着FPPI浓度的增加而增加,并且Ag NP的产生导致皱纹-折叠过渡。此外,由于FPPI和Ag NPs覆盖的起皱表面的协同作用,所获得的功能性涂层具有低的表面能以及自我补充和抗生能力。

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