The trifunctional electrocatalytic activity of hierarchically structured porous carbon derived from environmentally malignant Prosopis juliflora

IF 3.1 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Sathyanarayanan Shanmugapriya , Mariappan Ganeshbabu , Subramani Surendran , Yun Sung Lee , Ramakrishnan Kalai Selvan
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Abstract

Finding an efficient and affordable multifunctional electrocatalyst with long-term durability has received paramount interest in the recent scenario. The present work attempted to facilitate ecologically threatful invasive biomass – P. juliflora- derived porous carbon as an effectual Pt support for trifunctional electrocatalytic applications. The preparation of Pt decorated P. juliflora -derived porous carbon (Pt/J-600, Pt/J-700, and Pt/J-800) involves simple hydrothermal carbonization, pyrolysis at various temperatures of 600, 700 & 800⁰C and polyol mediated reduction. The obtained XRD results reveal the turbostratic nature of the prepared porous carbon favoring to anchor the Pt NPs. Significantly, the estimated ID/IG ratios of Raman profile substantiates the highly defective structure of Pt/J-800. The TEM images disclose the agglomeration-free dispersion of Pt NPs in the Pt/J-800 electrocatalyst. The EIS analysis demonstrates the relatively low solution and charge transfer resistances (Rs = 0.646 Ω & Rct = 0.312 Ω). The desirable 4e- transfer with an improved limiting current density of -4.44 mA cm-2 signpost better oxygen reduction reaction (ORR) performance of Pt/J-800 than the other prepared electrocatalysts. Additionally, the high electrochemical surface area (652.72 m2 g-1) and good mass activity (49.09 mA mgpt-1) prove the excellent methanol oxidation reaction (MOR) activity. Moreover, a minimal overpotential of 31 mV @ 10 mA/cm2, and a lower Tafel slope of 32 mV/dec with 24 hr stable performance proved the efficient hydrogen evolution reaction (HER) performance of Pt/J-800. The remarkable electrochemical performance of Pt/J-800 is attributed to the enhanced surface area created by hierarchically porous carbon support and the uniform dispersion of Pt nanoparticles with optimum loading.
从环境恶劣的茜草中提取的分层结构多孔碳的三功能电催化活性
近年来,寻找一种高效且价格合理、具有长期耐久性的多功能电催化剂受到了广泛关注。本研究试图将具有生态威胁的入侵生物质--鹅掌楸--衍生多孔碳作为一种有效的铂载体,用于三功能电催化应用。Pt/J-600 、Pt/J-700 和 Pt/J-800)的制备包括简单的水热碳化、600、700 & 800⁰C不同温度下的热解和多元醇介导的还原。获得的 XRD 结果表明,制备的多孔碳具有有利于锚定铂 NPs 的涡流性质。值得注意的是,拉曼图谱中估计的 ID/IG 比率证实了 Pt/J-800 的高度缺陷结构。TEM 图像显示,铂 NPs 在 Pt/J-800 电催化剂中无团聚分散。EIS 分析表明,该催化剂具有相对较低的溶液电阻和电荷转移电阻(Rs = 0.646 Ω & Rct = 0.312 Ω)。与其他制备的电催化剂相比,Pt/J-800 的氧还原反应(ORR)性能更好,4e-转移效果理想,极限电流密度提高到 -4.44 mA cm-2。此外,高电化学表面积(652.72 m2 g-1)和良好的质量活性(49.09 mA mgpt-1)也证明了其出色的甲醇氧化反应(MOR)活性。此外,Pt/J-800 的过电位(31 mV @ 10 mA/cm2)极小,Tafel 斜率(32 mV/dec)较低,且 24 小时性能稳定,证明了其高效的氢进化反应(HER)性能。Pt/J-800 的卓越电化学性能归功于分层多孔碳支撑所产生的更大表面积,以及最佳负载的铂纳米粒子的均匀分散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Carbon Trends
Carbon Trends Materials Science-Materials Science (miscellaneous)
CiteScore
4.60
自引率
0.00%
发文量
88
审稿时长
77 days
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