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氮掺杂碳/镍钴合金活性纳米复合材料电化学性能研究。

Insight into Electrochemical Performance of Nitrogen-Doped Carbon/NiCo-Alloy Active Nanocomposites.

机构信息

Department of Chemistry, College of Sciences, Nanjing Agricultural University, Nanjing, 210095, P. R. China.

Key Laboratory of Advanced Functional Materials of Nanjing, School of Environmental Science, Nanjing Xiaozhuang University, Nanjing, Jiangsu, 211171, P. R. China.

出版信息

Small. 2023 Jun;19(23):e2300054. doi: 10.1002/smll.202300054. Epub 2023 Mar 6.

DOI:10.1002/smll.202300054
PMID:36879474
Abstract

Nanocomposites containing Ni or Co or NiCo alloy and nitrogen-doped carbon with diverse ratios have been prepared and utilized as active elements in supercapacitors. The atomic contents of nitrogen, nickel, and cobalt have been adjusted by the supplement amount of Ni and Co salts. In virtue of the excellent surface groups and rich redox active sites, the NC/NiCo active materials exhibit superior electrochemical charge-storage performances. Among these as-prepared active electrode materials, the NC/NiCo1/1 electrode performs better than other bimetallic/carbon electrodes and pristine metal/carbon electrodes. Several characterization methods, kinetic analyses, and nitrogen-supplement strategies determine the specific reason for this phenomenon. As a result, the better performance can be ascribed to a combination of factors including the high surface area and nitrogen content, proper Co/Ni ratio, and relatively low average pore size. The NC/NiCo electrode delivers a maximum capacity of 300.5 C g and superior capacity retention of 92.30% after 3000 unceasing charge-discharge cycles. After assembling it into the battery-supercapacitor hybrid device, a high energy density of 26.6 Wh kg (at 412 W kg ) is achieved, comparable to the recent reports. Furthermore, this device can also power four light-emitting-diode (LED) demos, suggesting the potential practicability of these N-doped carbon compositing with bimetallic materials.

摘要

已经制备了含有 Ni 或 Co 或 NiCo 合金和不同比例氮掺杂碳的纳米复合材料,并将其用作超级电容器中的活性元件。通过补充 Ni 和 Co 盐的量来调整氮、镍和钴的原子含量。由于具有优异的表面基团和丰富的氧化还原活性位点,NC/NiCo 活性材料表现出优异的电化学电荷存储性能。在这些制备的活性电极材料中,NC/NiCo1/1 电极比其他双金属/碳电极和原始金属/碳电极表现更好。几种表征方法、动力学分析和氮补充策略确定了这种现象的具体原因。结果,更好的性能可以归因于包括高表面积和氮含量、适当的 Co/Ni 比以及相对较低的平均孔径在内的多种因素的结合。NC/NiCo 电极在 3000 次不间断充放电循环后提供了 300.5 C g 的最大容量和 92.30%的优异容量保持率。将其组装到电池-超级电容器混合装置中后,可实现 26.6 Wh kg 的高能量密度(在 412 W kg 时),可与最近的报道相媲美。此外,该装置还可以为四个发光二极管(LED)演示供电,表明这些氮掺杂碳与双金属材料的复合具有潜在的实用性。

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