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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Electrosynthesized, non-conducting films of poly(2-naphthol): electrochemical and XPS investigations
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Electrosynthesized, non-conducting films of poly(2-naphthol): electrochemical and XPS investigations

机译:聚(2-萘酚)的电合成非导电膜:电化学和XPS研究

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摘要

Advanced biosensors are frequently based on electrosynthesized polymeric films. In this context, the electrosynthesis mechanism underlying the electrochemical oxidation of 2-naphthol (2-NAP) in phosphate buffer at pH 7 on Pt electrodes has been investigated. The voltammetric behaviour suggested the formation of a non-conducting polymer (poly(2-NAP)) through an irreversible electrochemical process complicated by 2-NAP adsorption and fast electrode passivation. Repeat experiments showed the passive films to be strongly adherent to the Pt surface with thicknesses of approximately 10 nm, as estimated by in-situ electrochemical quartz crystal microbalance (EQCM) measurements and by X-ray photoelectron spectroscopy (XPS). The polymer structure was then investigated by XPS, which gave evidence of the presence of naphthalene rings bonded through poly(oxide) groups (C–O–C) and of quinonoid groups, probably present as the ends of polymeric chains. The polymer repeat unit and terminal groups derived by XPS analysis are in accordance with electrochemical results and with synthesis routes reported for phenol-derived compounds in aqueous solution. XPS also gave evidence of a large excess of oxygen, probably arising from water molecules entrapped by the polymeric chains, as suggested by angle-resolved XPS and thermal treatment of poly(2-NAP)/Pt film under ultra-high vacuum (UHV).
机译:先进的生物传感器通常基于电合成的聚合物薄膜。在这种情况下,已研究了在Pt电极上pH 7的磷酸盐缓冲液中2-萘酚(2-NAP)电化学氧化的电合成机理。伏安行为表明通过不可逆的电化学过程与2-NAP吸附和快速的电极钝化相结合,形成了非导电聚合物(poly(2-NAP))。重复实验表明,通过原位电化学石英晶体微天平(EQCM)测量和X射线光电子能谱(XPS)估算,钝化膜能牢固粘附在Pt表面,厚度约为10 nm。然后,通过XPS研究了聚合物的结构,这证明存在通过聚(氧)基(OC)键合的萘环和可能作为聚合物链末端存在的醌型基团。通过XPS分析得出的聚合物重复单元和末端基团符合电化学结果,并且符合水溶液中苯酚衍生化合物的合成路线。 XPS还提供了大量氧气的证据,这可能是由聚合物链截留的水分子引起的,如角度解析XPS和在超高真空(UHV)下对poly(2-NAP)/ Pt膜进行热处理所表明的那样。

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