Biomass Based Materials in Electrochemical Supercapacitor Applications

Sema Aslan, Derya Bal Altuntaş
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Abstract

Biomass is the general term for organic substances derived from living organisms (plants and animals). Since, biomass is a renewable, sustainable, innovative, low cost and carbon-neutral energy source, the applications of nano-micro particles produced from biomass in electrochemical applications have emerged. A large number of carbon-based materials, such as featured activated carbon, carbon nanotube, C-dots, biochar, hybrid carbon-metal/metal oxide … etc. can be produced from divergent types of biomass. With the growing energy need in the world, supercapacitors have also developed considerably besides the energy generation and storage methods. The supercapacitor is an energy storage system that can work reversibly to provide high energy in a short time. In these systems, electrode structure and surface properties are crucial for energy capacity enhancement. In this sense, electrode modifications with the above-mentioned biomass-based nano-micro structures are widely used in supercapacitor applications.
生物质基材料在电化学超级电容器中的应用
生物质是从活的有机体(植物和动物)中提取的有机物质的总称。由于生物质是一种可再生、可持续、创新、低成本和碳中性的能源,由生物质生产的纳米微颗粒在电化学应用中的应用已经出现。从不同类型的生物质中可以生产大量的碳基材料,如特征活性炭、碳纳米管、c点、生物炭、碳金属/金属氧化物杂化等。随着世界能源需求的不断增长,超级电容器在产生和储存能源的方法方面也有了长足的发展。超级电容器是一种能在短时间内可逆工作,提供高能量的储能系统。在这些系统中,电极结构和表面性质对能量容量的增强至关重要。从这个意义上说,上述生物质基纳米微结构的电极修饰在超级电容器中有着广泛的应用。
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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