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Acetylenic bond-driven efficient hydrogen production of a graphdiyne based catalyst

机译:乙炔的bond-driven高效氢基于graphdiyne催化剂的生产

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The presence of acetylenic bonds in graphdiyne (GDY) endow this type of carbon allotrope with high intrinsic catalytic activity, which is significantly superior to traditional carbon materials. Here, a synthetic strategy has been developed to study the influence of active acetylenic bond ratio and spatial distribution on the hydrogen evolution reaction (HER) catalytic performance. Two kinds of GDY, namely tetraphenylmethane-graphdiyne (TPM-GDY) and triphenylamine-graphdiyne (TPN-GDY), have been rationally synthesized via a bottom-to-up synthetic strategy. From the structural view, both TPM-GDY and TPN-GDY possess the 1,4-diphenylbuta-1,3-diyne skeleton composed of electrocatalytic active sp carbon. TPM-GDY possesses more active sp carbon exposed to the surface than TPN-GDY, which makes the TPM-GDY electrode exhibit better HER performance. Besides, some other properties of GDY- based carbon materials such as morphology, surface area, and pore distribution can also be efficiently adjusted. The above-mentioned results indicate that the distribution of active sites in the carbon framework plays a critical role in improving the catalytic performances, which offers a new strategy for creating highly active and stable electrocatalysts.
机译:的存在在graphdiyne乙炔的债券(GDY)赋予这种类型的碳同素异形体内在的催化活性高,这是明显优于传统的碳材料。研究开发活动的影响乙炔的债券比例和空间分布(她)催化氢进化反应的性能。tetraphenylmethane-graphdiyne (TPM-GDY)和triphenylamine-graphdiyne (TPN-GDY)理性通过bottom-to-up合成合成策略。TPM-GDY和TPN-GDY拥有1、4-diphenylbuta-1 3-diyne骨架组成的sp碳electrocatalytic活跃。拥有更积极的sp碳接触比TPN-GDY表面,使TPM-GDY电极表现出更好的性能。除此之外,其他的属性GDY——的基础碳材料,如形态、表面区域和孔隙分布也可以有效地调整。表明,活跃的站点的分布碳框架发挥了至关重要的作用改善催化性能,提供了一个创建高度活跃的新战略和稳定的electrocatalysts。

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