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石墨烯结构对Pt/石墨烯催化剂的催化作用。

Catalytic effects of graphene structures on Pt/graphene catalysts.

作者信息

Du Zhenzhen, Yu Fan, Wang Jun, Li Jiongli, Wang Xudong, Qian Aniu

机构信息

AECC Beijing Institute of Aeronautical Materials Beijing 100095 China

Beijing Institute of Graphene Technology Beijing 100094 China.

出版信息

RSC Adv. 2024 Jul 16;14(31):22486-22496. doi: 10.1039/d4ra02841d. eCollection 2024 Jul 12.

Abstract

Pt/C catalysts have been considered the ideal cathodic catalyst for proton exchange membrane fuel cells (PEMFCs) due to their superior oxygen reduction reaction (ORR) catalytic activity at low temperatures. However, oxidation and corrosion of the carbon black support at the cathode result in the agglomeration of Pt particles, which reduces the active sites in the Pt/C catalyst. Graphene supports have shown great promise to address this issue, and therefore, finding out the main structural features of the graphene support is of great significance for guiding the rational construction of graphene-based Pt (Pt/graphene) catalysts for optimized ORR catalysts. In order to systematically study the influence of the structural features of the graphene support on the electro-catalytic properties of Pt/graphene catalysts, we prepared porous nitrogen-doped reduced graphene oxide (P-NRGO), nitrogen-doped reduced graphene oxide (NRGO), treated P-NRGO (TP-NRGO) and reduced graphene oxide (RGO) with different nitrogen species contents (7.76, 7.54, 3.24, and 0.14 at%), oxygen species contents (18.68, 18.12, 6.34 and 21.12 at%), specific surface areas (370.4, 70.6, 347.7 and 276.2 m g) and pore volumes (1.366, 0.1424, 1.3299 and 1.0414 cm g). The ORR activity of the four Pt/graphene catalysts when listed in the order of their half-wave potentials ( ) and peak power densities was found to be as Pt/P-NRGO > Pt/NRGO > Pt/TP-NRGO > Pt/RGO. The long-term durability of Pt/P-NRGO for the operation of H-air PEMFCs is better than that of commercial Pt/C catalysts. The excellent ORR catalytic performance of Pt/P-NRGO compared to that of the other three Pt/graphene catalysts is ascribed to the high nitrogen species content of P-NRGO that can facilitate the uniform dispersion of Pt particles and provide accessible active sites for ORR. The results indicate that the specific surface area (SSA) and heteroatom dopants have strong influence on the Pt particle size, and that the nitrogen species of graphene supports play a more important role than the oxygen species, specific surface area and pore volume for the Pt/graphene catalysts in providing accessible active sites.

摘要

由于Pt/C催化剂在低温下具有优异的氧还原反应(ORR)催化活性,因此被认为是质子交换膜燃料电池(PEMFC)理想的阴极催化剂。然而,阴极处炭黑载体的氧化和腐蚀会导致Pt颗粒团聚,从而减少Pt/C催化剂中的活性位点。石墨烯载体在解决这一问题方面显示出巨大潜力,因此,找出石墨烯载体的主要结构特征对于指导合理构建基于石墨烯的Pt(Pt/石墨烯)催化剂以优化ORR催化剂具有重要意义。为了系统研究石墨烯载体的结构特征对Pt/石墨烯催化剂电催化性能的影响,我们制备了具有不同氮物种含量(7.76、7.54、3.24和0.14 at%)、氧物种含量(18.68、18.12、6.34和21.12 at%)、比表面积(370.4、70.6、347.7和276.2 m²/g)和孔体积(1.366、0.1424、1.3299和1.0414 cm³/g)的多孔氮掺杂还原氧化石墨烯(P-NRGO)、氮掺杂还原氧化石墨烯(NRGO)、处理后的P-NRGO(TP-NRGO)和还原氧化石墨烯(RGO)。按半波电位()和峰值功率密度排列的四种Pt/石墨烯催化剂的ORR活性顺序为Pt/P-NRGO > Pt/NRGO > Pt/TP-NRGO > Pt/RGO。Pt/P-NRGO在H-空气PEMFC运行中的长期耐久性优于商业Pt/C催化剂。与其他三种Pt/石墨烯催化剂相比,Pt/P-NRGO具有优异的ORR催化性能,这归因于P-NRGO的高氮物种含量,其可以促进Pt颗粒的均匀分散并为ORR提供可及的活性位点。结果表明,比表面积(SSA)和杂原子掺杂剂对Pt颗粒尺寸有很大影响,并且对于Pt/石墨烯催化剂在提供可及活性位点方面,石墨烯载体的氮物种比氧物种、比表面积和孔体积起着更重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e851/11251395/72adefdab58b/d4ra02841d-f1.jpg

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