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首页> 外文期刊>Journal of the European Ceramic Society >Crystal growth and ferroelectric property of Na_(0.5)K_(0.5)NbO_3 and Mn-doped Na_(0.5)K_(0.5)NbO_3 crystals grown by floating zone method
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Crystal growth and ferroelectric property of Na_(0.5)K_(0.5)NbO_3 and Mn-doped Na_(0.5)K_(0.5)NbO_3 crystals grown by floating zone method

机译:浮区法生长的Na_(0.5)K_(0.5)NbO_3和Mn掺杂的Na_(0.5)K_(0.5)NbO_3晶体的晶体生长和铁电性能

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摘要

Na_(0.5)K_(0.5)NbO_3 (NKN) and Mn-doped NKN crystals, which are one of the promising candidates of lead-free piezoelectric materials, were grown by using a floating zone (FZ) method. The resulting crystal growth was compared with crystal growth that resulted from using a flux method in a previous study. In the crystal grown by FZ method under where the growth rate was controlled to 3 mm/h, thin layers formed parallel and perpendicular directions to the growth direction. In the crystal grown by FZ method, the crystal structure could not be classified as having the orthorhombic lattice of Amm2, which was observed in the crystal grown using a flux method. It was found that doped Mn was substituted in the perovskite-type lattice of NKN. Pure NKN crystals showed 90 deg domains that had a zig-zag shape, whereas Mn-doped NKN crystals were aligned to the domain layers in straight lines. It was confirmed that Mn-doped NKN crystal showed a square P-E hysteresis loop.
机译:Na_(0.5)K_(0.5)NbO_3(NKN)和Mn掺杂的NKN晶体是无铅压电材料的有希望的候选者之一,它们是通过浮区(FZ)方法生长的。在先前的研究中,将所得的晶体生长与使用通量法产生的晶体生长进行了比较。在通过FZ法生长的晶体中,将生长速率控制在3mm / h,薄层形成与生长方向平行和垂直的方向。在通过FZ方法生长的晶体中,不能将晶体结构归类为具有Amm 2的正交晶格,这在通过熔剂方法生长的晶体中观察到。发现掺杂的Mn被NKN的钙钛矿型晶格取代。纯的NKN晶体显示出90度畴,呈Z字形,而Mn掺杂的NKN晶体则以直线排列在畴层上。证实了Mn掺杂的NKN晶体显示出正方形的P-E磁滞回线。

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