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Storing Energy in Biodegradable Electrochemical Supercapacitors

机译:在可生物降解的电化学超级电容器中存储能量

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摘要

The development of green and biodegradable electrical components is one of the main fronts of research to overcome the growing ecological problem related to the issue of electronic waste. At the same time, such devices are highly desirable in biomedical applications such as integrated bioelectronics, for which biocompatibility is also required. Supercapacitors for storage of electrochemical energy, designed only with biodegradable organic matter would contemplate both aspects, that is, they would be ecologically harmless after their service lifetime and would be an important component for applications in biomedical engineering. By means of atomistic simulations of molecular dynamics, we propose a supercapacitor whose electrodes are formed exclusively by self-organizing peptides and whose electrolyte is a green amino acid ionic liquid. Our results indicate that this supercapacitor has a high potential for energy storage with superior performance than conventional supercapacitors. In particular its capacity to store energy was estimated to be almost 20 times greater than an analogueone of planar metallic electrodes.
机译:开发绿色和可生物降解的电气组件是克服与电子废物问题相关的日益严重的生态问题的主要研究领域之一。同时,在诸如集成生物电子学之类的生物医学应用中,也非常需要这样的设备,为此还需要生物相容性。仅用可生物降解的有机物设计的用于存储电化学能量的超级电容器将考虑这两个方面,即,它们在使用寿命后将对生态无害,并且将成为生物医学工程应用中的重要组成部分。通过分子动力学的原子模拟,我们提出了一种超级电容器,其电极仅由自组织肽形成,其电解质为绿色氨基酸离子液体。我们的结果表明,与常规超级电容器相比,这种超级电容器具有更高的性能,具有很高的储能潜力。特别是它的储能能力估计是类似物的近20倍平面金属电极之一。

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