Journal of Inorganic Materials, Volume. 38, Issue 7, 731(2023)

Research Progress of Radio-photoluminescence Materials and Their Applications

Qianli LI1... Naixin LI1, Yucheng LI1, Shenye LIU2, Shuai CHENG3, Guang YANG1, Kuan REN2,*, Feng WANG2, and Jingtai ZHAO13,* |Show fewer author(s)
Author Affiliations
  • 11. School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China
  • 22. Laser Fusion Research Center, China Academy of Engineering Physics, Mianyang 621050, China
  • 33. Guangxi Key Laboratory of Information Materials, Guilin University of Electronic Technology, Guilin 541004, China
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    Figures & Tables(9)
    RPL materials and their applications
    Schematic diagram of three general luminescence mechanism, and RPL responses and RPL centers of Ag-doped materials, Al2O3:C,Mg and LiF
    RPL and its responses of Cu-doped materials
    RPL responses, reusability and effectiveness of RPL in relation to band gap energy of host in Sm-doped materials
    RPL responses of other novel materials and their crystal structure of MOF
    RPL materials for radiation dosimetry
    RPL materials for FNTD and MRT
    RPL materials for radiation imaging
    • Table 1. Different kinds of RPL materials

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      Table 1. Different kinds of RPL materials

      No.MaterialMaterial formaRPL centerλem/mm λex/mm Sensitivity/GyBuild-upRef.
      1NaPO3-Al(PO3)3:AgGlassAg0,400-500325/3391×10-6-10Yesb[22-24]
      Ag2+, Ag2+600-700
      2LiPO4-Al(PO3)3:AgGlassAg2+630340[25]
      3KPO3-Al(PO3)3:AgGlassAg2+550-700300-3500.1-10[26]
      4P2O5-Al2O3-Na2O-SiO2:AgGlassAg04603100.1×10-3-10Yes[27]
      Ag2+, Ag2+630
      5NaCl:AgS.CAg0550-650289[28]
      500-600339
      6KCl:AgS.CAg0400-550289[28]
      500-700339
      7Al2O3:C,MgS.C.F+(Mg)3252552×10-3-200Yes[11,19, 29]
      F2500300
      F2+(2Mg)750355
      F22+(2Mg)510435
      8LiF:MgS.C.F3+, F25304500.1-1.4×104Yes[30]
      9MgF2:SmP.C.Sm2+700-8003401-1×103No[31]
      10SrB4O7:SmP.C.Sm2+670-8304080.2-5×103[32]
      11BaAlBO3F2:SmG.C.Sm2+670-850300-5000.01-10No[33]
      12CaSO4:SmP.C.Sm2+600-9003000.015-5No[34]
      13Ca2SiO4:EuP.C.Eu2+500-800250-5000.01-10[35]
      14BaAlBO3F2:EuG.C.Eu2+510300-4500.02-10Yes[36]
      15KCaPO4:EuP.C.Eu2+610200-5000.01-10[37]
      490350
      1690KPO3-10Al2O3:CeS.C.Ce3+300-4003101×10-5-1[38]
      17NaCl:YbS.C.Yb2+425-430200-4000.1-100[39]
      18C:NS.C. filmNV689546Yes[40]
      19SiO2-B2O3-Al2O3-Na2O:CuGlassCu+500-800240~500Yes[41]
      20MgF2P.C.415340100-1000Yes[42]
      700
      21CaF2S.C.F2+660370/560[43]
      (F2+)A760390/610
      22CaF2:NaS.C.(F2+)A750390/6101×10-5-10[44]
      F3950450/610
      23Li2CO3P.C.4703401×10-5-0.1[45]
      24K2CO3P.C.4403401×10-3-10[46]
      25CaSO4P.C.6905904×10-4-5No[47]
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    Qianli LI, Naixin LI, Yucheng LI, Shenye LIU, Shuai CHENG, Guang YANG, Kuan REN, Feng WANG, Jingtai ZHAO. Research Progress of Radio-photoluminescence Materials and Their Applications[J]. Journal of Inorganic Materials, 2023, 38(7): 731

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    Paper Information

    Category:

    Received: Nov. 14, 2022

    Accepted: --

    Published Online: Dec. 28, 2023

    The Author Email: REN Kuan (yunlongrk1990@sina.com), ZHAO Jingtai (jtzhao@guet.edu.cn)

    DOI:10.15541/jim20220677

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