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Ultrathin graphitic carbon nitride nanosheets and graphene composite material as high-performance PtRu catalyst support for methanol electro-oxidation

机译:超薄石墨氮化碳纳米片和石墨烯复合材料,作为高性能PtRu催化剂,用于甲醇电氧化

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摘要

Graphitic carbon nitride (g-C3N4) has been demonstrated as an advanced support material for Pt nanoparticles (NPs) due to its excellent stability and abundant Lewis acid for anchoring metal NPs. However, its non-conductive nature and low surface areas still impede its application in electrochemical fields. Herein, a pi-pi stacking method is presented to prepare graphene/ultrathin g-C3N4 nanosheets composite support for PtRu catalyst. The weaknesses of g-C3N4 are greatly overcome by establishing a 2D layered structure. The significantly enhanced performance for this novel PtRu catalyst is ascribed to reasons as follows: the homogeneous dispersion of PtRu NPs on g-C3N4 nanosheets due to its abundant Lewis acid sites for anchoring PtRu NPs; the excellent mechanical resistance and stability of g-C3N4 nanosheets in acidic and oxidative environments; the increased electron conductivity of support by forming a layered structure and the strong metal-support interaction (SMSI) between metal NPs and g-C3N4 NS. (C) 2015 Elsevier Ltd. All rights reserved.
机译:石墨碳氮化物(g-C3N4)由于其出色的稳定性和丰富的路易斯酸可锚定金属NP而被证明是Pt纳米颗粒(NP)的先进载体材料。但是,它的非导电性质和低表面积仍然阻碍了它在电化学领域的应用。在本文中,提出了一种π-π堆积方法来制备用于PtRu催化剂的石墨烯/超铀g-C3N4纳米片复合载体。通过建立二维分层结构,可以大大克服g-C3N4的弱点。这种新型PtRu催化剂性能的显着提高归因于以下原因:由于PtRu NP具有固定PtRu NP的丰富的路易斯酸位,因此其在g-C3N4纳米片上的均匀分散。 g-C3N4纳米片在酸性和氧化性环境中具有出色的机械耐受性和稳定性;通过形成层状结构和金属NP与g-C3N4 NS之间的强金属-载体相互作用(SMSI),提高了载体的电子电导率。 (C)2015 Elsevier Ltd.保留所有权利。

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