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首页> 外文期刊>Chemical engineering journal >Phytic acid-assisted synthesis of ultrafine NiCo2S4 nanoparticles immobilized on reduced graphene oxide as high-performance electrode for hybrid supercapacitors
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Phytic acid-assisted synthesis of ultrafine NiCo2S4 nanoparticles immobilized on reduced graphene oxide as high-performance electrode for hybrid supercapacitors

机译:植物酸辅助合成超细NicO 2 S4纳米颗粒,其固定在将氧化石墨烯作为杂交超级电容器的高性能电极上固定在氧化物中的高性能电极

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摘要

Incorporating graphene with transition metal sulfides nanoparticles (NPs) holds great potential as a high performance battery-type electrode for hybrid supercapacitors (HSCs). However, the poor interfacial contact between NPs and graphene sheets usually leads to compromised capacitance and stability of electrode materials. In order to tackle this problem, eco-friendly phytic acid (PA) is used as a bridging connection between graphene and NiCo2S4 NPs via the six phosphate groups of PA to afford NiCo2S4 NPs immobilized firmly on phytic acid modified reduced graphene oxide (PRGO) sheets. In addition, the morphology of NiCo precursor could be easily tuned by the addition of PA. Benefiting from the morphology and composition, the prepared NiCo2S4/PRGO hybrid battery-type electrode exhibits excellent electrochemical performance with high capacitance (1090 F g(-1) at 2 A g(-1)), good rate performance (76.1% of the capacitance can be retained from 2 to 20 A g(-1)) and enhanced cycling stability. Moreover, a HSC device is fabricated using NiCo2S4/PRGO hybrid as positive electrode and active carbon (AC) as negative electrode, which exhibits a prominent energy density of 27.5 Wh kg(-1) at a high power density of 446.5Wkg(-1). The utilization of PA could offer a new avenue for the design of transition metal sulfides/PRGO hybrid for electrochemical or electrocatalytic applications.
机译:将石墨烯与过渡金属硫化物纳米颗粒(NPS)掺入含有高性能电池型电极的巨大潜力,用于杂交超级电容器(HSC)。然而,NPS和石墨烯片之间的差的界面接触通常导致电极材料的损害电容和稳定性。为了解决这个问题,通过PA的六个磷酸盐基团在石墨烯和NicO2S4NP之间用作桥接连接的桥接性,以提供牢固地固定在植物酸改性的石墨烯氧化物(PRGO)片上固定的Nico2S4 NP之间的桥接连接。 。此外,通过添加PA可以容易地调整Nico前体的形态。从形态和组合物中受益,所需的NicO2S4 / PRGO混合电池型电极具有出色的电化学性能,具有高电容(1090V(-1),2Ag(-1)),速率差效(76.1%)电容可以保留2至20 A g(-1))并增强循环稳定性。此外,使用NicO2S4 / PRGO杂交作为正极和活性炭(AC)作为负电极制造HSC器件,其在高功率密度为446.5wkg(-1)的突出能量密度为27.5WH kg(-1)(-1 )。 PA的利用可以为电化学或电催化应用提供过渡金属硫化物/ PRGO杂种设计的新途径。

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