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Towards Highly Performing and Stable PtNi Catalysts in Polymer Electrolyte Fuel Cells for Automotive Application

机译:面向汽车应用的聚合物电解质燃料电池中高性能和稳定的PtNi催化剂

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摘要

In order to help the introduction on the automotive market of polymer electrolyte fuel cells (PEFCs), it is mandatory to develop highly performing and stable catalysts. The main objective of this work is to investigate PtNi/C catalysts in a PEFC under low relative humidity and pressure conditions, more representative of automotive applications. Carbon supported PtNi nanoparticles were prepared by reduction of metal precursors with formic acid and successive thermal and leaching treatments. The effect of the chemical composition, structure and surface characteristics of the synthesized samples on their electrochemical behavior was investigated. The catalyst characterized by a larger Pt content (Pt3Ni2/C) presented the highest catalytic activity (lower potential losses in the activation region) among the synthesized bimetallic PtNi catalysts and the commercial Pt/C, used as the reference material, after testing at high temperature (95 °C) and low humidification (50%) conditions for automotive applications, showing a cell potential (ohmic drop-free) of 0.82 V at 500 mA·cm−2. In order to assess the electro-catalysts stability, accelerated degradation tests were carried out by cycling the cell potential between 0.6 V and 1.2 V. By comparing the electrochemical and physico-chemical parameters at the beginning of life (BoL) and end of life (EoL), it was demonstrated that the Pt1Ni1/C catalyst was the most stable among the catalyst series, with only a 2% loss of voltage at 200 mA·cm−2 and 12.5% at 950 mA·cm−2. However, further improvements are needed to produce durable catalysts.
机译:为了帮助将聚合物电解质燃料电池(PEFC)引入汽车市场,必须开发高性能和稳定的催化剂。这项工作的主要目的是研究在低相对湿度和压力条件下PEFC中的PtNi / C催化剂,这在汽车应用中更具代表性。碳负载的PtNi纳米粒子是通过用甲酸还原金属前驱体并进行连续的热处理和浸出处理制得的。研究了合成样品的化学组成,结构和表面特性对其电化学行为的影响。 Pt含量较高(Pt3Ni2 / C)的催化剂在合成的双金属PtNi催化剂和市售Pt / C(在高温下测试后)中具有最高的催化活性(活化区域中的潜在电势损失较低)在汽车应用中的最高温度(95°C)和低湿度(50%)的条件下,在500 mA·cm −2 下显示0.82 V的电池电势(无欧姆降)。为了评估电催化剂的稳定性,通过在0.6 V至1.2 V之间循环电池电势来进行加速降解测试。通过比较寿命开始(BoL)和寿命结束( EoL),表明Pt1Ni1 / C催化剂在系列催化剂中最稳定,在200 mA·cm -2 时只有2%的电压损失,而在950 mA·时只有12.5%的电压损失。 cm −2 。然而,需要进一步的改进以生产耐用的催化剂。

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