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Comparison of multi-valent manganese oxides (Mn4+, Mn3+, and Mn2+) doping in BiFeO3-BaTiO3 piezoelectric ceramics

机译:多价锰氧化物(MN4 +,MN3 +,MN2 +)掺杂BifeO3-BATIO3压电陶瓷的比较

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摘要

Different manganese oxides-doping effects were compared in piezoceramic BiFeO3-BaTiO3 system. 0.67Bi(1.05)(Fe0.99Mn0.01x)O-3-0.33BaTiO(3) (valence state x = 4 +, 3 + , and 2 + ) ceramics were prepared via a solid-state reaction process followed by furnace-cooling (FC) or water-quenching (WQ) process. For the FC ceramics, the direct piezoelectric sensor coefficient (d(33)) was almost independent of valence state of doped Mn, while d(33) depended on the fraction of Fe3+/Fe2+ in WQ ceramics. The d(33) value was highest for the donor Mn4+-doped ceramic, among the FC ceramics, with 175 pC/N. However, acceptor-doping with Mn2+ prevented the transition of Fe ion valence state from 3+ to 2+ in the WQ ceramics, the Mn2+-doped WQ ceramic showed the largest d(33) of 313 pC/N and converse piezoelectric actuator coefficient, d(33)* of 352 pm/V, with high Curie phase transition temperature (482 degrees C).
机译:在压电陶瓷BIFEO3-BATIO3系统中比较了不同的氧化锰掺杂效果。 通过固态反应工艺制备0.67亿(1.05)(Fe0.99mN0.01x)O-3-0.33batio(3)(价态x = 4 +,3 +和2 +)陶瓷,然后是炉子 - 冷却(Fc)或水淬火(WQ)过程。 对于FC陶瓷,直接压电传感器系数(D(33))几乎与掺杂Mn的价态无关,而D(33)取决于WQ陶瓷中Fe3 + / Fe2 +的一部分。 对于供体MN4 + - 掺杂陶瓷的D(33)值最高,FC陶瓷,175pc / n。 然而,用Mn2 +的受体掺杂使得在WQ陶瓷中的313个PC / N和逆电压致动器系数的最大D(33),防止了Fe离子效率从3 +转变为2+的转变为313pc / n和逆电压致动器系数的最大d(33), D(33)* 352 pm / v,具有高居里相转变温度(482℃)。

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