Optical Technique, Volume. 48, Issue 6, 668(2022)

Research on fluorescence properties of Cr3+in matrix LiScSi2O6 and device performance of as-Fabricated pc-LED

CHEN Xuehua1 and HU Zhenhua2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    References(30)

    [1] [1] Li Stan Z, Chu Rufeng, Liao Shengcai, et al. Illumination invariant face recognition using near-infrared imagines[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence,2007,29(4):627-639.

    [2] [2] Staples J. Surveillance System enables 24-hour target acquisition[J]. Photonics Spectra,2012,46(12):57-58.

    [3] [3] Rose-Pehrsson S L, Minor C P, Steinhurst D A, et al. Volume sensor for damage assessment and situational awareness[J]. Fire Safety Journal,2006,41(4):301-313.

    [4] [4] Markus R PhD, Martin R, Markus S. Molecular imagine in drug discovery and development: Potential and limitations of nonnuclear methods[J]. Molecular Imagine and Biology,2005,7(2):5-7.

    [5] [5] Hain M, Bartl J, JAcko V, et al. The use of infrared radiation in measurement and non-destructive testing[J]. Measurement Science Review,2005,5(3):10-14.

    [6] [6] Tsuchikawa S. A review of recent near infrared research for wood and paper[J]. Applied Spectroscopy Reviews,2007,42(1):43-71.

    [7] [7] Luo Yunqiao, Xiao Jingbo, Zhi Yingjian, et al. Fuzzy evaluation of IP network running quality using WOWA[C]∥ International Conference on Advanced Computer Control, Shenyang,China:IEEE,2010:51-55.

    [8] [8] Agrawal D, Karar V, Kapur P, et al. Multispectral image fusion for enhancing situation awareness: A review[J]. Iete Technical Review,2014,31(6):463-470.

    [9] [9] Scholkmann F, Kleiser S, Metz A J, et al. A Review on continuous wave functional near-infrared spectroscopy and imaging instrumentation and methodology[J]. NeuroImage,2014,85(1):6-27.

    [10] [10] Fuchi S, Sakano A, Takeda Y. Wideband infrared emission from Yb3+-doped Bi2O3 glass phosphor for an optical coherence tomography light source[J]. Journal of Applied Physics,2008,47(10):7932-7935.

    [11] [11] Fuchi S, Sakano A, Mizutani R, et al. High power and high resolution near-infrared light source for optical coherence tomography using glass phosphor and light emitting diode[J]. Applied Physics Express,2009,2(3):032102.

    [12] [12] Uemura H, Fuchi S, Kato R, et al. Development of Near-infrared absorption spectrometry system by using nir wideband glass phosphor LED[J]. Journal of physics. Conference series,2015,619(1):012053.

    [13] [13] Nishimura S, Fuchi S, Takeda Y. Luminescence properties of Tm2O3-doped oxide glasses for NIR wideband light source[J]. Journal of Electronic Materials,2017,28(10):7157-7162.

    [14] [14] Gao Xuejun, Li Wei, Yang Xiaoliang, et al. Near-infrared emission of Er3+ sensitized by Mn4+ in Ca14Zn6Al10O35 matrix[J]. Journal of Physical Chemistry C,2015,119(50):28090-28098.

    [15] [15] Mller S, Katelnikovas A, Haase M, et al. New NIR emitting phosphor for blue LEDs with Stable light output up to 180℃[J]. Journal of Luminescence,2016,172:185-190.

    [16] [16] Zhang Liangliang, Sheng Hao, Xiao Zhendong, et al. A high efficiency broad-band near-infrared Ca2LuZr2Al3O12∶Cr3+ garnet phosphor for blue LED chips[J]. Journal of Materials Chemistry C,2018, 6(18):4967-4976.

    [17] [17] Zhang Liangliang, Wang Dandan, Hao Zhendong, et al. Cr3+-doped broadband NIR garnet phosphor with enhanced luminescence and its application in NIR spectroscopy[J]. Advanced Optical Materials,2019,7(12):1900185.

    [18] [18] Song Enhai, Ming Hong, Zhou Yayun, et al. Cr3+-Doped Sc-Based fluoride enabling highly efficient near-infrared luminescence: A case study of K2NaScF6∶Cr3+[J]. Laser & Photonics Reviews,2020,15(2):2000410.

    [19] [19] Struve B, Huber G. The effect of the crystal field strength on the optical spectra of Cr3+ in gallium garnet laser crystals[J]. Applied Physics B,1985,36(4):195-201.

    [20] [20] Henderson B, Imbusch G F. Optical spectroscopy of inorganic solids[M]. Oxford: Clarendon Press,1989:408-415.

    [21] [21] Uitert L G V, Johnson L F. Energy transfer between rare-earth ions[J]. Journal of Luminescence,1966,44(9):3514-3522.

    [22] [22] Huang Chienhao, Chiu Yichen, Yeh YaoTsung, et al. Eu2+-activated Sr8ZnSc(PO4)7: A novel near-infrared ultraviolet converting yellow-emitting phosphor for white light-emitting diodes[J]. ACS Applied Materials & Interfaces,2012,4(12):6661-6668.

    [23] [23] Blasse G. Energy transfer in oxidic phosphors[J]. Physics Letters A,1968,28(6):444-445.

    [24] [24] Senden T Dijk-Moes R J A V, Meijerink A. Quenching of the red Mn4+ luminescence in Mn4+-doped fluoride LED phosphors[J]. Light: Science & Applications,2018,7(8):13.

    [25] [25] Endale T Basore, Wenge Xiao, Xiaofeng Liu, et al. Broadband near-infrared garnet phosphors with near-unity internal quantum efficiency[J]. Adv. Optical Mater,2020,8:2000296.

    [26] [26] Bhushan S, Chukichev M. Temperature dependent studies of cathodoluminescence of green band of ZnO crystals[J]. Journal of Materials Science Letters,1988,7(4):319-321.

    [27] [27] Yao Leqi, Shao Qiyue, Han Shouyun, et al. Enhancing near-infrared photoluminescence intensity and spectral properties in Yb3+ codoped LiScP2O7∶Cr3+[J]. Chemistry of Materials,2020,32:2430-2439.

    [28] [28] Jia Zhenwei, Yuan Chexu, Liu Yongfu, et al. Strategies to approach high performance in Cr3+-doped phosphors for high-power NIR-LED[J]. Light:Science & Applications,2020,9(1):86.

    [29] [29] Shao QiYue, Hao Ding, Yao Leqi, et al. Broadband near-infrared light source derived from Cr3+-doped phosphors and a blue LED chip[J]. Optics Letters,2018,43(21):5251-5254.

    [30] [30] Chen Xuehua, Song Enhai, Zhou Yayun, et al. Distorted-octahedral site-occupation induced high efficiency broadband near infrared emission in LiScGe2O6∶Cr3+ phosphor[J]. Journal of Materials Chemistry C,2021,9:13527-14032

    Tools

    Get Citation

    Copy Citation Text

    CHEN Xuehua, HU Zhenhua. Research on fluorescence properties of Cr3+in matrix LiScSi2O6 and device performance of as-Fabricated pc-LED[J]. Optical Technique, 2022, 48(6): 668

    Download Citation

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

    Category:

    Received: Apr. 17, 2022

    Accepted: --

    Published Online: Jan. 20, 2023

    The Author Email:

    DOI:

    CSTR:32186.14.

    Topics