Publication Cover
LEUKOS
The Journal of the Illuminating Engineering Society
Volume 16, 2020 - Issue 4
128
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Temporal Luminescence of Broadband Light-Emitting Diodes and Their Use for Generating Customizable White Light

&
Pages 303-314 | Received 27 Jan 2016, Accepted 18 Dec 2019, Published online: 15 Jan 2020

References

  • Aloshyna M, Sivakumar S, Venkataramanan M, Brolo AG, van Veggel FCJM. 2007. Significant suppression of spontaneous emission in SiO2 photonic crystals made with Tb3+-doped LaF3 nanoparticles. J Phys Chem C. 111:4047–4051.
  • Al-waisawy S, George AF, Jadwisienczak WM, Rahman F. 2016. Preparation of balanced trichromatic white phosphors for solid-state white lighting. Luminescence. 32:791–799.
  • Bos AJJ, Duijvenvoorde RM, Kolk E, Drozdowski W, Dorenbos W. 2011. Thermoluminescence excitation spectroscopy: a versatile technique to study persistent luminescence phosphors. J Lumin. 131:1465–1471.
  • Bozyigit D, Wood V. 2013. Challenges and solutions for high-efficiency quantum dot-based LEDs. MRS Bull. 38:731–736.
  • Burbano DCR, Sharma SK, Dorenbos P, Viana B, Capobianco JA. 2015. Nanophosphors: persistent and photostimulated red emission in CaS:Eu2+,Dy3+ nanophosphors. Adv Opt Mater. 3:415–419.
  • Eeckhout K, Smet PF, Poelman D. 2010. Persistent luminescence in Eu2+-doped compounds: a review. Materials. 3:2536–2566.
  • Fujita S, Umahara Y, Tanabe S. 2010. Influence of light scattering on luminous efficacy in Ce: YAG glass-ceramic phosphor. J Ceram Soc Jpn. 118:128–131.
  • Fujiwara K, Sawada T. 2006. Design and development of an LED-artificial sunlight source system prototype capable of controlling relative spectral power distribution. J Light Vis Env. 30:170–176.
  • Han S, Wang Y, Zeng W, Chen W. 2016. An outlook of rare-earth activated persistent luminescence mechanisms. J Rare Earths. 34:245–250.
  • Jin Y, Hu Y, Chen L, Ju G, Wu H, Mu Z, He M, Xue F. 2016. Luminescent properties of a green long persistent phosphor Li2MgGeO4:Mn2+. Opt Mater Express. 6:929–937.
  • Kirakosyan A, Mnoyan A, Cheong SH, Lee GY, Jeon DY. 2013. Double-color emitting SrSi2O2N2: Eu2+,Yb2+oxynitridosilicate phosphor for warm white-light emitting diode with highly stable color chromaticity. ECS J Solid State Sci Technol. 2:R5–R8.
  • Lei Z, Xia G, Ting L, Xiaoling G, Ming LQ, Guangdi S. 2007. Color rendering and luminous efficacy of trichromatic and tetrachromatic LED-based white LEDs. Microelectron J. 38:1–6.
  • Lewenstein M, Mossberg TW, Glauber RJ. 1987. Dynamical suppression of spontaneous emission. Phys Rev Lett. 59:775–778.
  • Li Y, Gecevicius M, Qiu J. 2016. Long persistent phosphors—from fundamentals to applications. Chem Soc Rev. 45:2090–2136.
  • Lo Y-K, Wu K-H, Pai K-J, Chiu H-J. 2009. Design and implementation of RGB LED drivers for LCD backlight modules. IEEE Trans Ind Electron. 56:4862–4871.
  • Loo KH, Lai YM, Tan S-C, Tse CK. 2012. On the color stability of phosphor-converted white LEDs under DC, PWM, and bilevel drive. IEEE TransPower Electron. 27:974–984.
  • McKittric J, Shea-Rohwer LE. 2014. Review: down conversion materials for solid-state lighting. J Am Chem Soc. 97:1327–1352.
  • Muthu S, Schuurmans FJP, Pashley MD. 2002. Red, green, and blue LEDs for white light illumination. IEEE J of Sel Top Quantum Electron. 8:333–338.
  • Okumura J, Kozawa Y, Umeda Y, Habuchi H. 2018. Hybrid PWM/DPAM dimming control for digital color shift keying using RGB-LED array. IEEE J Sel Areas Commun. 36:45–52.
  • Piao X, Horikawa T, Hanzawa H, Machida K. 2006. Characterization and luminescence properties of Sr2 Si5N8: Eu2+phosphor for white light-emitting-diode illumination. Appl Phys Lett. 88:161908(3pp).
  • Poelman D, Van Haecke JE, Smet PF. 2009. Advances in sulfide phosphors for displays and lighting. J Mater Sci Mater Electron. 20:S134–S138.
  • Rahman F. 2012. Broadband LEDs enhance color fidelity. Compound Semicond. 18:49–52.
  • Rahman F. 2013a. The bright present and brighter future of LED technology. Silicon Chip. 26:14–17.
  • Rahman F. 2013b. High color definition lighting with broadband LEDs. Opt Photonics News. 24:28–34.
  • Rahman F. 2014. Solid-state lighting with wide band gap semiconductors. MRS Energy Sustainability. 1:e6-1-e6-18.
  • Rahman F, Jadwisiencsak W. 2014. Phosphors – the driving force behind LEDs. Compound Semicond. 20:56–59.
  • Schubert EF, Kim JK, Luo H. 2006. Solid-state lighting—a benevolent technology. Rep Prog Phys. 69:3069–3099.
  • Srividya R, Kurian CP, Srinivasan CR, Velickovic D. 2015. Implementation of a tunable RGB LED light source. Int J Control Theory Appl. 8:1251–1260.
  • Sung W-T, Lin J-S. 2013. Design and implementation of a smart LED lighting system using a self adaptive weighted data fusion algorithm. Sensors. 13:16915–16939.
  • Xie R, Hirosaki N, Kimura N, Sakuma K, Mitomo M. 2007. 2-phosphor-converted white light-emitting diodes using oxynitride/nitride phosphors. Appl Phys Lett. 90:191101(3pp).
  • Zukaukas A, Shur M, Gaska R. 2002. Introduction to solid-state lighting. New York (NY): John Wiley and Sons.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.