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铌酸盐纳米结构陶瓷低温温度域中的相变和界面现象

Phase transitions and interface phenomena in the cryogenic temperature domain of a niobate nanostructured ceramic.

作者信息

Lanfredi S, Darie C, Bellucci F S, Colin C V, Nobre M A L

机构信息

Fac de Ciências e Tecnologia - FCT, Univ Estadual Paulista - UNESP, P.O. Box 467, Presidente Prudente-SP, 19060-900, Brazil.

出版信息

Dalton Trans. 2014 Jul 28;43(28):10983-98. doi: 10.1039/c4dt00623b.

Abstract

Powder neutron diffraction and dielectric spectroscopy were used to investigate both crystallographic and dielectric permittivity properties of a Sr2KNb5O15 single phase ferroelectric oxide with nanosized grains ranging from 35 nm to 90 nm. Measurements were carried out in the temperature range from 10 K (cryogenic) to 550 K. All neutron diffraction data were indexed on the basis of a tetragonal double unit cell. From 10 K to room temperature the space group of the Sr2KNb5O15 ferroelectric phase was considered to be P4bm. The refinement of the paraelectric phase (at 550 K) was determined in the centrosymmetric space group P4/mbm. Dielectric spectroscopy measurements were performed in a thermal cycle. A set of four phase transitions non-related to symmetry changing was detected from Rietveld analysis of neutron powder diffraction data. During a thermal cycle, in the cryogenic temperature domain, strong thermal hysteresis is developed. Both phase transition and thermal hysteresis were correlated. These phenomena are associated with Nb-cation atomic displacements in the NbO6 octahedra along the c-axis direction and of the domain with different frequencies involving grains as well as an excess of interfaces ascribed to the grain boundary. The bulk/grain boundary interfaces in nanostructured ceramics are correlated with the thermal stability phenomenon.

摘要

采用粉末中子衍射和介电谱研究了一种具有35nm至90nm纳米尺寸晶粒的Sr2KNb5O15单相铁电氧化物的晶体学和介电常数特性。测量在10K(低温)至550K的温度范围内进行。所有中子衍射数据均基于四方双晶胞进行索引。从10K到室温,Sr2KNb5O15铁电相的空间群被认为是P4bm。顺电相(在550K)的精修是在中心对称空间群P4/mbm中确定的。介电谱测量在一个热循环中进行。通过对中子粉末衍射数据的Rietveld分析,检测到一组与对称性变化无关的四个相变。在热循环过程中,在低温温度域中会出现强烈的热滞现象。相变和热滞都相互关联。这些现象与NbO6八面体中Nb阳离子沿c轴方向的原子位移以及涉及晶粒的不同频率的畴以及归因于晶界的过量界面有关。纳米结构陶瓷中的体相/晶界界面与热稳定性现象相关。

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