Photonics Research, Volume. 10, Issue 2, 381(2022)

SrAl2O4 crystallite embedded inorganic medium with super-long persistent luminescence, thermoluminescence, and photostimulable luminescence for smart optical information storage

Panpan Li, Youjie Hua, Renguang Ye, Muzhi Cai, Shiqing Xu, and Junjie Zhang*
Author Affiliations
  • Key Laboratory of Rare Earth Optoelectronic Materials and Devices of Zhejiang Province, Institute of Optoelectronic Materials and Devices, China Jiliang University, Hangzhou 310018, China
  • show less
    References(34)

    [1] M. Gu, X. Li, Y. Cao. Optical storage arrays: a perspective for future big data storage. Light Sci. Appl., 3, e177(2014).

    [2] W. Zhang, X. Liu, Q. Li, H. Tang, J. Xie, Z. Wang, C. Wang, L. Jiang, X. Zhang. Excellent thermal stability of Y2.94Al4−xSixGaO12:0.06Ce3+ phosphor for optical storage. J. Alloys Compd., 880, 160220(2021).

    [3] X. Lin, K. Deng, H. Wu, B. Du, B. Viana, Y. Li, Y. Hu. Photon energy conversion and management in SrAl12O19: Mn2+, Gd3+ for rewritable optical information storage. Chem. Eng. J., 420, 129844(2021).

    [4] Z. Long, J. Zhou, J. Qiu, Q. Wang, Y. Li, J. Wang, D. Zhou, Y. Yang, H. Wu, Y. Wen. Thermal engineering of electron-trapping materials for “Smart-Write-In” optical data storage. Chem. Eng. J., 420, 129788(2021).

    [5] P. Wen, Y. Xu, S. Li, Z. Sun, M. Panmai, J. Xiang, S. Tie, S. Lan. Two-dimensional closely-packed gold nanoislands: a platform for optical data storage and carbon dot generation. Appl. Surf. Sci., 555, 149586(2021).

    [6] Z. Hu, X. Huang, Z. Yang, J. Qiu, Z. Song, J. Zhang, G. Dong. Reversible 3D optical data storage and information encryption in photo-modulated transparent glass medium. Light Sci. Appl., 10, 140(2021).

    [7] Y. Zhuang, D. Chen, W. Chen, W. Zhang, X. Su, R. Deng, Z. An, H. Chen, R. J. Xie. X-ray-charged bright persistent luminescence in NaYF4:Ln3+@NaYF4 nanoparticles for multidimensional optical information storage. Light Sci. Appl., 10, 132(2021).

    [8] Y. Wang, D. Chen, Y. Zhuang, W. Chen, H. Long, H. Chen, R. J. Xie. NaMgF3:Tb3+@NaMgF3 nanoparticles containing deep traps for optical information storage. Adv. Opt. Mater., 9, 2100624(2021).

    [9] S. Lin, H. Lin, C. Ma, Y. Cheng, S. Ye, F. Lin, R. Li, J. Xu, Y. Wang. High-security-level multi-dimensional optical storage medium: nanostructured glass embedded with LiGa5O8:Mn2+ with photostimulated luminescence. Light Sci. Appl., 9, 22(2020).

    [10] T. Matsuzawa, Y. Aoki, N. Takeuchi, Y. Murayama. A new long phosphorescent phosphor with high brightness, SrAl2O4:Eu2+, Dy3 +. J. Electrochem. Soc., 143, 2670-2673(2019).

    [11] Z. Xue, S. Deng, Y. Liu. Synthesis and luminescence properties of SrAl2O4:Eu2+, Dy3+ nanosheets. Physica B, 407, 3808-3812(2012).

    [12] Y. F. Xu, D. K. Ma, M. L. Guan, X. A. Chen, Q. Q. Pan, S. M. Huang. Controlled synthesis of single-crystal SrAl2O4:Eu2+, Dy3+ nanosheets with long-lasting phosphorescence. J. Alloys Compd., 502, 38-42(2010).

    [13] H. Song, D. Chen. Combustion synthesis and luminescence properties of SrAl2O4:Eu2+, Dy3+, Tb3+ phosphor. Luminescence, 22, 554-558(2007).

    [14] S. Yu, P. Pi, X. Wen, J. Cheng, Z. Yang. Preparation and luminescence of SrAl2O4:Eu2+, Dy3+ phosphors coated with maleic anhydride. Can. J. Chem. Eng., 86, 30-34(2008).

    [15] J. M. Ngaruiya, S. Nieuwoudt, O. M. Ntwaeaborwa, J. J. Terblans, H. C. Swart. Resolution of Eu2+ asymmetrical emission peak of SrAl2O4:Eu2+, Dy3+ phosphor by cathodoluminescence measurements. Mater. Lett., 62, 3192-3194(2008).

    [16] P. Roldán Del Cerro, T. Salminen, M. Lastusaari, L. Petit. Persistent luminescent borosilicate glasses using direct particles doping method. Scr. Mater., 151, 38-41(2018).

    [17] T. Nakanishi. Preparation of europium-activated SrAl2O4 glass composites using the frozen sorbet technique. J. Ceram. Soc. Jpn., 123, 862-867(2015).

    [18] K. Shinozaki, T. Honma, M. Affatigato, T. Komatsu. Long afterglow in hexagonal SrAl2O4:Eu2+, Dy3+ synthesized by crystallization of glass and solidification of supercooled melts. J. Lumin., 177, 286-289(2016).

