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Green biomass: the impact of high-adhesion and well-dispersed binders on the sodium storage performance and interfacial interaction of hard carbon anodes

机译:绿色生物质:高粘附力和良好分散的粘合剂对硬碳负极储钠性能和界面相互作用的影响

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摘要

Hard carbon (HC) exhibits promising potential as an anode material for sodium-ion batteries; however, it is confronted with challenges such as low initial coulombic efficiency (ICE) and poor rate performance. Developing biomass-based binders is a significant strategy to promote electrochemical performance and improve the stability of the solid electrolyte interface (SEI). In this work, green biomass of carboxymethyl cellulose (CMC) and sodium lignosulfonate (LS) with excellent adhesion and dispersibility is demonstrated as an efficient binder for hard carbon anodes. The semi-rigid skeleton of LS effectively wraps the hard carbon particles, surface modifies HC, and fills defects. The polar functional groups of the binder facilitate the adsorption of Na+ and reduce irreversible Na+ insertion. Furthermore, the functional groups induce the formation of a unique SEI layer. The SEI layer consists of an organic outer layer and an inorganic inner layer, promoting ion transport and mechanical integrity. Therefore, the HC anode with the CMC/LS binder demonstrates a high reversible capacity of 348 mA h g−1 at 0.05 A g−1, a high ICE of 87, and an outstanding rate performance with 243 mA h g−1 at 5 A g−1.
机译:硬碳 (HC) 作为钠离子电池的负极材料具有广阔的潜力;然而,它面临着初始库仑效率 (ICE) 低和速率性能差等挑战。开发生物质基粘合剂是提高电化学性能和提高固体电解质界面 (SEI) 稳定性的重要策略。在这项工作中,羧甲基纤维素 (CMC) 和木质素磺酸钠 (LS) 的绿色生物质具有优异的粘附力和分散性,被证明是硬碳负极的有效粘合剂。LS 的半刚性骨架有效地包裹了硬碳颗粒,表面改性了 HC,并填充了缺陷。粘合剂的极性官能团有助于 Na+ 的吸附并减少不可逆的 Na+ 插入。此外,官能团诱导形成独特的 SEI 层。SEI 层由有机外层和无机内层组成,促进离子传输和机械完整性。因此,带有 CMC/LS 粘合剂的 HC 阳极在 0.05 A g-1 时表现出 348 mA h g-1 的高可逆容量,87% 的高 ICE,以及在 5 A g-1 下 243 mA h g-1 的出色倍率性能。

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