Yousaf Sheraz, Zulfiqar Sonia, Khalid Muhammad Usman, Warsi Muhammad Farooq, Shakir Imran, Shahid Muhammad, Ahmad Iqbal, Cochran Eric W
Institute of Chemistry, Baghdad-ul-Jadeed Campus, The Islamia University of Bahawalpur Bahawalpur 63100 Pakistan
Department of Chemistry, Faculty of Science, University of Ostrava 30. Dubna 22 Ostrava 701 03 Czech Republic.
RSC Adv. 2024 May 22;14(24):16661-16677. doi: 10.1039/d4ra01907e.
This study explores the iodine and nickel-doped cobalt hydroxide (I & Ni-co-doped-Co(OH)) as a potential material for energy storage and conversion applications owing to its excellent electrochemical characteristics. According to our analysis, it was revealed that this material exhibits pseudocapacitive-like behavior, as evident from distinct redox peaks observed in cyclic voltammetry, which confirms its ability to store charges. The diffusion coefficient analysis reveals that this material possesses conductivity and rapid diffusion kinetics, making it particularly advantageous compared to materials synthesized in previous studies. Charge-discharge measurements were performed to analyze the charge storage capacity and stability of this material after 3000 consecutive cycles, showing its excellent stability with minimum loss of capacitance. Furthermore, its anodic and cathodic linear sweep voltammetry curves were measured to evaluate its oxygen evolution and hydrogen evolution reaction performance. The results showed that the material exhibited an excellent water splitting performance, which suggests its potential practical application for hydrogen production. This increased activity was attributed to the doping of α-Co(OH), which improved its structural stability, electrical conductivity, and charge transfer efficiency. Thus, I & Ni-co-doped-Co(OH) possesses enhanced properties that make it an excellent material for both energy storage and hydrogen generation applications.
本研究探索了碘和镍掺杂的氢氧化钴(I&Ni共掺杂Co(OH)),因其优异的电化学特性,它是一种有潜力用于能量存储和转换应用的材料。根据我们的分析,结果表明这种材料表现出类似赝电容的行为,从循环伏安法中观察到的明显氧化还原峰可以看出,这证实了其存储电荷的能力。扩散系数分析表明,这种材料具有导电性和快速扩散动力学,与先前研究中合成的材料相比,这使其具有特别的优势。进行了充放电测量,以分析这种材料在连续3000次循环后的电荷存储容量和稳定性,结果显示其具有出色的稳定性,电容损失最小。此外,测量了其阳极和阴极线性扫描伏安曲线,以评估其析氧和析氢反应性能。结果表明,该材料表现出优异的水分解性能,这表明其在制氢方面具有潜在的实际应用价值。这种活性的提高归因于α-Co(OH)的掺杂,它提高了材料的结构稳定性、导电性和电荷转移效率。因此,I&Ni共掺杂Co(OH)具有增强的性能,使其成为能量存储和制氢应用的优异材料。