Benck Jesse D, Rettenwander Daniel, Jackson Ariel, Young David, Chiang Yet-Ming
Department of Materials Science and Engineering, Massachusetts Institute of Technology, 77 Massachusetts Ave., Cambridge, Massachusetts 02139, USA.
Rev Sci Instrum. 2019 Feb;90(2):023910. doi: 10.1063/1.5050999.
Characterizing electrochemical energy conversion devices during operation is an important strategy for correlating device performance with the properties of cell materials under real operating conditions. While operando characterization has been used extensively for low temperature electrochemical cells, these techniques remain challenging for solid oxide electrochemical cells due to the high temperatures and reactive gas atmospheres these cells require. Operando X-ray diffraction measurements of solid oxide electrochemical cells could detect changes in the crystal structure of the cell materials, which can be useful for understanding degradation process that limit device lifetimes, but the experimental capability to perform operando X-ray diffraction on the fuel electrodes of these cells has not been demonstrated. Here we present the first experimental apparatus capable of performing X-ray diffraction measurements on the fuel electrodes of high temperature solid oxide electrochemical cells during operation under reducing gas atmospheres. We present data from an example experiment with a model solid oxide cell to demonstrate that this apparatus can collect X-ray diffraction patterns during electrochemical cell operation at high temperatures in humidified H gas. Measurements performed using this apparatus can reveal new insights about solid oxide fuel cell and solid oxide electrolyzer cell degradation mechanisms to enable the design of durable, high performance devices.
在运行过程中对电化学能量转换装置进行表征是一种重要策略,可在实际运行条件下将装置性能与电池材料的特性相关联。虽然原位表征已广泛用于低温电化学电池,但由于固体氧化物电化学电池所需的高温和反应性气体气氛,这些技术对其而言仍然具有挑战性。固体氧化物电化学电池的原位X射线衍射测量可以检测电池材料晶体结构的变化,这对于理解限制装置寿命的降解过程可能有用,但尚未证明在这些电池的燃料电极上进行原位X射线衍射的实验能力。在此,我们展示了首个能够在还原气体气氛下运行的高温固体氧化物电化学电池的燃料电极上进行X射线衍射测量的实验装置。我们展示了一个使用模型固体氧化物电池的示例实验数据,以证明该装置能够在加湿H气体的高温下,在电化学电池运行期间收集X射线衍射图谱。使用该装置进行的测量可以揭示有关固体氧化物燃料电池和固体氧化物电解槽电池降解机制的新见解,从而有助于设计耐用的高性能装置。