• Acta Optica Sinica
  • Vol. 41, Issue 11, 1116004 (2021)
Mingjun Xue1、2, Liang Chen2, Wei Xiong2, Yao Zhou2, Ying Li1、*, and Hui Yuan2、**
Author Affiliations
  • 1School of Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
  • 2Center of Artificial Crystals Research, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
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    DOI: 10.3788/AOS202141.1116004 Cite this Article Set citation alerts
    Mingjun Xue, Liang Chen, Wei Xiong, Yao Zhou, Ying Li, Hui Yuan. Synthesis of Li2MoO4 Powder with Aqueous Solution Method and Li2MoO4 Single Crystal Growth[J]. Acta Optica Sinica, 2021, 41(11): 1116004 Copy Citation Text show less
    References

    [1] Barinova O P, Cappella F, Cerulli R et al. Intrinsic radiopurity of a Li2MoO4 crystal[J]. Nuclear Instruments and Methods in Physics Research Section A, 607, 573-575(2009).

    [2] Barinova O P, Danevich F A, Degoda V Y et al. First test of Li2MoO4 crystal as a cryogenic scintillating bolometer[J]. Nuclear Instruments and Methods in Physics Research Section A, 613, 54-57(2010).

    [3] O'Hare P A G, Jensen K J, Hoekstra H R et al. Thermochemistry of molybdates IV: standard enthalpy of formation of lithium molybdate, thermodynamic properties of the aqueous molybdate ion, and thermodynamic stabilities of the alkali-metal molybdates[J]. The Journal of Chemical Thermodynamics, 6, 681-691(1974).

    [4] Sun Y L, Wang Z C, Hao S P et al. Production of the industrial lithium molybdate[J]. China Molybdenum Industry, 28, 22-24(2004).

    [5] Yang Y, Chen B N, Li Y X et al. The preparation of lithrium molybdate and corrosion-inhibiting expriment[J]. Inorganic Chemicals Industry, 29, 33-34(1997).

    [6] Cardani L, Casali N, Nagorny S et al. Development of a Li2MoO4 scintillating bolometer for low background physics[J]. Journal of Instrumentation, 8, P10002(2013).

    [7] Spassky D A, Nagirnyi V, Savon A E et al. Low temperature luminescence and charge carrier trapping in a cryogenic scintillator Li2MoO4[J]. Journal of Luminescence, 166, 195-202(2015).

    [8] Barinova O, Kirsanova S, Sadovskiy A et al. Properties of Li2MoO4 single crystals grown by Czochralski technique[J]. Journal of Crystal Growth, 401, 853-856(2014).

    [9] Chen P, Jiang L W, Chen Y P et al. Bridgman growth and luminescence properties of Li2MoO4 single crystal[J]. Materials Letters, 215, 225-228(2018).

    [10] Chen P, Wei R, Jiang L W et al. Crystal defects of Li2MoO4 scintillators grown by Bridgman method[J]. Journal of Crystal Growth, 500, 80-84(2018).

    [11] Barinova O, Sadovskiy A, Ermochenkov I et al. Li2MoO4 crystal growth from solution activated by low-frequency vibrations[J]. Journal of Crystal Growth, 457, 151-157(2017).

    [12] Barinova A V, Rastsvetaeva R K, Nekrasov Y V et al. Crystal structure of Li2MoO4[J]. Doklady Chemistry, 376, 16-19(2001).

    [13] Zhong W Z, Hua S K[M]. Crystal growth morphology, 14-15(1999).

    [14] Li W D, Wang S L, Yu G W et al. Influence of supersaturation on growth and surface morphology of potassium dihydrogen phosphate crystals[J]. Journal of the Chinese Ceramic Society, 45, 955-960(2017).

    [15] Kim J S, Park Y H, Kim S M et al. Temperature-dependent emission spectra of M2SiO4∶Eu 2+ (M=Ca, Sr, Ba) phosphors for green and greenish white LEDs[J]. Solid State Communications, 133, 445-448(2005).

    Mingjun Xue, Liang Chen, Wei Xiong, Yao Zhou, Ying Li, Hui Yuan. Synthesis of Li2MoO4 Powder with Aqueous Solution Method and Li2MoO4 Single Crystal Growth[J]. Acta Optica Sinica, 2021, 41(11): 1116004
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