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Green Energy Harvester from Vibrations Based on Bacterial Cellulose

机译:基于细菌纤维素的振动绿色能量收集器

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摘要

A bio-derived power harvester from mechanical vibrations is here proposed. The harvester aims at using greener fabrication technologies and reducing the dependence from carbon-based fossil energy sources. The proposed harvester consists mainly of biodegradable matters. It is based on bacterial cellulose, produced by some kind of bacteria, in a sort of bio-factory. The cellulose is further impregnated with ionic liquids and covered with conducting polymers. Due to the mechanoelectrical transduction properties of the composite, an electrical signal is produced at the electrodes, when a mechanical deformation is imposed. Experimental results show that the proposed system is capable of delivering electrical energy on a resistive load. Applications can be envisaged on autonomous or quasi-autonomous electronics, such as wireless sensor networks, distributed measurement systems, wearable, and flexible electronics. The production technology allows for fabricating the harvester with low power consumption, negligible amounts of raw materials, no rare elements, and no pollutant emissions.
机译:在此提出一种由机械振动产生的生物来源的能量收集器。该收割机旨在使用更绿色的制造技术并减少对碳基化石能源的依赖。提议的收割机主要由可生物降解的物质组成。它基于某种生物工厂中由某种细菌产生的细菌纤维素。纤维素进一步用离子液体浸渍并用导电聚合物覆盖。由于复合材料的机电转换特性,当施加机械变形时,会在电极上产生电信号。实验结果表明,所提出的系统能够在电阻负载上传递电能。可以设想在自治或准自治电子设备上应用,例如无线传感器网络,分布式测量系统,可穿戴和柔性电子设备。该生产技术允许以低功耗,少量的原材料,无稀有元素和无污染物排放来制造收割机。

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