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Pullulan-ionic liquid-based supercapacitor: A novel, smart combination of components for an easy-to-dispose device

机译:普拉兰离子液体的超级电容器:一种新颖的,易于处理装置的组件组合

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摘要

Strategies that simultaneously target energy/power performance, sustainable manufacturing processes, valorization of green raw materials, and easy recycling of supercapacitors are urgently needed. Today, efforts have to be devoted not only to improve system performance but also to address the sustainability of materials and devices manufacturing and recyclability. Specifically, pullulan is herein proposed as a novel bio-degradable binder and separator for green supercapacitors. It is processed by electrospinning from aqueous solutions, therefore overcoming issues related to conventional membrane processing by organic solvents. Furthermore, combining the water-soluble, biodegradable pullulan with a hydrophobic ionic liquid electrolyte brings about a novel approach for end-of-life management of devices. The use of pullulan is demonstrated in a supercapacitor with carbon electrodes obtained from pepper-seeds waste and 1-Ethyl-3-methylimidazoliumbis(trifluoromethylsulfonyl)imide as the electrolyte. The supercapacitor delivers up to 5 kW kg(-1) specific power and 27.8 Wh kg(-1) specific energy at 3.2 V, that well compare with conventional electrical double-layer capacitor performance with the added value of being eco-friendly and cheap. (C) 2020 Elsevier Ltd. All rights reserved.
机译:迫切需要同时定位能源/功率性能,可持续制造工艺,绿色原料的储价,迫切需要策略,迫切需要迫切需要迫切需要对超级电容器易于回收的超级电容器。今天,必须努力改善系统性能,也必须致力于解决材料和设备制造和可回收性的可持续性。具体地,在本文中提出了花粉作为新型生物可降解粘合剂和用于绿色超级电容器的分离器。它通过从水溶液中静电纺丝来处理,因此通过有机溶剂克服与常规膜加工有关的问题。此外,将水溶性的可生物降解的胰蛋白酶组合在疏水离子液体电解质中组合出一种新的寿命终身方法的新方法。在具有从辣椒 - 种子废物和1-乙基-3-甲基咪唑鎓基底(三氟甲基磺酰基)作为电解质中获得的碳电极的超级电容器中的使用。超级电容器可提供3.2 V的高达5千瓦千克(-1)个特定功率和27.8WH kg(-1)个特定能量,并与传统的电气双层电容性能相比,具有额外的Eco友好和便宜的值。 (c)2020 elestvier有限公司保留所有权利。

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