Chemical Engineering College , Inner Mongolia University of Technology , 49Aimin Street , Hohhot 010051 , People's Republic of China.
Inner Mongolia Engineering Research Center for CO2 Capture and Utilization , 49 Aimin Street , Hohhot 010051 , People's Republic of China.
Inorg Chem. 2019 Feb 18;58(4):2888-2898. doi: 10.1021/acs.inorgchem.8b03595. Epub 2019 Feb 7.
Lattice thermal expansion (LTE) has been investigated in double perovskites LaPbMSbO (M = Mn, Co, Ni). Ordinary LTE behavior with good thermal stability is identified for the Mn sample, whereas unusual LTE with a preferably expanded interplanar distance of (040) is revealed for Co and Ni samples. Temperature-dependent X-ray diffraction patterns ( T-XRD), Raman spectra ( T-Raman), and specific heat capacities ( T- C) consistently indicate that a rare isostructural displacive phase transition (IDPT) with a second-order phase transition nature is predominant near the critical temperature. Refinements of neutron powder diffraction (NPD) and in situ T-XRD data present temperature-sensitive bond parameters which are relevant to planar oxygen O1. X-ray photoelectron spectra (XPS) further confirm the Jahn-Teller (J-T) activated Co (HS) or Ni (HS/LS) cations at the B-site sublattice. This unusual LTE behavior could be understood by the cooperative J-T effect contributed by a Pb ion and Co/Ni ion from A- and B-site sublattices, respectively. The importance of 6s(Pb)-2p(O)-3d(Co/Ni) extended orbital hybridization on affecting thermal expansion behavior is highlighted on the basis of temperature-induced phonon mode softening. This study presents a microscopic description of connection between anisotropic thermal expansion and a cooperative J-T effect, which inspired exploration of thermal-mechanical coupled functional materials based on LaPbMSbO double perovskites.
层状热膨胀(LTE)已在双钙钛矿 LaPbMSbO(M = Mn、Co、Ni)中进行了研究。Mn 样品表现出良好热稳定性的普通 LTE 行为,而 Co 和 Ni 样品则表现出不寻常的 LTE,具有优选扩展的(040)层间距离。温度依赖的 X 射线衍射图谱(T-XRD)、拉曼光谱(T-Raman)和比热容量(T-C)一致表明,在临界温度附近,主要存在具有二阶相变性质的罕见同构位移相转变(IDPT)。中子粉末衍射(NPD)和原位 T-XRD 数据的精修呈现出与平面氧 O1 相关的对温度敏感的键参数。X 射线光电子能谱(XPS)进一步证实了 B 位亚晶格中 Jahn-Teller(J-T)激活的 Co(HS)或 Ni(HS/LS)阳离子。这种不寻常的 LTE 行为可以通过 Pb 离子和 A-和 B-位亚晶格中的 Co/Ni 离子分别贡献的协同 J-T 效应来理解。基于温度诱导的声子模式软化,强调了 6s(Pb)-2p(O)-3d(Co/Ni)扩展轨道杂化对影响热膨胀行为的重要性。本研究提出了各向异性热膨胀与协同 J-T 效应之间联系的微观描述,为基于 LaPbMSbO 双钙钛矿的热机械耦合功能材料的探索提供了启示。