• Photonics Research
  • Vol. 5, Issue 2, A1 (2017)
Ken T. Shimizu1、*, Marcel Böhmer2, Daniel Estrada1, Sumit Gangwal1, Stefan Grabowski3, Helmut Bechtel3, Edward Kang1, Kenneth J. Vampola1, Danielle Chamberlin1, Oleg B. Shchekin1, and Jyoti Bhardwaj1
Author Affiliations
  • 1Lumileds, LLC—370 West Trimble Road, San Jose, California 95131, USA
  • 2Lumileds Netherlands B.V., Beemdstraat 42, 5652 AB Eindhoven, The Netherlands
  • 3Lumileds, GmbH, Lumileds Development Center Aachen, Philipsstrasse 8, 52068 Aachen, Germany
  • show less
    DOI: 10.1364/PRJ.5.0000A1 Cite this Article Set citation alerts
    Ken T. Shimizu, Marcel Böhmer, Daniel Estrada, Sumit Gangwal, Stefan Grabowski, Helmut Bechtel, Edward Kang, Kenneth J. Vampola, Danielle Chamberlin, Oleg B. Shchekin, Jyoti Bhardwaj. Toward commercial realization of quantum dot based white light-emitting diodes for general illumination[J]. Photonics Research, 2017, 5(2): A1 Copy Citation Text show less
    References

    [1] A. P. Alivisatos. Semiconductor clusters, nanocrystals, and quantum dots. Science, 271, 933-937(1996).

    [2] D. V. Talapin, A. L. Rogach, A. Kornowski, M. Haase, H. Weller. Highly luminescent monodisperse CdSe and CdSe/ZnS nanocrystals synthesized in a hexadecylamine-trioctylphosphine oxide-trioctylphospine mixture. Nano Lett., 1, 207-211(2001).

    [3] S. F. Wuister, I. Swart, F. van Driel, S. G. Hickey, C. D. Donega. Highly luminescent water-soluble CdTe quantum dots. Nano Lett., 3, 503-507(2003).

    [4] Y. Gao, X. Peng. Photogenerated excitons in plain core CdSe nanocrystals with unity radiative decay in single channel: the effects of surface and ligands. J. Am. Chem. Soc., 137, 4230-4235(2015).

    [5] P. Reiss, J. Bleuse, A. Pron. Highly luminescent CdSe/ZnSe core/shell nanocrystals of low size dispersion. Nano Lett., 2, 781-784(2002).

    [6] F. Pinaud, X. Michalet, L. A. Bentolila, J. M. Tsay, S. Doose, J. J. Li, G. Iyer, S. Weiss. Advances in fluorescence imaging with quantum dot bio-probes. Biomaterials, 27, 1679-1687(2006).

    [7] H. E. Grecco, K. A. Lidke, R. Heintzmann, D. S. Lidke, C. Spagnuolo, O. E. Martinez, E. A. Jares-Erijman, T. M. Jovin. Ensemble and single particle photophysical properties (two-photon excitation, anisotropy, FRET, lifetime, spectral conversion) of commercial quantum dots in solution and in live cells. Microsc. Res. Tech., 65, 169-179(2004).

    [8] E. Virey. From Technologies to Market Phosphors and Quantum Dots LED Downconverters for Lighting and Display Applications(2015).

    [9] R. J. Nick, C. A. Breen, C. M. Denton, S. Sadasivan, J. R. Linton. Method of making components including quantum dots, methods and products. U.S. patent(2014).

    [10] Q. Hong, K.-C. Lee, Z. Luo, S.-T. Wu. High-efficiency quantum dot remote phosphor film. Appl. Opt., 54, 4617-4622(2015).

    [11] H. Kim, J. Y. Han, D. S. Kang, S. W. Kim, D. S. Jang, M. Suh, A. Kirakosyan, D. Y. Jeon. Characteristics of CuInS2/ZnS quantum dots and its application on LED. J. Cryst. Growth, 326, 90-93(2011).

    [12] S. R. Cordero, P. J. Carson, R. A. Estabrook, G. F. Strouse, S. K. Buratto. Photo-activated luminescence of CdSe quantum dot monolayers. J. Phys. Chem. B, 104, 12137-12142(2000).

    [13] S. Jun, J. Lee, E. Jang. Highly luminescent and photostable quantum dot-silica monolith and its application to light-emitting diodes. ACS Nano, 7, 1472-1477(2013).

    [14] T. Erdem, S. Nizamoglu, X. W. Sun, H. V. Demir. A photometric investigation of ultra-efficient LEDs with high color rendering index and high luminous efficacy employing nanocrystal quantum dot luminophores. Opt. Express, 18, 340-347(2010).

