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首页> 外文期刊>Materials Chemistry Frontiers >Ultrasound irradiation mediated preparation of antimony sulfoiodide (SbSI) nanorods as a high-capacity electrode for electrochemical supercapacitors
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Ultrasound irradiation mediated preparation of antimony sulfoiodide (SbSI) nanorods as a high-capacity electrode for electrochemical supercapacitors

机译:超声辐照制备介导的锑sulfoiodide (SbSI)纳米棒作为高容量电极对于电化学超级电容器

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摘要

Nanostructured metal chalco-iodides are a new family of materials that possess numerous merits in the energy harvesting and conversion sectors. In this study, we demonstrate the use of antimony sulfoiodide (SbSI) nanorods for electrochemical energy storage device applications in both aqueous and ionic liquid-based electrolytes. The SbSI nanorods were prepared by a smart ultrasound mediated synthesis route and physico-chemical characterization suggested the formation of orthorhombic phase SbSI nanorods. The electrochemical energy storage properties of the SbSI nanorods in aqueous electrolyte (1 M NaOH) were evaluated using a half-cell test (three-electrode configuration) suggesting the presence of faradaic dominated charge-storage properties. The SbSI electrode delivered a high specific capacity of 258.68 mAh g1 estimated from the charge-discharge (CD) measurement with a better electrochemical stability over 3000 cycles and a good capacitance retention of 91.4%. Furthermore, SbSI symmetric super- capacitor (SSC) in the form of a CR-2032 coin cell with 1 M TEABF4 electrolyte showed good electrochemical capacitive properties over a voltage window of 3.0 to +3.0 V with low equivalent series resistance. The SbSI electrode possesses a high capacitance of 161.16 F g1 (in 1 M TEABF4 electrolyte) determined from CD analysis and this value is higher as compared to the state of the art of non-carbon- based electrode materials utilizing ionic electrolytes. The collective experimental studies suggested the promising use of SbSI nanorods as a novel electrode for supercapacitors for the first time which will be beneficial towards the development of next-generation integrated energy devices.
机译:纳米金属chalco-iodides是新的家庭的材料具有许多优点在能源采集和转换行业。在这项研究中,我们将演示使用锑sulfoiodide (SbSI)纳米电化学能源存储设备的应用程序水和离子液态电解质。SbSI纳米棒是由一个聪明的超声波介导的合成路线和物化描述建议的形成斜方晶系的阶段SbSI纳米棒。电化学储能的特性SbSI纳米棒在水溶液电解质(1 M氢氧化钠)评估使用半电池的测试吗(三电极配置)暗示感应电流的电荷存储为主属性。258.68 mAh g1估计的具体能力的充放电(CD)测量更好的电化学稳定超过3000周期和良好的电容保留91.4%。此外,SbSI对称超级电容器(SSC)的形式cr - 2032硬币细胞1 MTEABF4电解液表现出良好的电化学电容的电压窗口属性3.0 + 3.0 V低等效串联阻力。电容TEABF4 161.16 F g1(1米电解液)从CD分析和决定价值比较高的状态基于无碳的电极材料的艺术利用离子电解质。实验研究表明,承诺使用的SbSI纳米棒作为一种新型电极超级电容器将首次对的发展有益新一代综合能源设备。

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