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Effects of rare-earth dopants on the ferroelectric and pyroelectric properties of strontium Barium Niobate ceramics

机译:稀土掺杂对铌酸锶钡陶瓷铁电和热电性能的影响

摘要

Effects of various rare-earth (RE) dopants (Y3+, La3+, Ce3+, Pr3+, Nd3+, Sm3+, Eu3+, Gd3+, Tm3+, Dy3+, Er3+, and Yb3+) on the dielectric, ferroelectric, and pyroelectric properties of Sr0.5Ba0.5Nb2O6 (SBN50) ceramics were investigated. In the present studies, the doping concentrations of all the RE dopants were fixed at 1mol%. Their potential usefulness in pyroelectric applications was discussed based on their measured pyroelectric detectivity figure of merit (FOM). On the basis of our studies, for RE dopants with atomic numbers smaller than Nd, their dielectric constants were greatly increased, while for RE dopants with atomic numbers larger than Sm, their dielectric constants as well as dielectric losses became smaller. Among various dopants, Eu-doped SBN showed the most improved ferroelectric properties. Its remnant polarization (Pr ) was increased to 4.86 μC/cm2 as compared with 3.23 μC/cm2 obtained in undoped SBN50. On the other hand, Gd-doped SBN exhibited the largest pyroelectric coefficient of 168 μC/m2 K, which was over three times of that of the undoped sample (49 μC/m2 K). The work shows that Gd-doped SBN exhibits the greatest potential for pyro-applications because it bears the largest FOM of 0.45 × 10-5Pa -0.5 [Correction: After online publication on 11/05/2008, an error was found in this article. The original value, 1.35 × 10-5Pa-0.5, was incorrect. The data has been replaced with the correct value.].
机译:各种稀土(RE)掺杂物(Y3 +,La3 +,Ce3 +,Pr3 +,Nd3 +,Sm3 +,Eu3 +,Gd3 +,Tm3 +,Dy3 +,Er3 +和Yb3 +)对Sr0.5Ba0的介电,铁电和热电性能的影响。研究了5Nb2O6(SBN50)陶瓷。在本研究中,所有RE掺杂剂的掺杂浓度固定为1mol%。根据测得的热电检测系数(FOM),讨论了它们在热电应用中的潜在用途。根据我们的研究,对于原子序数小于Nd的稀土掺杂剂,其介电常数大大提高,而对于原子序数大于Sm的稀土掺杂剂,其介电常数以及介电损耗变小。在各种掺杂物中,Eu掺杂的SBN表现出最强的铁电性能。与未掺杂SBN50中获得的3.23μC/ cm2相比,其残余极化(Pr)增加到4.86μC/ cm2。另一方面,掺Gd的SBN的最大热电系数为168μC/ m2 K,是未掺杂样品(49μC/ m2 K)的三倍以上。这项工作表明,掺Gd的SBN具有最高的FOM为0.45×10-5Pa -0.5 [校正:在11/05/2008上在线发布后,在本文中发现了一个错误],这表明掺G的SBN具有最大的热解应用潜力。 。原始值1.35×10-5Pa-0.5不正确。数据已替换为正确的值。]。

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