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NiCo2S4 nanoparticles//activated balsam pear pulp for asymmetric hybrid capacitors

机译:用于不对称混合电容器的NiCo2S4纳米粒子//活化苦瓜纸浆

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摘要

Cauliflower-like NiCo2S4 nanoparticles (NPs) for use as battery-type materials have been synthesized via a simple one-step route solvothermal method with thioacetamide (TAA) as the sulfur source. The synthesis of the Ni-Co precursors and the S2- anion exchange reactions occur at the same time, which is time-effective and cost-effective compared to other methods. The obtained NiCo2S4 NPs display very competitive electrochemical performance (a specific capacitance of 2480 F g(-1) is achieved at a current density of 0.5 A g(-1), excellent rate capability with 68% of the original capacitance remained at 10 A g(-1) and ideal cycle stability with 80% capacitance remained after 3000 cycles) with high mass-loading (5 mg cm(-2)). In addition, low-cost activated balsam pear pulp (ABPP) is developed as a capacitor-type carbon material for super-capacitors with ideal electrochemical performances. The asymmetric hybrid capacitors (AHCs) are further assembled into pouch cells using battery-type NiCo2S4 NPs as the positive electrode, capacitor-type ABPP as the negative electrode and flexible carbon papers as the current collector. The AHCs demonstrate high power density (3.52 kW kg(-1) at an energy density of 3.72 Wh kg(-1)) and cycle stability (72.4% after 9000 cycles).
机译:通过简单的一步法溶剂热法,以硫代乙酰胺(TAA)为硫源,合成了用作电池型材料的花椰菜状NiCo2S4纳米颗粒(NPs)。 Ni-Co前体的合成和S2-阴离子交换反应同时进行,与其他方法相比,这既省时又经济。所获得的NiCo2S4 NPs表现出极具竞争力的电化学性能(在0.5 A g(-1)的电流密度下可实现2480 F g(-1)的比电容,出色的速率能力,原始电容的68%保持在10 A g(-1)和理想的循环稳定性(3000次循环后仍具有80%的电容),具有高质量负载(5 mg cm(-2))。另外,低成本活性苦瓜纸浆(ABPP)被开发为具有理想电化学性能的超级电容器的电容器型碳材料。使用电池型NiCo2S4 NP作为正极,电容器型ABPP作为负极,柔性碳纸作为集电器,将非对称混合电容器(AHC)进一步组装成袋式电池。 AHC表现出高功率密度(能量密度为3.72 Wh kg(-1)时为3.52 kW kg(-1))和循环稳定性(9000次循环后为72.4%)。

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