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Eco-friendly and scalable synthesis of micro-/mesoporous carbon sub-microspheres as competitive electrodes for supercapacitors and sodium-ion batteries

机译:作为超级电容器和钠离子电池的微/介孔碳亚微球的生态友好和可扩展合成,作为竞争电极和钠离子电池

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摘要

Cost-efficiency utilization of carbon sub-microspheres is greatly significant for their versatile energy-related applications. However, eco-friendly synthesis and moderate activation protocols for enhancing their electrochemical performances are still challenging. Herein, we explore a facile two-step methodology, i.e., hydrothermal carbonization and subsequent mild activation, for bottom-up fabrication of KHCO3 activated micro-/mesoporous carbon microspheres (MCMS-K) as competitive electrodes towards electrochemical capacitors (ECs) and sodium-ion batteries (SIBs) by using the soluble starch as a low-cost precursor. Benefitting from its high specific surface area (similar to 1972.8 m(2) g(-1)), abundant micropores (similar to 88.8%), and high graphitization degree, the MCMS-K electrode obtains a specific capacitance of similar to 369.8 F g(-1) (similar to 266.3 F cm(-3)) at 1 A g(-1) in 1 M H2SO4, higher than that in 6 M KOH, thanks to the surface oxygen functional groups involved pseudocapacitance. More remarkably, the MCMS-K based organic symmetrical ECs deliver a high-rate energy density of 34.4 Wh kg(-1) at 12.5 kW kg(-1), and ultra-long cycling stability. Besides, the MCMS-K anode renders a high-rate capacity of similar to 78.6 F g(-1) at 5.0 A g(-1) via Na+ surface adsorption and intercalation accompanying with excellent cycling behaviors for SIBs. It strongly highlights the promising applications of our MCMS-K product in ECs and SIBs.
机译:碳亚微球的成本效率利用对于多功能的能量相关的应用非常重要。然而,用于增强其电化学性能的环保合成和适度的激活方案仍然具有挑战性。在此,我们探讨了容易的两步方法,即水热碳化和随后的轻度激活,用于自下而上为KHCO3活化的微/介孔碳微球(MCMS-K)作为竞争电极朝向电化学电容器(ECS)和钠的竞争电极通过使用可溶性淀粉作为低成本前体的电池(SIB)。从其高比表面积(类似于1972.8M(2)G(2)g(-1)),微孔丰富(类似于88.8%)和高图石化程度,MCMS-K电极获得的特定电容与369.8 f相似G(1)(类似于266.3f cm(-3))在1mH2SO4中以1μl(-1)),由于表面氧官能团涉及假偶联的表面氧官能团,高于6M KOH。更值得注意地,基于MCMS-K的有机对称ECS在12.5kW kg(-1)和超长循环稳定性的高速能量密度为34.4WH kg(-1),以及超长循环稳定性。此外,MCMS-K阳极通过Na +表面吸附和嵌入在5.0Ag(-1)的高速度容量,其通过Na +表面吸附和插入与SIBs的优异的循环行为相似。它强烈突出了我们的MCMS-K产品在ECS和SIB上的有希望的应用。

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