    [15] . LUXEON 3535L Line(2016).

    [16] A. R. Duggal, A. M. Srivastava, L. M. Levinson, S. J. Duclos. Color tunable light source. U.S. patent(2002).

    [17] H. Chen, C. Hsu, H. Hong. InGaN–CdSe–ZnSe quantum dots white LEDs. IEEE Photon. Technol. Lett., 18, 2005-2007(2006).

    [18] J. Cui, A. P. Beyler, T. S. Bischof, M. W. B. Wilson, M. G. Bawendi. Deconstructing the photon stream from single nanocrystals: from binning to correlation. Chem. Soc. Rev., 43, 1287-1310(2014).

    [19] C. Pu, X. Peng. To battle surface traps on CdSe/CdS core/shell nanocrystals: shell isolation versus surface treatment. J. Am. Chem. Soc., 138, 8134-8142(2016).

    [20] Y. Ohno. Spectral design considerations for white LED color rendering. Opt. Eng., 44, 111302(2005).

    [21] J. Brodrick, N. Bardsley, M. Hansen, L. Pattison, M. Pattison, K. Stober, V. Taylor, J. Tsao, M. Yamada. Solid-State Lighting 2016 R&D Plan(2016).

    [22] P. Pust, V. Weiler, C. Hecht, A. Tücks, A. S. Wochnik, A. Henß, D. Wiechert, C. Scheu, P. J. Schmidt, W. Schnick. Narrow-band red-emitting Sr[LiAl3 N4]:Eu2+ as a next-generation LED-phosphor material. Nat. Mater., 13, 891-896(2014).

    [23] C. Tu, J. H. Hoo, K. F. Böhringer, L. Y. Lin, G. Cao. Red-emitting silicon quantum dot phosphors in warm white LEDs with excellent color rendering. Opt. Express, 22, A276-A281(2014).

    [24] S. Kim, K. Taehoon, S.-W. K. Kim. Highly luminescent InP/GaP/ZnS nanocrystals and their application to white LED SI, 1-9(2011).

    [25] A. Swarnkar, R. Chulliyil, V. K. Ravi, M. Irfanullah, A. Chowdhury, A. Nag. Colloidal CsPbBr3 perovskite nanocrystals: luminescence beyond traditional quantum dots. Angew. Chem., 54, 15424-15428(2015).

    [26] N. Pradhan, X. Peng. Efficient and color-tunable Mn-doped ZnSe nanocrystal emitters: control of optical performance via greener synthetic chemistry. J. Am. Chem. Soc., 129, 3339-3347(2007).

    [27] A. Mnoyan, Y. Lee, H. Jung, S. Kim. Phosphors, Up Conversion Nano Particles, Quantum Dots and their Applications, 2, 437-471(2016).

    [28] J. Lee, V. C. Sundar, J. R. Heine, M. G. Bawendi, K. F. Jensen. Full color emission from II ± VI semiconductor. Adv. Mater., 12, 1102-1105(2000).

    CLP Journals

    [1] Jia-Sheng Li, Yong Tang, Zong-Tao Li, Long-Shi Rao, Xin-Rui Ding, Bin-Hai Yu. High efficiency solid–liquid hybrid-state quantum dot light-emitting diodes[J]. Photonics Research, 2018, 6(12): 1107

    [2] Bega Karadza, Hannes Van Avermaet, Leila Mingabudinova, Zeger Hens, Youri Meuret. Efficient, high-CRI white LEDs by combining traditional phosphors with cadmium-free InP/ZnSe red quantum dots[J]. Photonics Research, 2022, 10(1): 155

    [3] Shudong Yu, Yong Tang, Zongtao Li, Kaihang Chen, Xinrui Ding, Binhai Yu. Enhanced optical and thermal performance of white light-emitting diodes with horizontally layered quantum dots phosphor nanocomposites[J]. Photonics Research, 2018, 6(2): 90

    [4] Benjamin D. Mangum, Tiemo S. Landes, Brian R. Theobald, Juanita N. Kurtin. Exploring the bounds of narrow-band quantum dot downconverted LEDs[J]. Photonics Research, 2017, 5(2): A13

    Ken T. Shimizu, Marcel Böhmer, Daniel Estrada, Sumit Gangwal, Stefan Grabowski, Helmut Bechtel, Edward Kang, Kenneth J. Vampola, Danielle Chamberlin, Oleg B. Shchekin, Jyoti Bhardwaj. Toward commercial realization of quantum dot based white light-emitting diodes for general illumination[J]. Photonics Research, 2017, 5(2): A1
    Download Citation