Lin Kun, Rong Yangchun, Wu Hui, Huang Qingzhen, You Li, Ren Yang, Fan Longlong, Chen Jun, Xing Xianran
Department of Physical Chemistry and ∥State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing , Beijing 100083, China.
Inorg Chem. 2014 Sep 2;53(17):9174-80. doi: 10.1021/ic501189n. Epub 2014 Aug 12.
The crystal structure and thermal expansion behaviors of a new tetragonal tungsten bronze (TTB) ferroelectric, Pb2K(0.5)Li(0.5)Nb5O15, were systematically investigated by selected-area electron diffraction (SAED), neutron powder diffraction, synchrotron X-ray diffraction (XRD), and high-temperature XRD. SAED and Rietveld refinement reveal that Pb2K(0.5)Li(0.5)Nb5O15 displays a commensurate superstructure of simple orthorhombic TTB structure at room temperature. The structure can be described with space group Bb2₁m. The transition to a paraelectric phase (P4/mbm) occurs at 500 °C. Compared with Pb2KNb5O15 (PKN), the substitution of 0.5K(+) with small 0.5Li(+) into PKN causes the tilting of NbO6 octahedra away from the c axis with Δθ ≈ 10° and raises the Curie temperature by 40 °C, and the negative thermal expansion coefficient along the polar b axis increases more than 50% in the temperature range 25-500 °C. We present that, by introduction of Li(+), the enhanced spontaneous polarization is responsible for the enhanced negative thermal expansion along the b axis, which may be caused by more Pb(2+) in the pentagonal caves.
通过选区电子衍射(SAED)、中子粉末衍射、同步辐射X射线衍射(XRD)和高温XRD,系统研究了一种新型四方钨青铜(TTB)铁电体Pb2K(0.5)Li(0.5)Nb5O15的晶体结构和热膨胀行为。SAED和Rietveld精修表明,Pb2K(0.5)Li(0.5)Nb5O15在室温下呈现出简单正交TTB结构的相称超结构。该结构可用空间群Bb2₁m描述。向顺电相(P4/mbm)的转变发生在500°C。与Pb2KNb5O15(PKN)相比,用小的0.5Li(+)取代PKN中的0.5K(+)会导致NbO6八面体倾斜远离c轴,Δθ≈10°,并使居里温度升高40°C,并且在25 - 500°C温度范围内,沿极轴b的负热膨胀系数增加超过50%。我们提出,通过引入Li(+),增强的自发极化是沿b轴增强的负热膨胀的原因,这可能是由五角形洞穴中更多的Pb(2+)引起的。