• Journal of Inorganic Materials
  • Vol. 36, Issue 5, 513 (2021)
Zhaowu WANG1, Haipeng JI1,*, Feixiang WANG1, Xinghui HOU1..., Shasha YI1, Ying ZHOU1 and Deliang CHEN1,2,*|Show fewer author(s)
Author Affiliations
  • 11. School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China
  • 22. School of Materials Science and Engineering, Dongguan University of Technology, Dongguan 523808, China
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    DOI: 10.15541/jim20200386 Cite this Article
    Zhaowu WANG, Haipeng JI, Feixiang WANG, Xinghui HOU, Shasha YI, Ying ZHOU, Deliang CHEN. Valence State Control of Manganese in MgAl2O4:Mn4+ Phosphor by Varying the Al2O3 Crystal Form[J]. Journal of Inorganic Materials, 2021, 36(5): 513 Copy Citation Text show less
    References

    [1] L WANG, R J XIE, T SUEHIRO et al. Down-conversion nitride materials for solid state lighting: recent advances and perspectives. Chemical Reviews, 118, 1951-2009(2018).

    [2] M ZHAO, H X LIAO, L X NING et al. Next-generation narrow-band green-emitting RbLi(Li3SiO4)2:Eu2+ phosphor for backlight display application. Advanced Materials, 30, 1802489(2018).

    [3] J W QIAO, G J ZHOU, Y Y ZHOU et al. Divalent europium- doped near-infrared-emitting phosphor for light-emitting diodes. Nature Communications, 10, 5267(2019).

    [4] M ZHAO, H LIAO, M S MOLOKEEV et al. Emerging ultra- narrow-band cyan-emitting phosphor for white LEDs with enhanced color rendition. Light-Science & Application, 8, 38(2019).

    [5] Y Y ZHOU, L Y WANG, T T DENG et al. Recent advances in Mn4+-doped fluoride narrow-band red-emitting phosphors. Scientia Sinica Technologica, 47, 1111-1125(2017).

    [6] H P JI, Z T ZHANG, J XU et al. Advance in red-emitting Mn4+-activated oxyfluoride phosphors. Journal of Inorganic Materials, 35, 847-856(2020).

    [7] H P JI, X H HOU, M MOLOKEEV et al. Ultrabroadband red luminescence of Mn4+ in MgAl2O4 peaking at 651 nm. Dalton Transactions, 49, 5711-5721(2020).

    [8] Y D XU, D WANG, L WANG et al. Preparation and luminescent properties of a new red phosphor (Sr4Al14O25:Mn4+) for white LEDs. Journal of Alloys and Compounds, 550, 226-230(2013).

    [9] M Y PENG, X W YIN, P A TANNER et al. Orderly-layered tetravalent manganese-doped strontium aluminate Sr4Al14O25:Mn4+: an efficient red phosphor for warm white light emitting diodes. Journal of the American Ceramic Society, 96, 2870-2876(2013).

    [10] T SASAKI, J FUKUSHIMA, Y HAYASHI et al. Synthesis and photoluminescence properties of a novel Sr2Al6O11:Mn4+ red phosphor prepared with a B2O3 flux. Journal of Luminescence, 194, 446-451(2018).

    [11] X WANG, P F LI, M G BRIK et al. Thermal quenching of Mn4+ luminescence in SrAl12O19:Mn4+. Journal of Luminescence, 206, 84-90(2019).

    [12] B WANG, H LIN, J XU et al. CaMg2Al16O27:Mn4+-based red phosphor: a potential color converter for high-powered warm W-LED. ACS Applied Materials & Interfaces, 6, 22905-22913(2014).

    [13] S TAO, W F HUANG, Y S LIU et al. Three-dimensional hollow spheres of the tetragonal-spinel MgMn2O4 cathode for high-performance magnesium ion batteries. Journal of Materials Chemistry A, 6, 8210-8214(2018).

    [14] R X ZHONG, J H ZHANG, H Z WEI et al. The different luminescent characteristics of MgAl2O4:Mn2+ between phosphor powder and nanoparticles. Chemical Physics Letters, 508, 207-209(2011).

    [15] E H SONG, Y Y ZHOU, Y WEI et al. A thermally stable narrow- band green-emitting phosphor MgAl2O4:Mn2+ for wide color gamut backlight display application. Journal of Materials Chemistry C, 7, 8192-8198(2019).

    [16] Y WAKUI, Y J SHAN, K TEZUKA et al. Crystal-site engineering approach for preparation of MgB2O4:Mn2+,Mn4+(B=Al,Ga) phosphors: control of green/red luminescence properties. Materials Research Bulletin, 90, 51-58(2017).

    [17] Y L ZHANG, Y L LIU, L YANG et al. Preparation and luminescence properties of thermally stable Mn4+ doped spinel red-emitting ceramic phosphors. Journal of Luminescence, 220, 117016(2020).

    [18] N T K CHI, N V QUANG, N T TUAN et al. Deep red emitting MgAl2O4:Cr3+ phosphor for solid state lighting. Journal of Electronic Materials, 48, 5891-5899(2019).

    [19] Y L ZHANG, S HU, Y L LIU et al. Red-emitting Lu3Al5O12:Mn transparent ceramic phosphors: valence state evolution studies of Mn ions. Ceramics International, 44, 23259-23262(2018).

    [20] C J DUAN, A C A DELSING, H T HINTZEN. Photoluminescence properties of novel red-emitting Mn2+-activated MZnOS (M= Ca, Ba) phosphors. Chemistry of Materials, 21, 1010-1016(2009).

    [21] S KÜCK, S HARTUNG, S HURLING et al. Optical transitions in Mn3+-doped garnets. Physical Review B, 57, 2203-2216(1998).

    [22] Y L ZHANG, S HU, Y L LIU et al. Influences of thermal post-treatment on the Mn valence states and luminescence properties of red-emitting Lu3Al5O12:Mn4+ transparent ceramic phosphors. Optical Materials, 101, 109705(2020).

    [23] L CHEN, S XUE, X CHEN et al. The site occupation and valence of Mn ions in the crystal lattice of Sr4Al14O25 and its deep red emission for high color-rendering white light-emitting diodes. Materials Research Bulletin, 60, 604-611(2014).

    [24] H XU, L WANG, X MA et al. A novel Mn(II)-based green phosphor and its self-reduction mechanism. Journal of Luminescence, 194, 303-310(2018).

    Zhaowu WANG, Haipeng JI, Feixiang WANG, Xinghui HOU, Shasha YI, Ying ZHOU, Deliang CHEN. Valence State Control of Manganese in MgAl2O4:Mn4+ Phosphor by Varying the Al2O3 Crystal Form[J]. Journal of Inorganic Materials, 2021, 36(5): 513
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