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High pressure floating-zone growth and property characterization of Cr-doped hexagonal YMnO_3 crystals 被引量:1

High pressure floating-zone growth and property characterization of Cr-doped hexagonal YMnO_3 crystals
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摘要 Large crystal growth of Cr-doped h-YMnO3has been investigated by using a high pressure optical floatingzone method. The size of the grown crystals is typically 60–70 mm in length and 4–5 mm in diameter. The structure of the grown crystals is analyzed by powder X-ray diffraction and scanning electron microscopy.The defects in the as-grown crystals, including low-angle grain boundary and inclusions are studied. An off-stoichiometric phenomenon is found with a slight Cr deficiency in different parts. The relationship between defects and growth conditions during crystal growth is also discussed. The magnetic properties show spin-glass phase features with weak ferromagnetic behavior below 30 K. Large crystal growth of Cr-doped h-YMnO_3 has been investigated by using a high pressure optical floatingzone method. The size of the grown crystals is typically 60–70 mm in length and 4–5 mm in diameter. The structure of the grown crystals is analyzed by powder X-ray diffraction and scanning electron microscopy.The defects in the as-grown crystals, including low-angle grain boundary and inclusions are studied. An off-stoichiometric phenomenon is found with a slight Cr deficiency in different parts. The relationship between defects and growth conditions during crystal growth is also discussed. The magnetic properties show spin-glass phase features with weak ferromagnetic behavior below 30 K.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第9期1061-1066,共6页 材料科学技术(英文版)
基金 financial support of the National Natural Science Foundation of China (Nos. 51471135 and 51301133) the National Key Research and Development Program (No. 2016YFB1100101) Shaanxi International Cooperation Program
关键词 High pressure floating zone technique Crystal growth Cr-doped YMnO3 High vapor pressure compound High pressure floating zone technique Crystal growth Cr-doped YMnO3 High vapor pressure compound
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