New Approach to Synthesizing Cathode PtCo/C Catalysts for Low-Temperature Fuel Cells

被引:1
|
作者
Belenov, Sergey [1 ,2 ]
Mauer, Dmitriy [1 ,2 ]
Moguchikh, Elizabeth [1 ,2 ]
Gavrilova, Anna [1 ]
Nevelskaya, Alina [1 ,3 ]
Beskopylny, Egor [1 ,2 ]
Pankov, Ilya [4 ]
Nikulin, Aleksey [3 ]
Alekseenko, Anastasia [1 ,2 ]
机构
[1] Southern Fed Univ, Fac Chem, 7 Zorge St, Rostov Na Donu 344090, Russia
[2] Prometheus R&D LLC, 4G-36 Zhmaylova St, Rostov Na Donu 344091, Russia
[3] Russian Acad Sci SSC RAS, Fed State Budgetary Inst Sci, Southern Sci Ctr, Fed Res Ctr, 41 Chekhova St, Rostov Na Donu 344006, Russia
[4] Southern Fed Univ, Res Inst Phys Organ Chem, 194-2 Stachki St, Rostov Na Donu 344090, Russia
关键词
catalyst synthesis; PEMFC; electrocatalyst activity; PtCo/C; composite support; oxygen electroreduction; ESA; MEA; OXYGEN REDUCTION REACTION; SOLVOTHERMAL SYNTHESIS; NANOPARTICLES; EFFICIENT; CO; ELECTROCATALYSTS; STABILITY; CU; SURFACE; ORIGIN;
D O I
10.3390/nano14100856
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The presented study is concerned with a new multi-step method to synthesize PtCo/C materials based on composite CoxOy/C that combines the advantages of different liquid-phase synthesis methods. Based on the results of studying the materials at each stage of synthesis with the TG, XRD, TEM, SEI, TXRF, CV and LSV methods, a detailed overview of the sequential changes in catalyst composition and structure at each stage of the synthesis is presented. The PtCo/C catalyst synthesized with the multi-step method is characterized by a uniform distribution of bimetallic nanoparticles of about 3 nm in size over the surface of the support, which result in its high ESA and ORR activity. The activity study for the synthesized PtCo/C catalyst in an MEA showed better current-voltage characteristics and a higher maximum specific power compared with an MEA based on a commercial Pt/C catalyst. Therefore, the results of the presented study demonstrate high prospects for the developed approach to the multi-step synthesis of PtM/C catalysts, which may enhance the characteristics of proton-exchange membrane fuel cells (PEMFCs).
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页数:16
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