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富含铜量子点的石墨炔纳米管的制备及其支撑效应

Preparation and Support Effect of Graphdiyne Nanotubes with Abundant Cu Quantum Dots.

作者信息

Lv Yan, Wang Wenzhou, Li Zhangwei, Liang Fucang

机构信息

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, College of Chemistry, Xinjiang University, Urumqi 830017, China.

出版信息

Molecules. 2024 Mar 21;29(6):1410. doi: 10.3390/molecules29061410.

Abstract

Graphdiyne (GDY) is considered a very attractive support for metal nanocatalysts due to its unique structure and superior properties. The metal-GDY interaction can significantly affect the performance of catalysts. Herein, GDY nanotubes abundant in in situ formed Cu quantum dots (QDs) (Cu-GDYNT) are prepared using the electrospun polyacrylonitrile nanofibers collected on the surface of electrolytic Cu foil as templates. The diameter of the Cu-GDYNT is controllable and the uniform size of the embedded Cu QDs is about 2.2 nm. And then, the uniformly dispersed and highly active supported catalysts of ruthenium nanoparticles (Ru/Cu-GDYNT) are produced using the Cu-GDYNT as the support. Among them, the Ru/Cu-GDYNT exhibit outstanding HER performance at all pH levels. Only 17, 67 and 83 mV overpotential is required to reach a current density of 10 mA cm in 1.0 M KOH, 0.5 M HSO and 1.0 M neutral PBS solutions, respectively. The sample exhibits 3000 CV cycle stability and 20 h continuous electrolysis without performance degradation in an alkaline medium. This work provides a new idea for constructing the GDY-supported metal nanocatalysts.

摘要

由于其独特的结构和优异的性能,石墨炔(GDY)被认为是金属纳米催化剂极具吸引力的载体。金属与GDY的相互作用会显著影响催化剂的性能。在此,以收集在电解铜箔表面的静电纺聚丙烯腈纳米纤维为模板,制备了原位形成大量铜量子点(QDs)的GDY纳米管(Cu-GDYNT)。Cu-GDYNT的直径可控,嵌入的铜量子点尺寸均匀,约为2.2纳米。然后,以Cu-GDYNT为载体,制备了均匀分散且活性高的负载型钌纳米颗粒催化剂(Ru/Cu-GDYNT)。其中,Ru/Cu-GDYNT在所有pH值水平下均表现出出色的析氢反应(HER)性能。在1.0 M KOH、0.5 M H₂SO₄和1.0 M中性PBS溶液中,分别仅需17、67和83 mV的过电位即可达到10 mA cm⁻²的电流密度。该样品在碱性介质中表现出3000次循环伏安(CV)稳定性和20小时连续电解且性能无降解。这项工作为构建GDY负载型金属纳米催化剂提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c986/10974350/a161344a829e/molecules-29-01410-g001.jpg

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