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Titanium nitride-carbon nanotube core-shell composites as effective electrocatalyst supports for low temperature fuel cells

机译:氮化钛-碳纳米管核-壳复合材料作为低温燃料电池的有效电催化剂载体

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摘要

Titanium nitride-carbon nanotube (TiN-CNT) core-shell nanocomposites were developed by a simplistic two step fabrication procedure and characterized by transmission electron microscopy, X-ray diffraction and thermogravimetric analysis. These materials were utilized as platinum nanoparticle electrocatalyst supports (Pt/TiN-CNT) for the oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR), two important low temperature fuel cell processes. Improved ORR and MOR activities were demonstrated for Pt/TiN-CNTs compared with state of the art commercial Pt/C. Moreover, enhanced CO tolerance towards the MOR was demonstrated attributed to the interaction occurring between adsorbed CO molecules and the TiN-CNT supports. TiN-CNTs are thus presented as highly promising, novel electrocatalyst support materials with enhanced ORR and MOR performance attributed to their anisotropic morphology, enhanced electronic properties and conductivity, and distinct catalyst-support interactions.
机译:氮化钛-碳纳米管(TiN-CNT)核-壳纳米复合材料通过简单的两步制备方法开发,并通过透射电子显微镜,X射线衍射和热重分析进行了表征。这些材料被用作铂纳米颗粒电催化剂载体(Pt / TiN-CNT),用于氧还原反应(ORR)和甲醇氧化反应(MOR),这是两个重要的低温燃料电池工艺。与现有的商业Pt / C相比,Pt / TiN-CNT的ORR和MOR活性得到了改善。此外,由于对吸附的CO分子和TiN-CNT载体之间发生相互作用,证明了CO对MOR的耐受性增强。因此,TiN-CNTs被认为是极有前途的新型电催化剂载体材料,其具有增强的ORR和MOR性能,这归因于其各向异性的形态,增强的电子性能和电导率以及独特的催化剂-载体相互作用。

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