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Nitrogen and carbon doped titanium oxide as an alternative and durable electrocatalyst support in polymer electrolyte fuel cells

机译:氮和碳掺杂的二氧化钛作为聚合物电解质燃料电池中的替代且耐用的电催化剂载体

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Nitrogen and carbon doped titanium oxide as an alternative and ultra-stable support to platinum catalysts is prepared and its efficiency is determined by polymer electrolyte fuel cell. Nitrogen and carbon doped titanium oxide is prepared by varying the melamine ratio followed by calcination at 900 degrees C. Platinum nanoparticles are deposited onto doped and undoped titanium oxide by colloidal method. The doping effect, surface morphology, chemical oxidation state and metal/metal oxide interfacial contact are studied by X-ray diffraction, Raman spectroscopy, high resolution transmission electron microscopy and X-ray photo electron spectroscopy. The nitrogen and carbon doping changes both electronic and structural properties of titanium oxide resulting in enhanced oxygen reduction reaction activity. The platinum deposited on optimum level of nitrogen and carbon doped titanium oxide exhibits improved cell performance in relation to platinum on titanium oxide electrocatalysts. The effect of metal loading on cathode electrocatalyst is investigated by steady-state cell polarization. Accelerated durability test over 50,000 cycles for these electrocatalysts suggested the improved interaction between platinum and nitrogen and carbon doped titanium oxide, retaining the electrochemical surface area and oxygen reduction performance as comparable to platinum on carbon support. (C) 2015 Elsevier B.V. All rights reserved.
机译:制备了氮和碳掺杂的二氧化钛作为铂催化剂的替代和超稳定载体,其效率由聚合物电解质燃料电池确定。通过改变三聚氰胺的比例,然后在900摄氏度下煅烧来制备氮和碳掺杂的二氧化钛。通过胶体法将铂纳米颗粒沉积到掺杂和未掺杂的二氧化钛上。通过X射线衍射,拉曼光谱,高分辨率透射电子显微镜和X射线光电子能谱研究了掺杂效应,表面形貌,化学氧化态和金属/金属氧化物界面接触。氮和碳的掺杂会改变氧化钛的电子和结构特性,从而导致增强的氧还原反应活性。相对于二氧化钛电催化剂上的铂,以最佳氮和碳掺杂量的二氧化钛沉积的铂具有改善的电池性能。通过稳态电池极化研究了金属负载对阴极电催化剂的影响。这些电催化剂经过50,000次循环的加速耐久性测试表明,铂与氮和碳掺杂的二氧化钛之间的相互作用得以改善,与碳载体上的铂相比,其电化学表面积和氧还原性能得以保持。 (C)2015 Elsevier B.V.保留所有权利。

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