首页> 外文OA文献 >Structural change in polar nanoregion in alkali niobate added Pb(Zn 1/3Nb 2/3) 0.95Ti 0.05O 3 single crystal and its effect on ferroelectric properties
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Structural change in polar nanoregion in alkali niobate added Pb(Zn 1/3Nb 2/3) 0.95Ti 0.05O 3 single crystal and its effect on ferroelectric properties

机译:Pb(Zn 1 / 3Nb 2/3)0.95Ti 0.05O 3单晶铌酸盐中极性纳米区域的结构变化及其对铁电性能的影响

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摘要

Pb(Zn 1/3 Nb 2/3 ) 0.95 Ti 0.05 O 3 (PZNT) single crystals with 5 mol.% alkali niobate such as LiNbO 3 (LN), NaNbO 3 (NN), and KNbO 3 (KN) were fabricated by using a flux method to investigate the effect of A-site cation radius on the structure and ferroelectric properties of PZNT under electric field (E-field). Their structure and properties showed different electric field dependence. Polarization versus electric field and strain versus electric field curves of PZNT-0.05LN showed E-field induced phase transition from a relaxor state to a normal ferroelectric state. However, only relaxor behavior was observed in PZNT-0.05NN and PZNT-0.05KN. The effect of A-site ion doping is attributed to the change in local lattice distortion and polar nano-region. When smaller cation such as Li ion substitutes Pb ion, the off-center displacement of Nb ion stabilizes rhombohedral lattice distortion. They, in turn, facilitate the development of macro-domains under electric field (E-field) in PZNT-0.05LN. In contrast, the substitution of Pb with larger cations such as Ni and K decreases the rhombohedral distortion of PZNT, which leads to the disappearance of unique E-field induced phase transition from rhombohedral to tetragonal phase in PZNT. Therefore, non-linear electrostrictive behavior of relaxor ferroelectrics is found in PZNT-0.05NN and PZNT-0.05KN. © 2012 American Institute of Physics.
机译:制备了具有5 mol%铌酸碱金属盐的Li(3N)(LN),NaNbO 3(NN)和KNbO 3(KN)等Pb(Zn 1/3 Nb 2/3)0.95 Ti 0.05 O 3(PZNT)单晶通过使用通量法研究A位阳离子半径对电场(E场)下PZNT的结构和铁电性能的影响。它们的结构和性质显示出不同的电场依赖性。 PZNT-0.05LN的极化对电场和应变对电场曲线显示电场诱导的从弛豫态到正常铁电态的相变。但是,在PZNT-0.05NN和PZNT-0.05KN中仅观察到松弛行为。 A位离子掺杂的影响归因于局部晶格畸变和极性纳米区域的变化。当较小的阳离子(例如Li离子)替代Pb离子时,Nb离子的偏心位移会稳定菱面体晶格畸变。反过来,它们有助于在PZNT-0.05LN的电场(电场)作用下宏域的发展。相反,用较大的阳离子(如Ni和K)取代Pb会降低PZNT的菱面体形变,导致PZNT中独特的电场引起的从菱形体向四方相的相变消失。因此,在PZNT-0.05NN和PZNT-0.05KN中发现了弛豫铁电体的非线性电致伸缩行为。 ©2012美国物理研究所。

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    Park JS; Jung Y; Lee JK;

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  • 年度 2012
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