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钨青铜Pb2AgNb5O15的热膨胀和二次谐波产生响应

Thermal Expansion and Second Harmonic Generation Response of the Tungsten Bronze Pb2AgNb5O15.

作者信息

Lin Kun, Gong Pifu, Sun Jing, Ma Hongqiang, Wang You, You Li, Deng Jinxia, Chen Jun, Lin Zheshuai, Kato Kenichi, Wu Hui, Huang Qingzhen, Xing Xianran

机构信息

Beijing Center for Crystal R&D, Key Lab of Functional Crystals and Laser Technology, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences , Beijing 100190, China.

RIKEN SPring-8 Center , Hyogo 679-5148, Japan.

出版信息

Inorg Chem. 2016 Mar 21;55(6):2864-9. doi: 10.1021/acs.inorgchem.5b02702. Epub 2016 Feb 29.

Abstract

The incorporation of transition metal element Ag was performed to explore negative thermal expansion (NTE) materials with tetragonal tungsten bronze (TTB) structures. In this study, the structure and thermal expansion behaviors of a polar TTB oxide, Pb2AgNb5O15 (PAN), were systematically investigated by high-resolution synchrotron powder diffraction, high-resolution neutron powder diffraction, transmission electron microscope (TEM), and high-temperature X-ray diffractions. The TEM and Rietveld refinements revealed that the compound PAN displays (√2a(TTB), √2b(TTB), 2c(TTB))-type superstructure. This superstructure within the a-b plane is caused by the ordering of A-site cations, while the doubling of the c axis is mainly induced by a slight tilt distortion of the NbO6 octahedra. The transition metal Ag has larger spontaneous polarization displacements than Pb, but the Pb-O covalence seems to be weakened compared to the potassium counterpart Pb2KNb5O15 (PKN), which may account for the similar Curie temperature and uniaxial NTE behavior for PAN and PKN. Powder second harmonic generation (SHG) measurement indicates that PAN displays a moderate SHG response of ∼0.2 × LiNbO3 (or ∼100 × α-SiO2) under 1064 nm laser radiation. The magnitudes of the local dipole moments in NbO6 and PbOx polyhedra were quantified using bond-valence approach. We show that the SHG response stems from the superposition of dipole moments of both the PbO(x) and NbO6 polyhedra.

摘要

通过引入过渡金属元素银来探索具有四方钨青铜(TTB)结构的负热膨胀(NTE)材料。在本研究中,利用高分辨率同步辐射粉末衍射、高分辨率中子粉末衍射、透射电子显微镜(TEM)和高温X射线衍射,系统研究了极性TTB氧化物Pb2AgNb5O15(PAN)的结构和热膨胀行为。TEM和Rietveld精修结果表明,化合物PAN呈现(√2a(TTB),√2b(TTB),2c(TTB))型超结构。a - b平面内的这种超结构是由A位阳离子的有序排列引起的,而c轴加倍主要是由NbO6八面体的轻微倾斜畸变所致。过渡金属银比铅具有更大的自发极化位移,但与钾基化合物Pb2KNb5O15(PKN)相比,Pb - O共价性似乎减弱,这可能是PAN和PKN具有相似居里温度和单轴NTE行为的原因。粉末二次谐波产生(SHG)测量表明,在1064 nm激光辐射下,PAN呈现约0.2×LiNbO3(或约100×α - SiO2)的中等SHG响应。使用键价方法对NbO6和PbOx多面体中的局部偶极矩大小进行了量化。我们表明,SHG响应源于PbO(x)和NbO6多面体偶极矩的叠加。

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