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Mixed Conductors under Light: On the Way to Solid Oxide Photo-Electrochemical Cells

机译:混合导体在光下:固体氧化物光电电池的生产方法

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摘要

Photo-electrochemical cells based on aqueous electrolytes have been heavily investigated for their potential to convert light into chemical energy. In contrast, very little is known on the possibility of transferring photon energy into chemical energy in high temperature solid state electrochemical cells. This is true despite the fact that solid electrolyte based systems can be operated very successfully as fuel and electrolysis cells (SOFCs/SOECs). Here, we report results on the interaction of mixed conducting oxides with light in cells using oxide ion conductors and operating at 350-500℃. One type of system contains a high temperature solar cell based on SrTiO_3 and LaCrO_3. It allows oxygen pumping and thus chemical energy storage under UV light. In another type of system UV light produces a time dependent voltage that includes two processes potentially also enabling energy storage: First, again a photovoltaic effect is present; second, the illuminated mixed conducting oxide changes its stoichiometry and thus leads to a battery type (Nernstian) voltage.
机译:基于水性电解质的光电化学电池已被广泛研究其将光转换为化学能的潜力。相反,在高温固态电化学电池中将光子能量转换成化学能的可能性知之甚少。尽管基于固体电解质的系统可以非常成功地用作燃料电池和电解池(SOFC / SOEC),但事实确实如此。在这里,我们报告使用氧化物离子导体并在350-500℃下工作的混合导电氧化物与光在电池中相互作用的结果。一种类型的系统包含基于SrTiO_3和LaCrO_3的高温太阳能电池。它允许氧气泵送,因此可以在紫外线下存储化学能。在另一种类型的系统中,紫外光会产生与时间有关的电压,该电压包括两个可能潜在地实现能量存储的过程:首先,再次出现光伏效应;第二,被照亮的混合导电氧化物改变其化学计量,从而导致电池类型(能斯特)电压。

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  • 会议地点 San Diego(US)
  • 作者单位

    Institute of Chemical Technologies and Analytics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Chemical Technologies and Analytics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Energy Systems and Thermodynamics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Energy Systems and Thermodynamics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Energy Systems and Thermodynamics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Atomic and Subatomic Physics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Chemical Technologies and Analytics, Technische Universitaet Wien, Vienna, Austria;

    Institute of Energy Systems and Thermodynamics, Technische Universitaet Wien, Vienna, Austria;

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