Highly active and porous graphene encapsulating carbon nanotubes as a non-precious oxygen reduction electrocatalyst for hydrogen-air fuel cells

Author:

Zamani Pouyan,Higgins Drew C.,Hassan Fathy M.,Fu Xiaogang,Choi Ja-Yeon,Hoque Md. Ariful,Jiang Gaopeng,Chen Zhongwei

Funder

University of Waterloo

Waterloo Institute for Nanotechnology

Natural Sciences and Engineering Research Council of Canada

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference44 articles.

1. Origin of the electrocatalytic oxygen reduction activity of graphene-based catalysts: a roadmap to achieve the best performance;Jiao;J. Am. Chem. Soc.,2014

2. Biomimetic design of monolithic fuel cell electrodes with hierarchical structures;Wang;Nano Energy,2016

3. Morphology and composition controlled platinum–cobalt alloy nanowires prepared by electrospinning as oxygen reduction catalyst;Higgins;Nano Energy,2014

4. Fuel Cell Technical Team Roadmap;Drive,2013

5. The application of graphene and its composites in oxygen reduction electrocatalysis: a perspective and review of recent progress;Higgins;Energy Environ. Sci.,2015

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