    [19] M. Yamashita, T. Imamura, S. Matsumoto, M. Murakami, T. Hongo, T. Akai, Y. Iwamoto. Enhancement of afterglow luminescence of long-lasting phosphor-glass composite by using refractive index matched glass. Key Eng. Mater., 702, 113-117(2016).

    [20] H. Yoshida, S. Fujino, T. Kajiwara. Afterglow luminance property of phosphorescent phosphor SrAl2O4:Eu2+, Dy3+-glass composites. J. Ceram. Soc. Jpn., 118, 784-787(2010).

    [21] B. Cheng, Z. Zhang, Z. Han, Y. Xiao, S. Lei. SrAl2O4:Eu2+, Dy3+ nanobelts: synthesis by combustion and properties of long-persistent phosphorescence. J. Mater. Res. Technol., 26, 2311-2315(2011).

    [22] Y. Wu, J. Gan, X. Wu. Study on the silica-polymer hybrid coated SrAl2O4:Eu2+, Dy3+ phosphor as a photoluminescence pigment in a waterborne UV acrylic coating. J. Mater. Res. Technol., 13, 1230-1242(2021).

    [23] T. Cai, S. Guo, Y. Li, D. Peng, X. Zhao, W. Wang, Y. Liu. “Ultra-sensitive mechanoluminescent ceramic sensor based on air-plasma-sprayed SrAl2O4:Eu2+, Dy3+ coating. Sens. Actuators A, 315, 112246(2020).

    [24] T. Nakanishi, Y. Katayama, J. Ueda, T. Honma, S. Tanabe, T. Komatsu. Fabrication of Eu:SrAl2O4-based glass ceramics using frozen sorbet method. J. Ceram. Soc. Jpn., 119, 609-615(2011).

    [25] X. Xu, Y. Wang, C. Zu, P. Zhou. Effect of 3B group in rings on special dispersion of B2O3-SiO2-ZrO2-Ta2O5-Na2O system glass. J. Wuhan Univ. Technol., 33, 1032-1038(2018).

    [26] K. Ding, N. Chen, G. Du, A. Zhang. Preparation, structures, thermal properties and sintering behaviors of B2O3-SiO2-ZnO-BaO-Al2O3 glass. J. Wuhan Univ. Technol., 31, 1323-1328(2016).

    [27] Y. Duan, P. Li, Y. Lu, S. Xu, J. Zhang. Enhanced luminescence of self-crystallized Cs4PbBr6 quantum dots via regulating glass ceramic network structure. Ceram. Int., 47, 24198-24206(2021).

    [28] J. Cui, X. Cao, L. Shi, Z. Zhong, P. Wang, L. Ma. The effect of substitution of Al2O3 and B2O3 for SiO2 on the properties of cover glass for liquid crystal display: structure, thermal, visco-elastic, and physical properties. Int. J. Appl. Glass Sci., 12, 443-456(2021).

    [29] O. Sherstyuk, A. Ivanova, M. Lebedev, M. Bukhtiyarova, L. Matvienko, A. Budneva, A. Simonov, V. Yakovlev. Transesterification of rapeseed oil under flow conditions catalyzed by basic solids: M-Al(La)-O (M = Sr, Ba), M-Mg-O (M = Y, La). Appl. Catal. A, 419-420, 73-83(2012).

    [30] J. Xu, Z. Chen, M. Gai, Y. Fan, C. He. Optically stimulated luminescence of Dy3+-doped NaCaPO4 glass-ceramics. J. Rare Earths, 38, 927-932(2020).

    [31] C. Wang, Y. Jin, Y. Lv, G. Ju, D. Liu, L. Chen, Z. Li, Y. Hu. Trap distribution tailoring guided design of super-long-persistent phosphor Ba2SiO4:Eu2+, Ho3+ and photostimulable luminescence for optical information storage. J. Mater. Chem. C, 6, 6058-6067(2018).

    [32] R. Chen. On the calculation of activation energies and frequency factors from glow curves. J. Appl. Phys., 40, 570-585(1969).

    [33] Y. Jia, W. Sun, R. Pang, T. Ma, D. Li, H. Li, S. Zhang, J. Fu, L. Jiang, C. Li. Sunlight activated new long persistent luminescence phosphor BaSiO3:Eu2+, Nd3+, Tm3+: optical properties and mechanism. Mater. Des., 90, 218-224(2016).

    [34] W. Wang, J. Yang, Z. Zou, J. Zhang, H. Li, Y. Wang. An isolated deep-trap phosphor for optical data storage. Ceram. Int., 44, 10010-10014(2018).

    Tools

    Get Citation

    Copy Citation Text

    Panpan Li, Youjie Hua, Renguang Ye, Muzhi Cai, Shiqing Xu, Junjie Zhang, "SrAl2O4 crystallite embedded inorganic medium with super-long persistent luminescence, thermoluminescence, and photostimulable luminescence for smart optical information storage," Photonics Res. 10, 381 (2022)

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical and Photonic Materials

    Received: Sep. 23, 2021

    Accepted: Dec. 7, 2021

    Published Online: Jan. 13, 2022

    The Author Email: Junjie Zhang (jjzhang@cjlu.edu.cn)

    DOI:10.1364/PRJ.444145

    Topics