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Nanostructured Carbon Materials as Supports in the Preparation of Direct Methanol Fuel Cell Electrocatalysts

机译:纳米结构碳材料作为直接甲醇燃料电池电催化剂制备的载体

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Different advanced nanostructured carbon materials, such as carbon nanocoils, carbon nanofibers, graphitized ordered mesoporous carbons and carbon xerogels, presenting interesting features such as high electrical conductivity and extensively developed porous structure were synthesized and used as supports in the preparation of electrocatalysts for direct methanol fuel cells (DMFCs). The main advantage of these supports is that their physical properties and surface chemistry can be tailored to adapt the carbonaceous material to the catalytic requirements. Moreover, all of them present a highly mesoporous structure, diminishing diffusion problems, and both graphitic character and surface area can be conveniently modified. In the present work, the influence of the particular features of each material on the catalytic activity and stability was analyzed. Results have been compared with those obtained for commercial catalysts supported on Vulcan XC-72R, Pt/C and PtRu/C (ETEK). Both a highly ordered graphitic and mesopore-enriched structure of these advanced nanostructured materials resulted in an improved electrochemical performance in comparison to the commercial catalysts assayed, both towards CO and alcohol oxidation.
机译:合成了各种先进的纳米结构碳材料,例如碳纳米线圈,碳纳米纤维,石墨化有序介孔碳和碳干凝胶,这些材料具有令人感兴趣的特性,如高电导率和广泛开发的多孔结构,并用作制备直接甲醇燃料的电催化剂的载体单元(DMFC)。这些载体的主要优点是可以调整其物理性质和表面化学性质,使碳质材料适应催化要求。而且,它们都具有高度介孔的结构,减少了扩散问题,并且可以方便地修饰石墨特性和表面积。在目前的工作中,分析了每种材料的特定特征对催化活性和稳定性的影响。将结果与在Vulcan XC-72R,Pt / C和PtRu / C(ETEK)上负载的商用催化剂获得的结果进行了比较。这些先进的纳米结构材料具有高度有序的石墨结构和中孔富集结构,与所测试的商业化催化剂相比,无论是针对CO氧化还是醇氧化,均能改善电化学性能。

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