Vapor deposition of metal-doped polyaniline coatings, their molecular structure

А. М. Mikhalko, A. Rogachev, M. Yarmolenko, Xuhui Jin, Hongliang Zhang, H. Cao, P. A. Lychnikov, А.V. Rogachev
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Abstract

Doping of polyaniline (PANI) coatings by metal nanoparticles is a highly effective method for increasing their electrically conductive (EC), photovoltaic, and catalytic properties. In this case, the particular interest is the formation of metal-filled polyaniline coatings during their synthesis by the vacuum method. The growth of the polymer chain and the processes of structure formation proceed simultaneously and it becomes possible to vary the degree of doping, protonation, and ordering of the formed thin-film systems in a wide range. The purpose of the development is to determine the peculiarities of the formation of electron-beam dispersion from volatile products, the molecular structure of polyaniline-based layers containing noble metal nanoparticles, and to establish the effect of dopants on the molecular organization of the formed layers. The features of deposition from volatile products of electron-beam dispersion of nanocomposite polyaniline-based coatings and metal nanoparticles (silver, gold) are determined. The features of the molecular structure of the layers and the influence and its change upon the introduction of dopants by the methods of Raman and IR Fourier spectroscopy have been established. It is shown that the coatings have a conformational state of macromolecules in the form of flat extended chains, and a more oxidized structure of polyaniline layers is observed when silver chloride is used. It is shown that the features of the molecular structure of the formed polymer matrix based on polyaniline are due to the manifestation of a specific non-covalent interaction of macromolecules with metal nanoparticles. Analysis of the study results indicates the deposition possibility from the gas phase of nanocomposite conducting coatings based on polyaniline, which are a system of protonated conducting polymer chains and metal clusters. Such coatings are promising elements of sensor devices for various purposes; they can be used, in particular, in the creation of electrochromic devices.
气相沉积掺杂金属聚苯胺涂层及其分子结构
用金属纳米粒子掺杂聚苯胺(PANI)涂层是提高其导电性(EC)、光伏和催化性能的一种非常有效的方法。在这种情况下,特别感兴趣的是在真空法合成过程中金属填充聚苯胺涂层的形成。聚合物链的生长和结构的形成过程是同时进行的,形成的薄膜体系的掺杂程度、质子化程度和有序程度可以在很大的范围内变化。本研究的目的是确定挥发产物中电子束色散形成的特性,含有贵金属纳米粒子的聚苯胺基层的分子结构,并确定掺杂剂对形成层的分子组织的影响。测定了聚苯胺基纳米复合涂层与金属纳米粒子(银、金)的电子束分散挥发产物沉积特性。利用拉曼光谱和红外傅立叶光谱建立了层的分子结构特征及其对掺杂剂引入的影响和变化。结果表明,涂层具有扁平延伸链形式的大分子构象状态,而当使用氯化银时,可以观察到更氧化的聚苯胺层结构。结果表明,聚苯胺基聚合物形成的分子结构特征是由于大分子与金属纳米粒子发生了特定的非共价相互作用。研究结果表明,从气相沉积聚苯胺基纳米复合导电涂层是一种质子化的导电聚合物链和金属团簇体系。这种涂层是用于各种用途的传感器器件的有前途的元件;它们尤其可以用于制造电致变色器件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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