4.8 Article

Effects of transition metal doping in Pt/M-TiO2 (M = V, Cr, and Nb) on oxygen reduction reaction activity

期刊

JOURNAL OF POWER SOURCES
卷 320, 期 -, 页码 188-195

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2016.04.019

关键词

PEMFC; TiO2; Metal-support interaction; EXAFS; ORR; Durability

资金

  1. National Research Foundation (NRF) of Korea [2015M1A2A2056556, 2015R1A2A1A10056156, 2013M1A8A1040703]
  2. Nano-Convergence Foundation [R201500910]
  3. Korea Institute of Energy Technology Evaluation and Planning (KETEP) grant [20153030031510]
  4. Korea Evaluation Institute of Industrial Technology (KEIT) [20153030031510, R201500910] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  5. National Research Foundation of Korea [2015R1A2A1A10056156, 2013M1A8A1040703, R201600510] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

High cost and low durability are unresolved issues that impede the commercialization of proton exchange membrane fuel cells (PEMFCs). To overcome these limitations, Pt/TiO2 is reported as an alternative electrocatalyst for enhancing the oxygen reduction reaction (ORR) activity and/or durability of the system. However, the low electrical conductivity of TiO2 is a drawback that may be addressed by doping. To date, most reports related to Pt/doped-TiO2 focus on changes in the catalyst activity caused by the Pt-TiO2 interaction (metal -support interaction), instead of the effect of doping itself; doping is merely considered to enhance the electrical conductivity of TiO2. In this study, we discuss the variation in the electronic fine structure of Pt caused by the dopant, and its correlation with the ORR activity. More extensive contraction of the Pt lattice in Pt/M-TiO2 (M = V, Cr, and Nb) relative to Pt/TiO2 and Pt/C leads to outstanding ORR specific activity of Pt/M-TiO2. Notably, a fourfold increase of the specific activity is achieved with Pt/V-TiO2 relative to Pt/C. Furthermore, an accelerated durability test (ADT) of Pt/V-TiO2 demonstrates that this system is three times more durable than conventional Pt/C due to the metal support interaction. (C) 2016 Elsevier B.V. All rights reserved.

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