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Structure Luminescence and Magnetic Properties of Crystalline Manganese Tungstate Doped with Rare Earth Ion

机译:结晶锰钨酸盐掺杂稀土离子的结构发光和磁性

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摘要

The precursor prepared by co-precipitation method was sintered at various temperatures to synthesize crystalline manganese tungstate (MnWO4). Sintered MnWO4 showed the best crystallinity at a sintering temperature of 800 °C. Rare earth ion (Dysprosium; Dy3+) was added when preparing the precursor to enhance the magnetic and luminescent properties of crystalline MnWO4 based on these sintering temperature conditions. As the amount of rare earth ions was changed, the magnetic and luminescent characteristics were enhanced; however, after 0.1 mol.%, the luminescent characteristics decreased due to the concentration quenching phenomenon. In addition, a composite was prepared by mixing MnWO4 powder, with enhanced magnetism and luminescence properties due to the addition of dysprosium, with epoxy. To one of the two prepared composites a magnetic field was applied to induce alignment of the MnWO4 particles. Aligned particles showed stronger luminescence than the composite sample prepared with unsorted particles. As a result of this, it was suggested that it can be used as phosphor and a photosensitizer by utilizing the magnetic and luminescent properties of the synthesized MnWO4 powder with the addition of rare earth ions.
机译:通过共沉淀法制备的前体在各种温度下烧结以合成结晶锰钨酸酯(MNWO4)。烧结MNWO4显示在烧结温度为800℃的最佳结晶度。当制备前体时,加入稀土离子(镝; DY3 +),以基于这些烧结温度条件增强结晶MNWO4的磁性和发光性能。随着稀土离子的量改变,提高了磁性和发光特性;然而,在0.1摩尔后%之后,由于浓度淬火现象,发光特性降低。另外,通过将MnWO 4粉末混合,通过加入镝的磁性和发光性能来制备复合材料,其具有环氧树脂。对于两个制备的复合材料中的一种,施加磁场以诱导MnWO 4颗粒的对准。对齐的颗粒显示出比用未排出的颗粒制备的复合样品更强的发光。因此,建议它可以通过利用合成的MNWO4粉末的磁性和发光性能以加入稀土离子来使用作为磷光体和光敏剂。

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