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A New View of Supercapacitors: Integrated Supercapacitors

机译:超级电容器的新观点:集成超级电容器

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Charging times ranging from seconds to minutes with high power densities can be achieved by electrochemical capacitors in principle. Over the past few decades, the performance of supercapacitors has been greatly improved by the utilization of new materials, preparation of unique nanostructures, investigation of electrolytes, and so on. However, the discovery of the related basic theory is very limited. Herein, a new view of a supercapacitor called the "integrated supercapacitor" is proposed. The electrode of the integrated supercapacitor consists of certain positive and negative materials. With this design, a single integrated electrode can work in both the positive and negative potential windows simultaneously. Additionally, the integrated full supercapacitor device shows a much higher capacitance and wider potential window than traditional single symmetric and asymmetric supercapacitors, which results from its multiple mechanisms, including the traditional positive//positive symmetric, positive/egative asymmetric, and negative/egative symmetric full supercapacitor mechanisms.
机译:原则上,电化学电容器可实现高功率密度下数秒至数分钟的充电时间。在过去的几十年中,通过使用新材料,制备独特的纳米结构,研究电解质等,超级电容器的性能得到了极大的提高。但是,相关基础理论的发现非常有限。在此,提出了一种称为“集成超级电容器”的超级电容器的新观点。集成超级电容器的电极由某些正负材料组成。通过这种设计,单个集成电极可以同时在正和负电位窗口中工作。此外,集成的完整超级电容器器件比传统的单对称和非对称超级电容器具有更高的电容和更宽的电位窗口,这是由其多种机制产生的,包括传统的正/正对称,正/负非对称和负//负对称全超级电容器机制。

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