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Investigation on the Role of Ionic Liquids in the Output Signal Produced by Bacterial Cellulose-Based Mechanoelectrical Transducers

机译:基于细菌纤维素的机械电换能器产生的离子液体在输出信号中的作用研究

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摘要

Green sensors are required for the realization of a sustainable economy. Biopolymer-derived composites are a meaningful solution to such a needing. Bacterial Cellulose (BC) is a green biopolymer, with significant mechanical and electrical properties. BC-based composites have been proposed to realize generating mechanoelectrical transductors. The transductors consist of a sheet of BC, impregnated of Ionic Liquids (ILs), and covered with two layers of Conducting Polymer (CP) as the electrodes. Charges accumulate at the electrodes when the transductor is bent. Generating sensors can produce either Open Circuit (OC) voltage or Short Circuit (SC) current. In the paper, the OC voltage and SC current, generated from BC-based composites, in a cantilever configuration and subjected to dynamic deformation are compared. The influence of ILs in the transduction performance, both in the case of OC voltage and SC current is investigated. Experimental investigations of structural, chemical, and mechanoelectrical transduction properties, when the composite is dynamically bent, are performed. The mechanoelectrical investigation has been carried on both in the time and in the frequency domains. Reported results show that no relevant changes can be obtained because of the use of IL when the OC voltage is considered. On the contrary, dramatic changes are observed for the case of SC current, whose value increases by about two orders of magnitude.
机译:实现可持续经济需要绿色传感器。生物聚合物衍生的复合材料是这种需要的有意义的解决方案。细菌纤维素(BC)是一种绿色生物聚合物,具有显着的机械和电气性能。已经提出了基于BC的复合材料来实现产生机电电压器。转导器由浸渍离子液体(ILS)的BC片材组成,并用两层导电聚合物(CP)作为电极覆盖。当转导器弯曲时,电荷在电极上积聚。产生传感器可以产生开路(OC)电压或短路(SC)电流。在纸质中,比较从基于BC的复合材料,在悬臂配置中产生并进行动态变形的oc电压和SC电流。研究了ILS在转导性能中,研究了OC电压和SC电流的情况。进行结构,化学和机械转导性能的实验研究,当复合物动态弯曲时进行。在频率域和频率域中都进行了机械电解研究。报道的结果表明,由于考虑了OC电压时,由于使用IL,可以获得任何相关变化。相反,对于SC电流的情况,观察到剧烈的变化,其值增加了大约两个数量级。

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