Carbon-based metal-free catalysts

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作者
Xien Liu
Liming Dai
机构
[1] BUCT-CWRU International Joint Laboratory,Department of Macromolecular Science and Engineering
[2] State Key Laboratory of Organic-Inorganic Composites,undefined
[3] Center for Soft Matter Science and Engineering,undefined
[4] College of Energy,undefined
[5] Beijing University of Chemical Technology,undefined
[6] Center of Advanced Science and Engineering for Carbon (Case4Carbon),undefined
[7] Case Western Reserve University,undefined
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Metals and metal oxides are widely used as catalysts for materials production, clean energy generation and storage, and many other important industrial processes. However, metal-based catalysts suffer from high cost, low selectivity, poor durability, susceptibility to gas poisoning and have a detrimental environmental impact. In 2009, a new class of catalyst based on earth-abundant carbon materials was discovered as an efficient, low-cost, metal-free alternative to platinum for oxygen reduction in fuel cells. Since then, tremendous progress has been made, and carbon-based metal-free catalysts have been demonstrated to be effective for an increasing number of catalytic processes. This Review provides a critical overview of this rapidly developing field, including the molecular design of efficient carbon-based metal-free catalysts, with special emphasis on heteroatom-doped carbon nanotubes and graphene. We also discuss recent advances in the development of carbon-based metal-free catalysts for clean energy conversion and storage, environmental protection and important industrial production, and outline the key challenges and future opportunities in this exciting field.
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