Electrochemical Capacitor Performance: Influence of Aqueous Electrolytes

R. Ramachandran, Fei Wang
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引用次数: 44

Abstract

Due to low energy characteristics such as energy density and cyclic life, it is mandatory to enhance the energy characteristics of the supercapacitors (ESs). Electrolytes have been recognized as the most prominent ingredients in electrochemical supercapacitor perfor- mance. Most commercially available ESs use organic electrolytes and have some advantage like wide operating voltage. However, compared with aqueous alternatives, organic electrolytes are expensive, flammable, and, in some cases, toxic. It is reliable to assert that even though aqueous electrolytes examined by a cramped working voltage, the ions pres- ent in them are yet capable of incredibly faster carrier rates than organic electrolytes and can achieve better performance of ESs. Thus, efforts turned toward enlarging the work - ing voltage window of aqueous electrolytes to increase overall operating potential and energy density of supercapacitor devices. This book chapter comprises the latest accom - plishments in this area and provides an insight into the aqueous electrolyte advancement.
电化学电容器性能:水性电解质的影响
由于超级电容器的能量密度和循环寿命等能量特性较低,必须提高其能量特性。电解液被认为是影响电化学超级电容器性能的最重要因素。大多数商用ESs使用有机电解质,具有宽工作电压等优点。然而,与水电解质相比,有机电解质价格昂贵、易燃,在某些情况下还有毒。可以肯定地说,即使在狭窄的工作电压下检查水性电解质,其中存在的离子仍然能够比有机电解质更快地载流子速率,并且可以实现更好的ESs性能。因此,努力转向扩大水电解质的工作电压窗口,以提高超级电容器器件的整体工作电位和能量密度。这本书的章节包括在这一领域的最新成就,并提供了一个深入了解水性电解质的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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