School of Chemistry and Chemical Engineering, University of Jinan, Jinan, Shandong 250022, P. R. China.
Nanoscale. 2019 Sep 21;11(35):16599-16605. doi: 10.1039/c9nr05363h. Epub 2019 Aug 28.
Nitrogen doped graphdiyne (NGDY) has been reported to have comparable oxygen reduction reaction (ORR) performance to Pt-based catalysts. However, the source of this enhanced ORR performance is not clearly understood. Herein, density functional theory calculations were performed to study the detailed ORR process on NGDY. The theoretically predicted overpotential (η) of GDY materials was 0.442 V, which is comparable to that of Pt-based catalysts, suggesting that GDY is a candidate for non-expensive metal-free ORR catalyst. Our results revealed that the good ORR performance of NGDY originates from the synergy of sp-N and sp-N, which rules out the experimental proposal that sp-N doping is the dominating factor. Our results further suggest that local positive charge is not a definite descriptor to predict the ORR performance of GDY; instead ΔG shows a better correlation with performance. Furthermore, it was revealed that the adsorption site is crucial for determining ORR performance, which should not be ignored to fully understand the catalytic activity of GDY-based materials.
氮掺杂石墨炔(NGDY)被报道具有与基于铂的催化剂相当的氧还原反应(ORR)性能。然而,这种增强的 ORR 性能的来源尚不清楚。在此,通过密度泛函理论计算研究了 NGDY 上详细的 ORR 过程。理论预测 GDY 材料的过电势(η)为 0.442 V,与基于铂的催化剂相当,这表明 GDY 是一种有前途的非贵金属免费 ORR 催化剂。我们的结果表明,NGDY 的良好 ORR 性能源于 sp-N 和 sp-N 的协同作用,这排除了 sp-N 掺杂是主要因素的实验假设。我们的结果进一步表明,局部正电荷不是预测 GDY 的 ORR 性能的明确描述符;相反,ΔG 与性能具有更好的相关性。此外,研究结果表明,吸附位点对于确定 ORR 性能至关重要,在充分理解 GDY 基材料的催化活性时不应忽视这一点。