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首页> 外文期刊>ACS nano >Highly Transparent, Nanofiller-Reinforced Scratch-Resistant Polymeric Composite Films Capable of Healing Scratches
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Highly Transparent, Nanofiller-Reinforced Scratch-Resistant Polymeric Composite Films Capable of Healing Scratches

机译:具有愈合划痕的高度透明,纳米填料增强的抗划痕聚合物复合膜

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摘要

Integration of healability and mechanical robustness is challenging in the fabrication of highly transparent films for applications as protectors in optical and displaying devices. Here we report the fabrication of healable, highly transparent and scratch-resistant polymeric composite films that can conveniently and repeatedly heal severe damage such as cuts of several tens of micrometers wide and deep. The film fabrication process involves layer-by-layer (LbL) assembly of a poly(acrylic acid) (PAA) blend and branched poly(ethylenimine) (bPEI) blend, where each blend contains the same polyelectrolytes of low and high molecular weights, followed by annealing the resulting PAA/bPEI films with aqueous salt solution and incorporation of CaCO3 nanoparticles as nanofillers. The rearrangement of low-molecular-weight PAA and bPEI under aqueous salt annealing plays a critical role in eliminating film defects to produce optically highly transparent polyelectrolyte films. The in situ formation of tiny and well-dispersed CaCO3 nanoparticles gives the resulting composite films enhanced scratch-resistance and also retains the healing ability of the PAA/bPEI matrix films. The reversibility of noncovalent interactions among the PAA, bPEI, and CaCO3 nanoparticles and the facilitated migration of PAA and bPEI triggered by water enable healing of the structural damage and restoration of optical transparency of the PAA/bPEI films reinforced with CaCO3 nanoparticles.
机译:在制造高度透明的薄膜以用作光学和显示设备中的保护膜时,可治愈性和机械强度的集成面临挑战。在这里,我们报告了可愈合,高度透明且耐刮擦的聚合物复合膜的制造过程,该膜可方便,反复地治愈严重的损伤,例如宽数十微米深的切口。薄膜的制造过程涉及聚丙烯酸(PAA)共混物和支链聚亚乙基亚胺(bPEI)共混物的逐层组装(LbL),其中每种共混物都包含相同的低分子量和高分子量的聚电解质,然后将所得的PAA / bPEI膜与盐水溶液退火,并加入CaCO3纳米颗粒作为纳米填料。在水盐退火下低分子量PAA和bPEI的重排在消除膜缺陷以生产光学上高度透明的聚电解质膜方面起着至关重要的作用。微小且分散良好的CaCO3纳米颗粒的原位形成使所得复合膜具有增强的耐刮擦性,并且还保留了PAA / bPEI基体膜的愈合能力。 PAA,bPEI和CaCO3纳米颗粒之间非共价相互作用的可逆性以及由水触发的PAA和bPEI的促进迁移能够修复结构损伤并恢复用CaCO3纳米颗粒增强的PAA / bPEI膜的光学透明性。

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