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Nanostructured Mn2O3/Pt/CNTs selective electrode for oxygen reduction reaction and methanol tolerance in mixed-reactant membraneless micro-DMFC
被引:39
作者:
Abrego-Martinez, J. C.
[1
]
Wang, Youling
[1
]
Moreno-Zuria, A.
[2
]
Wei, Qiliiang
[1
]
Cuevas-Muniz, F. M.
[2
]
Arriaga, L. G.
[2
]
Sun, Shuhui
[1
]
Mohamedi, Mohamed
[1
]
机构:
[1] Univ Rech, INRS, EMT, 1650 Blvd Lionel Boulet, Varennes, PQ J3X 1S2, Canada
[2] Ctr Invest & Desarrollo Tecnol Electroquim, Parque Tecnol Queretaro S-N, Pedro Escobedo 76703, Queretaro, Mexico
基金:
加拿大自然科学与工程研究理事会;
关键词:
Methanol-tolerant cathode;
Manganese oxide;
Mixed-reactant fuel cell;
Oxygen reduction;
Pulsed laser deposition;
FUEL-CELL;
PARTICLE-SIZE;
TIN OXIDE;
OXIDATION;
PLATINUM;
CARBON;
PERFORMANCE;
ELECTROOXIDATION;
NANOPARTICLES;
FABRICATION;
D O I:
10.1016/j.electacta.2018.11.199
中图分类号:
O646 [电化学、电解、磁化学];
学科分类号:
081704 ;
摘要:
Mixed-reactant microfluidic direct methanol fuel cells (MR-mu DMFCs) have the feature of achieving higher volumetric energy density in comparison with other DMFCs. The main challenge for the development of MR-mu DMFC arises from the need for selective electrocatalysts, especially for the oxygen reduction reaction (ORR). In the present work, we report the two-step synthesis of a binder-free Pt and Mn2O3 based catalyst by pulsed laser deposition. First an ultra-low loading Pt layer is deposited directly on carbon nanotubes and further coated with a porous Mn2O3 layer. The resulting binary material exhibits practically identical electrocatalytic activity to that of Pt towards ORR in alkaline media. Interestingly, it shows no activity for the methanol oxidation reaction (MOR), in contrast with Pt. Furthermore, the Mn2O3/Pt cathode demonstrates to be tolerant to methanol concentration as high as 5M. The results suggest that the superficial Mn2O3 component discriminates between the molecular size of O-2 and MeOH, allowing the former to reach the inner Pt layer and impeding the diffusion of the latter. The RRDE studies reveal that the ORR on both Pt/CNTs and Mn2O3/Pt/CNTs, is carried out through a 3.9 electron transfer. Lastly, the bilayer cathode is tested in a membraneless micro direct methanol fuel cell (ML mu DMFC) under mixed-reactant conditions, producing an OCV of 0.54 V and a maximum power density of 2.16 mW cm(-2). (c) 2018 Elsevier Ltd. All rights reserved.
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页码:230 / 239
页数:10
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