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首页> 外文期刊>RSC Advances >Design and synthesis of Co(II)HMTAA-14/16 macrocycles and their nano-composites for oxygen reduction electrocatalysis
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Design and synthesis of Co(II)HMTAA-14/16 macrocycles and their nano-composites for oxygen reduction electrocatalysis

机译:Co(II)HMTAA-14/16宏γ及其纳米复合材料的设计和合成用于氧还原电常见

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摘要

The major concerns in the design of macrocycle based-ORR catalysts are: (i) understanding the macrocyclic, -conjugation, central metal and substituent effects on ORR electrocatalysis; and (ii) the use of macrocycles on the electrode surface for the retention of ORR activity because of their poor stability. In this work, we demonstrated the aromaticity/-electron conjugation effect on ORR activity by using the same macrocycles [HMTAA-14 and 16 (hexamethyltetraaza [14] and [16] annulenes)] with a difference in their macrocyclic cavity/-electron conjugation. The macrocycles Co(II)HMTAA-14 and Co(II)HMTAA-16 and their nanocomposites with highly conductive carbon black were prepared by a microwave-assisted method and characterized by using multiple spectroscopy techniques. Comparative redox and oxygen reduction activity studies of Co(II)HMTAA-14 and Co(II)HMTAA-16 were undertaken by using cyclic voltammetry and linear sweep voltammetry in an alkaline medium. The composite Co(II)HMTAA-16@C showed good ORR activity compared to Co(II)HMTAA-14@C in O-2-saturated KOH electrolyte. Since the Co(II)HMTAA-14 and Co(II)HMTAA-16 systems have a similar central atom and substituents, the shift of the ORR peak position in the +ive potential region for HMTAA-16 can be attributed to the difference in the size of the macrocyclic cavity (macrocyclic effect) and the extra stability of HMTAA-16 annulene due to its aromaticity.
机译:基于宏循环的宏循环设计的主要问题是:(i)了解宏环, - 谐波,中央金属和对ORR电闭合的取代基的影响; (ii)由于其稳定性差,在电极表面上使用宏细胞的使用以保持ORR活性。在这项工作中,我们通过使用相同的宏杂种[HMTAA-14和16(六甲基四唑[14]和[16]载环),证明了对ORR活性的芳香度/ - 电子缀合效果,其宏循环/ - 电子缀合的差异。通过微波辅助方法制备宏茂的CO(II)HMTAA-14和CO(II)HMTAA-16及其具有高导电炭黑的纳米复合材料,并通过使用多种光谱技术来表征。通过在碱性介质中使用循环伏安法和线性扫描伏安法进行CO(II)HMTAA-14和CO(II)HMTAA-16的对比氧化还原和氧还原活性研究。与O-2饱和KOH电解质中的CO(II)HMTAA-14-CO-C相比,复合CO(II)HMTAA-16 @ C表显示了良好的ORR活性。由于CO(II)HMTAA-14和CO(II)HMTAA-16系统具有类似的中央原子和取代基,因此HMTAA-16的+ IVE潜在区域中的ORR峰值位置的偏移可归因于差异宏环腔(大环效应)的尺寸和由于其芳香性引起的HMTAA-16环烯的额外稳定性。

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  • 来源
    《RSC Advances 》 |2019年第23期| 共6页
  • 作者单位

    Beijing Univ Chem Technol Beijing 100096 Peoples R China;

    GLA Univ Dept Chem Mathura 281406 UP India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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