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Bridgman growth and luminescence properties of Li_2MoO_4 single crystal

机译:Li_2MoO_4单晶的Bridgman生长和发光特性

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摘要

Large-size Li2MoO4 (LMO) single crystal was grown by vertical Bridgman method. The transmittance spectra, scatterance spectra, and laser-stimulated luminescence spectra as well as luminescence decay time of LMO crystal were investigated systematically. The polished LMO sample has a rather high transmissivity (85%) and a rather low scatterance in 400-800 nm wavelength range. Deliquescence property of LMO has great effects on the transmission and scatterance properties of crystal. LMO crystal has a wide luminescence peak around 551 nm as a result of intrinsic luminescence emission of tetrahedral MoO42. Luminescence intensity under a 355 nm laser beam is very weak at 300 K. As ambient temperatures cool down, the luminescence intensity increases rapidly and reaches a maximum at 20 K, which is equal to approximately 20 times in contrast with the intensity at 300 K. The luminescence decay times decrease monotonically with the temperature increasing from 20 K to 200 K. The decay times at 20 K, 75 K, 150 K correspond to 11.5 mu s, 1.5 mu s and 0.25 mu s, respectively. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过垂直布里奇曼法生长大尺寸的Li2MoO4(LMO)单晶。系统地研究了LMO晶体的透射光谱,散射光谱和激光激发的发光光谱以及发光衰减时间。抛光的LMO样品在400-800 nm波长范围内具有较高的透射率(85%)和较低的散射。 LMO的潮解性质对晶体的透射和散射性质有很大的影响。由于四面体MoO42的固有发光,LMO晶体在551 nm附近具有宽的发光峰。 355 nm激光束在300 K时的发光强度非常弱。随着环境温度的降低,发光强度迅速增加并在20 K时达到最大值,与300 K时的强度相比大约等于20倍。随着温度从20 K增加到200 K,发光衰减时间单调减少。在20 K,75 K,150 K处的衰减时间分别对应于11.5μs,1.5μs和0.25μs。 (C)2017 Elsevier B.V.保留所有权利。

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