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Enhancing cyclic voltammetry performance with N-graphene -supported coupled NiO/TiO_2 hollow nanospheres as superior anode material

机译:使用 N-石墨烯负载的耦合 NiO/TiO_2 空心纳米球作为优质负极材料提高循环伏安性能

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In this work, we aim to study and improve the electrochemical performance of a unique thin film-structured composite nitrogen-doped graphene (NGr) combined with NiO/TiO_2 hollow nanospheres coupled by synergistic hydrothermal method. NGr@NiO/TiO_2 nanocomposites have been successfully synthesized as indicated by their characteristics through several rational characterization techniques such as the morphological shape of NiO/TiO_2 hollow nanospheres that are evenly distributed on the surface of N-graphene with particle distribution in the range of 79.78-362.13 nm with an average diameter of 130 nm. In addition, the crystal structures of carbon from NGr, NiO, and TiO_2 (anatase and rutile) have been confirmed and proven by spectra showing the presence of C-N stretching primary amides (1400 cm~(-1)), Ni-O stretching (700 cm~(-1)) and Ti-O-Ti bond (425 cm~(-1)), respectively. To enhance the performance of cyclic voltammetry (CV) in electrochemical testing, adjustments are made to parameters such as cycle effect, scan rate, and composition, ensuring the production of reversible voltammograms under each condition. The results indicate that reversible voltammograms are observed under each condition, with a composite ratio of 80:15:5 (wt). Slower scan rates are associated with higher specific capacity (Cps), with the Cps values for the NGr@NiO/TiO_2 electrode being 741.02 F/g (80:10:10), 408.53 F/g (80:5:10), and 839.83 F/g (80:15:5), respectively. However, the highest Cps is recorded for NGr@NiO at 1959.71 F/g. Based on these findings, it is revealed that further comprehensive electrochemical testing of the NGr@NiO/TiO_2 nanocomposite is necessary, to fully explore its potential and applicability in the development of alkaline ion batteries (AIBs) such as Li/Na/K.
机译:在这项工作中,我们旨在研究和提高独特的薄膜结构复合氮掺杂石墨烯 (NGr) 与协同水热法耦合的 NiO/TiO_2 空心纳米球的电化学性能。NGr@NiO/TiO_2 纳米复合材料通过几种合理的表征技术成功合成,如均匀分布在 N-石墨烯表面的 NiO/TiO_2 空心纳米球的形态形状,颗粒分布在 79.78-362.13 nm 范围内,平均直径为 130 nm。此外,NGr、NiO 和 TiO_2 碳(锐钛矿和金红石)的晶体结构已经通过光谱分别显示存在 C-N 拉伸伯酰胺 (1400 cm~(-1))、Ni-O 拉伸 (700 cm~(-1)) 和 Ti-O-Ti 键 (425 cm~(-1)) 得到证实和证明。为了提高循环伏安法 (CV) 在电化学测试中的性能,对循环效应、扫描速率和成分等参数进行了调整,以确保在每种条件下都能生成可逆伏安图。结果表明,在每种条件下均可观察到可逆伏安图,复合比为 80:15:5 (wt%)。较慢的扫描速率与较高的比容量 (Cps) 相关,NGr@NiO/TiO_2 电极的 Cps 值分别为 741.02 F/g (80:10:10)、408.53 F/g (80:5:10) 和 839.83 F/g (80:15:5)。然而,NGr@NiO 的最高 Cps 记录为 1959.71 F/g。基于这些发现,揭示了有必要对 NGr@NiO/TiO_2 纳米复合材料进行进一步的全面电化学测试,以充分探索其在 Li/Na/K 等碱性离子电池 (AIB) 开发中的潜力和适用性。

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