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Efficient Co-N/PC@CNT bifunctional electrocatalytic materials for oxygen reduction and oxygen evolution reactions based on metal-organic frameworks

机译:高效的Co-N / PC@CNT双官能electrocatalytic材料氧气减少基于进化和氧气反应有机框架

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摘要

Cobalt-based, nitrogen-doped porous carbon materials with in situ grown carbon nanotubes (CNTs) were synthesized by the facile carbonization of porous 3D Bio-MOF-11 Co-2(ad)(2)(CH3COO)(2). 2DMF.0.5H(2)O (ad = adenine). Co-N/PC@CNT-Ts inherit the octahedral shape from the precursor, and have a porous structure with in situ grown CNTs catalyzed by Co particles. Co-N/PC@CNT-T materials have excellent activities as bifunctional electrocatalysts for oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) in 0.1 M KOH electrolyte. Among the Co-N/PC@CNT-Ts, Co-N/PC@CNT-700 has the highest electrocatalytic activity. For ORR, Co-N/PC@CNT-700 has a higher onset potential of 0.92 V vs. reversible hydrogen electrode (RHE), high stability and methanol tolerance, which are even better than that of Pt/C. For OER, it has a low potential of 1.63 V at a current density of 10 mA cm(-2). In addition, Co-N/PC@CNT-700 affords a low reversible overvoltage (bifunctional performance parameter) of 0.862 V between ORR and OER compared to the current advancing bifunctional catalysts. The superb bifunctional activity can be attributed to uniform CoNx active sites embedded in graphitized carbon, unique in situ grown CNT structure and ordered mesoporous structure. The synergistic effect enlarged the contact surface, exposed more active centers and provided many pathways, thereby boosting the electrocatalytic performance. In conclusion, this study provides a novel avenue for the application of stable transition metal-based, nitrogen-doped carbon materials as extremely efficient electrocatalysts for ORR and OER.
机译:钴,nitrogen-doped多孔碳材料原位生长碳纳米管(碳纳米管)是合成的肤浅碳化的多孔三维Bio-MOF-11[二氧化碳(广告)(2)(CH3COO)(2)]。腺嘌呤)。形状的前兆,多孔结构原位生长碳纳米管催化Co粒子。作为双官能electrocatalysts活动氧还原反应(ORR)和氧气在0.1 M KOH进化反应(OER)电解液。Co-N / pc@cnt - 700 electrocatalytic最高活动。开始0.92 V的潜力与可逆氢电极(流值)、高稳定性和甲醇宽容,甚至比这更好Pt / C。电流密度的马10厘米(2)。此外,Co-N / pc@cnt - 700提供低可逆的过电压(双官能团的性能0.862 V奥尔和OER之间的参数)而当前推进双官能催化剂。归功于制服CoNx活跃的网站嵌入石墨化碳,独特的原位CNT种植结构和有序介孔结构。中心和接触表面,接触更活跃提供了很多途径,从而增加了electrocatalytic性能。研究为应用程序提供了一个新颖的大道稳定的过渡金属,nitrogen-doped碳材料是非常有效的electrocatalysts奥尔和OER。

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