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首页> 外文期刊>Materials Chemistry Frontiers >Conducting polymers as bio-mimetic multistep macromolecular sensors of working conditions: polyindole/polyvinyl alcohol hybrid film senses electrical and chemical working ambient
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Conducting polymers as bio-mimetic multistep macromolecular sensors of working conditions: polyindole/polyvinyl alcohol hybrid film senses electrical and chemical working ambient

机译:导电聚合物作为仿生多步大分子传感器的工作条件:polyindole /聚乙烯醇混合电影的感觉电和化学环境工作

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Conducting polymers (CPs) can be considered as model materials for designing motors capable of sensing their own working conditions while working without additional connectivity as they mimic the electrochemical reactions of biological muscles comprising macro molecular motors. Bio-mimetic reactive sensing characteristics of polyindole (PIN) and its applicability as a multi-step macromolecular sensor of working conditions is verified for the first time using a flexible polyindole/polyvinyl alcohol (PIN/PVA) hybrid film. The sensing behaviour of the PIN/PVA film toward working electrical and chemical conditions was explored through its chronopotentiometric response in aqueous solutions of HCl by changing the reaction variables: applied current and chemical environment (electrolyte concentration) at a constant charge. The consumed electrical energy during the electrochemical reaction of the film varies linearly with the driving current and follows a logarithmic dependence of the electrolyte concentration. The reversible charge consumed during the reaction obtained from the coulovoltammogram is found to vary as a double logarithmic function of the electrolyte concentration. The electrical energy and the reversible charge consumed during the reaction act as the sensing parameters of the energetic working conditions. The cooperative actuation (the reversible conformational movement) of the PIN/PVA film by balancing the counterion concentration is also presented and a theoretical description to explain the observed result is introduced. As a result of reversible conformational movements, the polymeric chains of PIN expand/contract reversibly producing a volume change that mimics the reaction-driven volume changes taking place in biological muscles under electrical stimulus. These results of the work on PIN suggest the possibility of constructing new multifunctional devices comprised of several actuators and sensors working simultaneously driven by the same reaction and with only two connecting wires based on CPs and support the argument that the reactive sensing capability for their own working conditions is a general property of all CPs.
机译:可以认为是导电聚合物(CPs)模型材料设计汽车的能力感觉到自己的工作条件工作时没有额外的连接模仿生物的电化学反应肌肉组成的宏观分子马达。仿生活性传感的特点作为一个polyindole(销)及其适用性多步大分子传感器的工作首次验证了使用条件灵活polyindole /聚乙烯醇(销/ PVA)混合的电影。电影对电气和化学工作探讨了通过其条件chronopotentiometric反应水HCl通过改变反应的解决方案变量:应用电流和化学环境(电解质浓度)常数。在电影的电化学反应线性驱动电流和不同遵循对数的依赖电解液浓度。在反应得到的作为一个双coulovoltammogram发现变化对数函数的电解液浓度。可逆反应期间费用消耗作为传感参数之间的能量工作条件。(可逆的构象运动)销/ PVA膜平衡平衡离子浓度也提出了一个理论描述来解释观察到的结果是介绍了。高分子链的构象运动销扩张/收缩可逆地产生一个卷变化,模拟reaction-driven体积变化发生在生物肌肉电刺激。销建议新建设的可能性多功能设备组成的几个作动器和传感器同时工作由相同的反应,只有两个基于CPs和支持连接电线参数的活性传感功能自己的工作环境是一个将军所有CPs的属性。

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