Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Posgrado en Ciencias en Nanociencias, Carretera Ensenada-Tijuana No. 3918, Zona Playitas, CP 22860, Ensenada, BC, Mexico.
Nanoscale. 2019 Feb 7;11(6):2829-2839. doi: 10.1039/c8nr08384c.
Herein, a series of N-doped carbon nanotube (CNx) samples were obtained by modifying the synthesis temperature. Consequently, the proportion of graphitic nitrogen (Ngraph) in the samples was systematically increased as a function of temperature. This allowed evaluation of the role of the CNx graphitic nitrogen in the oxygen reduction reaction (ORR). A correlation between the Ngraph content and the ORR onset potential was observed, which shifted to more positive potentials with an increase in kinetic current density (jk); this showed that Ngraph played a significant catalytic role in the ORR. The samples with high Ngraph content favored the two-electron pathway for the ORR not only in basic media (pH = 13) but also in neutral media (pH = 7), representing an attractive alternative for wastewater remediation through the on-site generation of H2O2. The energetic calculations showed that the formation of H2O2 must be favorable in the presence of graphitic nitrogen sites. Finally, the performance of the buckypaper arrangement was evaluated, and the CNx buckypaper showed a higher cathodic current peak as compared to CNx traditional ink dispersions. Overall, this study not only sheds light on the role of Ngraph in the ORR, but also demonstrates that CNx buckypaper is an efficient 3D electrode for electrocatalytic applications.
在此,通过改变合成温度得到了一系列氮掺杂碳纳米管(CNx)样品。因此,样品中石墨氮(Ngraph)的比例随着温度的升高而系统地增加。这使得可以评估 CNx 石墨氮在氧还原反应(ORR)中的作用。观察到 Ngraph 含量与 ORR 起始电位之间存在相关性,随着动力学电流密度(jk)的增加,起始电位向更正的方向移动;这表明 Ngraph 在 ORR 中发挥了重要的催化作用。高 Ngraph 含量的样品不仅在碱性介质(pH = 13)中,而且在中性介质(pH = 7)中有利于 ORR 的两电子途径,这代表了通过现场生成 H2O2 来修复废水的一种有吸引力的替代方法。能量计算表明,在存在石墨氮位的情况下,H2O2 的形成必须是有利的。最后,评估了 buckypaper 排列的性能,与 CNx 传统油墨分散体相比,CNx buckypaper 显示出更高的阴极电流峰值。总的来说,这项研究不仅阐明了 Ngraph 在 ORR 中的作用,还证明了 CNx buckypaper 是用于电催化应用的高效 3D 电极。