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(Invited) Understanding and Controlling Chemo-Mechanical Coupling in Perovskite Oxides

机译:(受邀)理解和控制钙钛矿氧化物中的化学机械耦合

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Mixed ionic and electronic conducting perovskites that can readily exchange oxygen with the atmosphere exhibit a chemo-mechanical coupling between their oxygen content and their lattice dimensions. The lattice dilation accompanying oxygen loss, termed "chemical expansion," causes large chemical stresses in devices during operation that can lead to mechanical failure. This paper describes our work aimed at understanding, across multiple length scales, which factors impact chemical expansion coefficients in perovskites. Polycrystalline gallate and titanate perovskites containing multivalent Ni, Fe, and Co have been studied using in situ thermogravimetry, dilatometry, and diffraction to probe the chemical expansion process at macroscopic and crystal structure levels. Density functional theory, molecular dynamics, and empirical simulations have provided atomistic insight into changes taking place on the anion and cation sublattices during oxygen loss. Factors impacting the magnitude of the chemo-mechanical coupling, including oxygen vacancy radii, charge localization on cations, temperature, and crystal symmetry have been identified.
机译:可以容易地与大气交换氧气的离子和电子混合钙钛矿在其氧气含量和晶格尺寸之间表现出化学机械耦合。伴随氧气损失的晶格膨胀,称为“化学膨胀”,在操作期间会在设备中引起很大的化学应力,从而可能导致机械故障。本文介绍了我们的工作,旨在了解多种长度范围内影响钙钛矿中化学膨胀系数的因素。含有多价镍,铁和钴的多晶没食子酸酯和钛酸酯钙钛矿已经使用原位热重分析,膨胀分析和衍射技术进行了研究,以探讨宏观和晶体结构水平的化学膨胀过程。密度泛函理论,分子动力学和经验模拟提供了原子学上的洞察力,可了解氧损失期间阴离子和阳离子亚晶格的变化。已经确定了影响化学机械耦合强度的因素,包括氧空位半径,阳离子上的电荷局部化,温度和晶体对称性。

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  • 会议地点 San Diego(US)
  • 作者单位

    International Institute for Carbon-Neutral Energy Research (WPI-I2CNER), Kyushu University, Nishi-ku Fukuoka 819-0395, Japan,Department of Materials Science Engineering, MIT, Cambridge, MA 02139, U.S.A.;

    Department of Materials Science Engineering, MIT, Cambridge, MA 02139, U.S.A.;

    International Institute for Carbon-Neutral Energy Research (WPI-I2CNER), Kyushu University, Nishi-ku Fukuoka 819-0395, Japan,Department of Materials Science Engineering, MIT, Cambridge, MA 02139, U.S.A.;

    International Institute for Carbon-Neutral Energy Research (WPI-I2CNER), Kyushu University, Nishi-ku Fukuoka 819-0395, Japan,Department of Materials Science Engineering, MIT, Cambridge, MA 02139, U.S.A.;

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