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A Short Review on the Electrochemical Performance of Hierarchical and Nitrogen-Doped Activated Biocarbon-Based Electrodes for Supercapacitors

机译:超级电容器等分层和氮掺杂活性生物碳电极电化学性能的缺课

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摘要

Cheap and efficient carbon electrodes (CEs) for energy storage systems (ESS) such as supercapacitors (SCs) and batteries are an increasing priority issue, among other things, due to a globally increasing share of intermittent electricity production (solar and wind) and electrification of transport. The increasing consumption of portable and non-portable electronic devices justifies research that enables environmentally and economically sustainable production (materials, processing techniques, and product design) of products with a high electrochemical performance at an acceptable cost. Among all the currently explored CEs materials, biomass-based activated carbons (AC) present enormous potential due to their availability and low-cost, easy processing methods, physicochemical stability, and methods for self-doping. Nitrogen doping methods in CEs for SCs have been demonstrated to enhance its conductivities, surface wettability, and induced pseudocapacitance effect, thereby delivering improved energy/power densities with versatile properties. Herein, a short review is presented, focusing on the different types of natural carbon sources for preparing CEs towards the fabrication of SCs with high electrochemical performance. The influences of ACs’ pore characteristics (micro and mesoporosity) and nitrogen doping on the overall electrochemical performance (EP) are addressed.
机译:储能系统(ESS)等廉价高效的碳电极(CES),如超级电容器(SCS)和电池是一个越来越优先的问题,以及其他事情,因为由于间歇性电力生产(太阳能和风)和电气化的全球增加运输。不断消耗的便携式和非便携式电子设备的消耗证明了在可接受的成本上具有高电化学性能的产品的环境和经济上可持续的生产(材料,加工技术和产品设计)。在所有目前探索的CES材料中,基于生物量的活性碳(AC)由于其可用性和低成本,易于加工方法,物理化学稳定性和用于自掺杂的方法,具有巨大的潜力。已经证明了SCS中CES中的氮掺杂方法,以提高其导电性,表面润湿性和诱导的假偶像效应,从而提供具有通用性能的改进的能量/功率密度。在此,呈现了短暂的审查,专注于不同类型的天然碳源,用于制备具有高电化学性能的SC的CES。 ACS的孔隙特性(微观和介孔率)和氮掺杂对整体电化学性能(EP)的影响。

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