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Investigation on the Preparation and Properties of CMC/magadiite Nacre-Like Nanocomposite Films

机译:CMC / magadiite Nacre-like纳米复合薄膜的制备及性能研究

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摘要

The layered hydrated sodium salt-magadiite (MAG), which has special interpenetrating petals structure, was used as a functional filler to slowly self-assemble with sodium carboxy-methylcellulose (CMC), in order to prepare nacre-like nanocomposite film by solvent evaporation method. The structure of prepared nacre-like nanocomposite film was characterized by Scanning Electron Microscope (SEM) and X-ray diffraction (XRD) analysis; whereas, it was indicated that CMC macromolecules were inserted between the layers of MAG to increase the layer spacing of MAG by forming an interpenetrating petals structure; in the meantime, the addition of MAG improved the thermal stability of CMC. The tensile strength of CMC/MAG was significantly improved compared with pure CMC. The tensile strength of CMC/MAG reached the maximum value at 1.71 MPa when the MAG content was 20%, to maintaining high transparency. Due to the high content of inorganic filler, the flame retarding performance and the thermal stability were also brilliant; hence, the great biocompatibility and excellent mechanical properties of the bionic nanocomposite films with the unique interpenetrating petals structure provided a great probability for these original composites to be widely applied in material research, such as tissue engineering in biomedical research.
机译:使用具有特殊互穿花瓣结构的层状水合钠盐-辉铁矿(MAG)作为功能性填料,使其与羧甲基纤维素钠(CMC)缓慢地自组装,以通过溶剂蒸发制备珍珠母状纳米复合膜方法。通过扫描电子显微镜(SEM)和X射线衍射(XRD)分析对制备的珍珠母状纳米复合薄膜的结构进行表征。然而,表明CMC大分子插入MAG的层之间以通过形成互穿的花瓣结构来增加MAG的层间距。同时,MAG的加入改善了CMC的热稳定性。与纯CMC相比,CMC / MAG的拉伸强度得到了显着提高。当MAG含量为20%时,CMC / MAG的拉伸强度在1.71 MPa达到最大值,以保持高透明性。由于无机填料含量高,阻燃性能和热稳定性也很出色。因此,具有独特的互穿花瓣结构的仿生纳米复合薄膜具有良好的生物相容性和优异的机械性能,为这些原始复合材料被广泛应用于材料研究(如生物医学研究中的组织工程)提供了很大的可能性。

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