首页> 外文期刊>Journal of Materials Science >Large pyroelectric properties at reduced depolarization temperature in A-site nonstoichiometry composition of lead-free 0.94Na (x) Bi (y) TiO3-0.06Ba (z) TiO3 ceramics
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Large pyroelectric properties at reduced depolarization temperature in A-site nonstoichiometry composition of lead-free 0.94Na (x) Bi (y) TiO3-0.06Ba (z) TiO3 ceramics

机译:在无铅0.94NA(x)Bi(Y)TiO3-0.06Ba(Z)TiO3陶瓷的无铅0.94na(x)Bi(y)铋组合物中降低去极化温度下的大型热电性能。

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摘要

Nonstoichiometry lead-free 0.94Na (x) Bi (y) TiO3-0.06Ba (z) TiO3 (N (x) B (y) T-0.06B (z) T) (from x = y = 0.5, z = 1.00 to x = 0.5, y = 0.534, z = 1.02) ceramic compositions were prepared by a conventional solid-state route. XRD shows that the compositions are at a morphotropic phase boundary where rhombohedral and tetragonal phases coexist. The depolarization temperature (T (d)) can be lowered by modifying x, y and z. The pyroelectric coefficient (p) of nonstoichiometry N (x) B (y) T-0.06B (z) T compositions is greatly increased, compared with stoichiometry NBT-0.06BT composition, from 3.15 x 10(-4) C m(-2) A degrees C-1 at room temperature (RT) and 23.9 x 10(-4) C m(-2) A degrees C-1 at T (d), and reaches maxima of 6.99 x 10(-4) C m(-2) A degrees C-1 at RT and 75.3 x 10(-4) C m(-2) A degrees C-1 at T (d) for x = y = 0.52 and z = 1. The figures of merits, F (i), F (v), and F (D), also have been improved from 1.12 x 10(-10) m v(-1) and 0.021 m(2) C-1 to 2.50 x 10(-10) m v(-1), 0.047 m(2) C-1 and 16.63 x 10(-6) Pa-1/2, respectively, for N0.52B0.52T-0.06BT composition at RT. Furthermore, N0.52B0.52T-0.06BT composition shows a huge enhancement in F (i), F (v) and F (D) to 26.9 x 10(-10) m v(-1), 0.39 x 10(-10) m(2) C-1 and 138.7 x 10(-6) Pa-1/2, respectively, at T (d). The same composition also presents F (C) values which are similar to 2.58 and similar to 2.86 (x10(-9) C cm(-2) A degrees C-1) at RT at 100 and 1000 (Hz). N0.5B0.534T-0.06BT and N0.5B0.534T-0.06B(1.02)T compositions show a large p values at a wide temperature range. The enhanced pyroelectric properties make nonstoichiometry N0.52B0.52T-0.06BT composition a promising candidate for pyroelectric and other applications at wide temperatures range.
机译:非辛计量无铅0.94NA(x)Bi(Y)TiO3-0.06Ba(Z)TiO3(N(x)b(y)t-0.06b(z)t)(来自x = y = 0.5,z = 1.00通过常规的固态途径制备至X = 0.5,Y = 0.534,Z = 1.02)陶瓷组合物。 XRD表明该组合物在Morphotopic相位边界处,其中菱形和四方相的共存。通过修改X,Y和Z,可以降低去极化温度(T(D))。与化学计量NBT-0.06BT组合物相比,从3.15×10( - 4)( - )相比,非辛计量N(x)B(Y)T-0.06b(Z)T-0.06b(Z)T组合物的热电系数(Z)T-0.06b(Z)T组合物大大增加了大大增加了。 2)在室温(RT)和23.9×10(-4)C m(-2)下的T(d)的23.9×10(-4)c m(-2)℃,并且达到6.99×10(-4)c的最大值M(-2)在室温下的℃-1和75.3×10(-4)C m(-2)在t(d)的δ= 0.52和z = 1.附图优点,f(i),f(v)和f(d),也已从1.12 x 10(-10)mV(-1)和0.021m(2)C-1至2.50 x 10( - 10)MV(-1),0.047m(2)C-1和16.63×10(-6)PA-1/2分别在室温下为N0.52B0.52T-0.06BT组合物。此外,N0.52B0.52T-0.06BT组合物显示出F(I),F(V)和F(d)至26.9×10(-10)mV(-1),0.39×10(-10)的巨大增强)M(2)C-1和138.7×10(-6)PA-1/2分别在T(D)。相同的组合物还呈现在RT在100和1000(Hz)下类似于2.58和类似于2.86(X10(-9)Ccm(-2)℃-1)的F(c)值。 N0.5B0.534T-0.06BT和N0.5B0.534T-0.06B(1.02)T组合物在宽温度范围内显示出大的P值。增强的热电性能使得不精确的N0.52B0.52T-0.06BT组合物在宽温度范围内的热电和其他应用的有希望的候选者。

著录项

  • 来源
    《Journal of Materials Science》 |2017年第12期|共12页
  • 作者单位

    Cranfield Univ Sch Aerosp Transport &

    Mfg Cranfield MK43 0AL Beds England;

    Cranfield Univ Sch Aerosp Transport &

    Mfg Cranfield MK43 0AL Beds England;

    Cranfield Univ Sch Aerosp Transport &

    Mfg Cranfield MK43 0AL Beds England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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