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首页> 外文期刊>Pure and Applied Chemistry >In situ transient study of polymer film growth via simultaneous correlation of charge, mass, and ellipsometric measurements
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In situ transient study of polymer film growth via simultaneous correlation of charge, mass, and ellipsometric measurements

机译:通过电荷,质量和椭偏测量的同时相关性对聚合物膜生长进行原位瞬态研究

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摘要

Using three synchronized, in situ, nonintrusive, real-time characterization techniques to conduct transient observations, we revealed mechanistic details of a polymer film growth. A thin methylene green (MG) polymer coating (of the order of 35 nm) was used as a model system in this electrochemical microgravimetric imaging ellipsometry (EmIE) investigation. The direct correlation of chances in mass (via quartz crystal microbalance, QCM), ellipsometric angles (via imaging ellipsometry) with electrochemical conditions (in cyclic voltammetry, CV) provides discrete temporal and spatial information to help us decipher the underlying steps, from which we were able to separate adsorption, reduction, oxidation, desorption, and polymerization regimes involved in the deposition process. The evidence revealed in this study could have broad impact on the general understanding regarding how a film is deposited onto a metal surface.
机译:使用三种同步的原位非侵入式实时表征技术进行瞬态观测,我们揭示了聚合物膜生长的机械细节。在此电化学微重力成像椭圆偏光法(EmIE)研究中,使用了薄的亚甲基绿(MG)聚合物涂层(约35 nm)作为模型系统。质量(通过石英晶体微量天平,QCM),椭圆偏角(通过成像椭圆偏光)与电化学条件(在循环伏安法,CV中)的机会直接相关,提供了离散的时间和空间信息,以帮助我们理解基本步骤,从中能够分离沉积过程中涉及的吸附,还原,氧化,解吸和聚合过程。这项研究中揭示的证据可能会对有关如何将膜沉积到金属表面的一般理解产生广泛影响。

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