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Hierarchically Engineered Nanocarbon Florets as Bifunctional Electrode Materials for Adsorptive and Intercalative Energy Storage

机译:分层工程化的纳米碳小花作为吸附和插入能量储存的双功能电极材料

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摘要

Three-dimensional dendritic nanostructured carbon florets (NCFs) with tailored porosity are demonstrated as electrochemically versatile electrodes for both adsorptive and intercalative energy storage pathways. Achieved through a single-step template-driven approach, the NCFs exhibit turbostratic graphitic lamellae in a floral assembly leading to high specific surface area and multi-modal pore distribution (920 m(2)/g). The synergism in structural and chemical frameworks, along with open-ended morphology, enables bifunctionality of hard carbon NCFs as symmetric adsorptive electrodes for supercapacitors (SCs) and intercalation anodes for hybrid potassium-ion capacitors (KICs). Flexible, all-solid-state SCs through facile integration of NCF with the ionic-liquid-imbibed porous polymeric matrix achieve high-energy density (20 W h/kg) and power density (32.7 kW/kg) without compromising on mechanical flexibility and cyclability (94% after 20k cycles). Furthermore, NCF as an anode in a full-cell hybrid KIC (activated carbon as cathode) delivers excellent electrochemical performance with maximum energy and power densities of 57 W h/kg and 12.5 kW/kg, respectively, when cycled in a potential window of 1.0-4.0 V. The exceptional bifunctional performance of NCF highlights the possibility of utilizing such engineered nanocarbons for high-performance energy storage devices.
机译:具有定制孔隙率的三维树突纳米结构碳小花(NCF)被证明为吸附和插入能量储存途径的电化学通用电极。通过单步模板驱动的方法实现,NCFS在花组件中展示涡轮棘轮石墨薄片,导致高比表面积和多模态孔径(920m(2)/ g)。结构和化学框架中的协同作用以及开放式形态,使硬碳NCFS的双功能性能够用于混合钾离子电容器(KIC)的超级电容器(SCS)和插层阳极的对称吸附电极。通过与离子 - 液体吸收的多孔聚合物基质的NCF相加的柔性,全固态SC,实现高能量密度(20WH / kg)和功率密度(32.7 kW / kg),而不会影响机械柔性和机械柔性可行性(20K循环后94%)。此外,作为全细胞混合kic(活性炭作为阴极的活性炭)中的NCF作为阳极,当循环在潜在的窗口中时,分别为57Wh / kg和12.5kW / kg的最大能量和功率密度提供了优异的电化学性能。 1.0-4.0 V. NCF的卓越双功能性能突出了利用这种工程化纳米碳的可能性,用于高性能储能设备。

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