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首页> 外文期刊>Thin Solid Films >Influence of galvanostatic electrodeposition parameters on the structure- property relationships of polyaniline thin films and their use as potentiometric and optical pH sensors
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Influence of galvanostatic electrodeposition parameters on the structure- property relationships of polyaniline thin films and their use as potentiometric and optical pH sensors

机译:恒电流电沉积参数对聚苯胺薄膜的结构-性能关系的影响及其在电位和光学pH传感器中的应用

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摘要

Galvanostaticaly electrodeposited polyaniline thin films were used as both potentiometric and optical pH chemical sensor. The galvanostatic deposition parameters were: deposited charge from 150 to 600 mC cm(-2), current density from 0.5 to 1.0 mA cm(-2 )and deposition time from 150 to 1200 s. The electrodeposited polyaniline thin films in these conditions presented passivation charge 150 +/- 12 mC cm(-2). The variation of the deposition parameters led to the production of thin films with distinct properties and characteristics. Basically, they presented two distinct oxidation states. The set of films produced using a current density of 0.5 mA cm(-2) showed the best performances for both sensors, reaching a sensitivity of 81 +/- 1 mV pH(-1) and 30 +/- 3 pH(-1 )for the potentiometric and optical pH chemical sensor, respectively. This set of films presented the best performances because they had a partially oxidized structure, the emeraldine base, which has the largest protonation potential and reaches a high electrical conductivity. The understanding of the mechanisms involved in pH detection is discussed based on the structure-property relationship established by the characterization of the PANI thin films together with the polymer's electrochemical and optical mechanism of sensitivity to pH variation.
机译:恒电流电沉积的聚苯胺薄膜既用作电位计又用作光学pH化学传感器。恒电流沉积参数为:沉积电荷为150至600 mC cm(-2),电流密度为0.5至1.0 mA cm(-2),沉积时间为150至1200 s。在这些条件下电沉积的聚苯胺薄膜呈现钝化电荷150 +/- 12 mC cm(-2)。沉积参数的变化导致产生具有不同性质和特性的薄膜。基本上,它们呈现出两种不同的氧化态。使用0.5 mA cm(-2)的电流密度生产的这组膜显示了两种传感器的最佳性能,灵敏度分别达到81 +/- 1 mV pH(-1)和30 +/- 3 pH(-1) )分别用于电位计和光学pH化学传感器。这组膜表现最佳,因为它们具有部分氧化的结构,即翡翠碱,其具有最大的质子化势能并具有高电导率。基于PANI薄膜的表征与聚合物对pH变化敏感的电化学和光学机理建立的结构-性质关系,讨论了对pH检测所涉及的机理的理解。

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