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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fabrication of a molecular-level multilayer film on organic polymer surfaces via chemical bonding assembly
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Fabrication of a molecular-level multilayer film on organic polymer surfaces via chemical bonding assembly

机译:通过化学键合组装在有机聚合物表面上制备分子级多层膜

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摘要

A fresh multilayer film was fabricated on a molecular level and successfully tethered to the surface of a hydroxylated organic substrate via chemical bonding assembly (CBA). Sulfate anion groups (SO4-) were preintroduced onto the surface of biaxially oriented polypropylene (BOPP) films via a reference method. Upon hydrolysis of the SO4- groups, hydroxyl groups (--OH) were formed that subsequently acted as initial reagents for a series of alternate reactions with terephthalyl chloride (TPC) and bisphenol A (BPA). A stable and well-defined multilayer film was thus fabricated via the CBA method. As a result of the nanoscale multilayer fresh film being abundant with reactive groups, it is believed that the film and its fabrication method should provide a fundamental platform for further surface functionalization and direct the design of advanced materials with desired properties.
机译:在分子水平上制备了新鲜的多层膜,并通过化学键合组件(CBA)成功地将其束缚在羟基化的有机底物表面上。通过参考方法将硫酸根阴离子基团(SO4-)预引入双轴取向聚丙烯(BOPP)薄膜的表面。 SO4-水解后,形成羟基(-OH),随后用作与对苯二甲酰氯(TPC)和双酚A(BPA)进行一系列交替反应的初始试剂。因此,通过CBA方法制造了稳定且轮廓分明的多层膜。由于纳米级多层新鲜膜富含反应性基团,因此认为该膜及其制造方法应为进一步的表面功能化提供基础平台,并指导具有所需性能的先进材料的设计。

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