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Layer-by-Layer Assembly and Electrochemical Study of Alizarin Red S-Based Thin Films

机译:基于茜素红S薄膜的层逐层组装和电化学研究

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摘要

Electroactive organic dyes incorporated in layer-by-layer (LbL) assemblies are of great interest for a variety of applications. In this paper, Alizarin Red S (ARS), an electroactive anthraquinone dye, is employed to construct LbL (BPEI/ARS)n films with branched poly(ethylene imine) (BPEI) as the complementary polymer. Unconventional LbL methods, including co-adsorption of ARS and poly(4-styrene sulfonate) (PSS) with BPEI to assemble (BPEI/(ARS+PSS))n, as well as pre-complexation of ARS with BPEI and further assembly with PSS to fabricate ((BPEI+ARS)/PSS)n, are designed for investigation and comparison. Film growth patterns, UV–Vis spectra and surface morphology of the three types of LbL assemblies are measured and compared to reveal the formation mechanism of the LbL films. Electrochemical properties including cyclic voltammetry and spectroelectrochemistry of (BPEI/ARS)120, (BPEI/(ARS+PSS))120 and ((BPEI+ARS)/PSS)120 films are studied, and the results show a slight color change due to the redox reaction of ARS. ((BPEI+ARS)/PSS)120 shows the best stability among the three samples. It is concluded that the manner of dye- incorporation has a great effect on the electrochemical properties of the resultant films.
机译:在逐层(LBL)组件中掺入的电活性有机染料对各种应用具有很大的兴趣。在本文中,茜素红S(ARS),一种电活性蒽醌染料,用于构建与支链聚(乙烯亚胺)(BPEI)的LBL(BPEI / Ars)N膜作为互补聚合物。非常规的LBL方法,包括使用BPEI的AR和聚(4-苯乙烯磺酸盐)(PSS)的共吸收(BPEI /(ARS + PS))N,以及用BPEI和进一步的组装的ARS预筛选用于制造((BPEI + ARS)/ PSS)N的PSS被设计用于调查和比较。测量膜生长模式,测量三种类型的LBL组件的UV-Vis光谱和表面形态,以露出LBL薄膜的形成机制。包括(BPEI / ARS)120,(BPEI /(ARS + PSS))120和((BPEI + ARS)/ PSS)120膜的电化学性质,并且结果显示出略有颜色的变化ars的氧化还原反应。 ((BPEI + ARS)/ PSS)120显示了三个样品中的最佳稳定性。结论是染色方式对所得薄膜的电化学性质具有很大的影响。

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