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Fast and Stable Proton Conduction in Heavily Scandium- Doped Polycrystalline Barium Zirconate at Intermediate Temperatures

机译:在中间温度下,在重型掺杂的多晶钡锆锆中快速稳定的质子传导

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摘要

The environmental benefits of fuel cells and electrolyzers have become increasingly recognized in recent years. Fuel cells and electrolyzers that can operate at intermediate temperatures (300-450 degrees C) require, in principle, neither the precious metal catalysts that are typically used in polymer-electrolyte-membrane systems nor the costly heat-resistant alloys used in balance-of-plant components of high-temperature solid oxide electrochemical cells. These devices require an electrolyte with high ionic conductivity, typically more than 0.01 S cm(-1), and high chemical stability. To date, however, high ionic conductivities have been found in chemically unstable materials such as CsH2PO4, In-doped SnP2O7, BaH2, and LaH3-2xOx. Here, fast and stable proton conduction in 60-at% Sc-doped barium zirconate polycrystal, with a total conductivity of 0.01 S cm(-1) at 396 degrees C for 200 h is demonstrated. Heavy doping of Sc in barium zirconate simultaneously enhances the proton concentration, bulk proton diffusivity, specific grain boundary conductivity, and grain growth. An accelerated stability test under a highly concentrated and humidified CO2 stream using in situ X-ray diffraction shows that the perovskite phase is stable over 240 h at 400 degrees C under 0.98 atm of CO2. These results show great promises as an electrolyte in solid-state electrochemical devices operated at intermediate temperatures.
机译:近年来,燃料电池和电解器的环境益处越来越受到认可。可以原则上,可以在中间温度(300-450摄氏度)在中间温度(300-450摄氏度)中操作的燃料电池和电解器都不需要通常用于聚合物 - 电解质膜系统的贵金属催化剂,也不需要用于平衡的昂贵的耐热合金高温固体氧化物电化学电池的植物组分。这些装置需要具有高离子电导率的电解质,通常大于0.01℃(-1)和高化学稳定性。然而,迄今为止,已经在化学不稳定材料如CSH2PO4,掺杂的SNP2O7,BAH2和LAH3-2XOX中发现了高离子电导率。这里,对696摄氏度的总电导率为0.01scm(-1)的快速且稳定的质子传导,在396℃下,在396摄氏度下进行200小时。稀释钡中SC的重掺杂同时增强质子浓度,散装质子扩散性,特异性晶界导电性和晶粒生长。使用原位X射线衍射在高度浓缩和潮湿的CO2流下加速稳定性试验表明,在0.98型AT0的400℃下,钙钛矿相的稳定在240小时内稳定。这些结果显示出在中间温度下操作的固态电化学装置中的电解质的巨大承诺。

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