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Interfacial crosslinked controlled thickness graphene oxide thin-films through dip-assisted layer-by-layer assembly means

机译:界面交联控制厚度石墨烯氧化物薄膜通过倾倾辅助层逐层组装装置

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摘要

The augmentation of research in graphene based thin films has been of great interest to various current industrial stakeholders. This is mainly due to the wide scope of films applications, ranging from nanoelectronics to separation membranes. Therefore, establishing a relation between graphene based thin film key characteristics and the fabrication operating conditions is of high significance. This study entails the successful fabrication of controlled-thickness crosslinked graphene oxide (GO) thin films on inexpensive silicon-based glass slide substrates. The method of film fabrication used is the dip-assisted layer-by-layer assembly, which has an added advantage of step-control of thin film thickness, good film uniformity and continuity. The thickness was primarily tuned through the use different sized crosslinkers; a covalent based sub-nanometer sized p-phenylenediamine and an electrostatic based polyethyleneimine on an interchangeable assembly with GO. Pre film fabrication, Fourier Transform Infra-Red and X-Ray Photoelectron Spectroscopy characterizations were carried out to determine the nature of interactions between GO and the crosslinkers. Post film fabrication, scanning electron microscopy, water contact angle measurements and profilometry analysis were undertaken for film continuity, hydrophilicity and thickness measurements respectively. A strong linear trend between film thickness of the differently crosslinked films and the number of bi-layers was established.
机译:基于石墨烯的薄膜的研究增强对各种当前的工业利益相关者具有很大的兴趣。这主要是由于薄膜应用范围的范围,从纳米电子学到分离膜。因此,建立基于石墨烯的薄膜关键特性和制造操作条件之间的关系具有高意义。该研究需要在廉价的硅基玻璃载玻片上成功地制造控制厚度交联的石墨烯氧化物(GO)薄膜。使用的薄膜制造方法是倾倾辅助层组件,其具有阶梯控制的薄膜厚度,良好的膜均匀性和连续性的额外优点。厚度主要通过使用不同尺寸的交联剂调谐;一种基于共价基的亚纳米尺寸对苯二胺和静电基聚乙烯亚胺,与Go可互换组装。进行预膜制造,进行傅里叶变换红外线和X射线光电子能谱表征,以确定去和交联剂之间的相互作用的性质。后膜制造,扫描电子显微镜,水接触角测量和轮廓测量分析分别进行薄膜连续性,亲水性和厚度测量。建立了不同交联薄膜的膜厚度与双层数的强烈线性趋势。

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