Chinese Optics, Volume. 15, Issue 1, 132(2022)
Illustrating the Helmholtz-Kohlrausch effect of quantum dots enhanced LCD through a comparative study
[1] ERDEM T, DEMIR H V. Color science of nanocrystal quantum dots for lighting and displays[J]. Nanophotonics, 2, 57-81(2013).
[2] SMITH A R. Color gamut transform pairs[J]. ACM Siggraph Computer Graphics, 12, 12-19(1978).
[3] CHEN H W, ZHU R D, HE J, et al. Going beyond the limit of an LCD's color gamut[J]. Light: Science & Applications, 6, e17043(2017).
[4] CHEN H W, LEE J H, LIN B Y, et al. Liquid crystal display and organic light-emitting diode display: present status and future perspectives[J]. Light: Science & Applications, 7, 17168(2018).
[5] OWEN J, BRUS L. Chemical synthesis and luminescence applications of colloidal semiconductor quantum dots[J]. Journal of the American Chemical Society, 139, 10939-10943(2017).
[6] SHU Y F, LIN X, QIN H Y, et al. Quantum dots for display applications[J]. Angewandte Chemie International Edition, 59, 22312-22323(2020).
[7] CHANG S, BAI Z L, ZHONG H ZH. In situ fabricated perovskite nanocrystals: a revolution in optical materials[J]. Advanced Optical Materials, 6, 1800380(2018).
[8] SHIRASAKI Y, SUPRAN G J, BAWENDI M G, et al. Emergence of colloidal quantum-dot light-emitting technologies[J]. Nature Photonics, 7, 13-23(2013).
[9] KAZLAS P T, ZHOU Z Q, STEVENSON M, et al. 32.4: quantum dot light emitting diodes for full-color active-matrix displays[J]. SID Symposium Digest of Technical Papers, 41, 473-476(2010).
[10] JANG E, JUN S, JANG H, et al. White-light-emitting diodes with quantum dot color converters for display backlights[J]. Advanced Materials, 22, 3076-3080(2010).
[11] COE-SULLIVAN S, ZHOU ZH Q, NIU Y H, et al. 12.2:
[12] GUAN X Y, WANG H ZH, SHEN H B, et al. Research progress of quantum dot light-emitting devices for display application[J]. Chinese Journal of Liquid Crystals and Displays, 36, 176-186(2021).
[13] LI J J, NIE X M, ZHEN W, et al. New developments and comparisons in display technology[J]. Chinese Journal of Liquid Crystals and Displays, 33, 74-84(2018).
[14] BOURZAC K. Quantum dots go on display: adoption by TV makers could expand the market for light-emitting nanocrystals[J]. Nature, 493, 283(2013).
[15] CHOI M K, YANG J, HYEON T, et al. Flexible quantum dot light-emitting diodes for next-generation displays[J]. npj Flexible Electronics, 2, 10(2018).
[16] JI H L, ZHOU Q CH, PAN J, et al. Advances and prospects in quantum dots based backlights[J]. Chinese Optics, 10, 666-680(2017).
[17] YE Y, YU J H, LIN SH Y, et al. Progress of quantum dot backlight technology[J]. Chinese Optics, 13, 14-27(2020).
[18] DONOFRIO R L. Review paper: the helmholtz-kohlrausch effect[J]. Journal of the Society for Information Display, 19, 658-664(2011).
[19] SHIZUME T, OHASHI G, TAKAMATSU H, et al. Estimation of the Helmholtz-Kohlrausch effect for natural images[J]. Journal of the Society for Information Display, 22, 588-596(2014).
[20] CHEN H W, HE J, WU S T. Recent advances on quantum-dot-enhanced liquid-crystal displays[J]. IEEE Journal of Selected Topics in Quantum Electronics, 23, 1900611(2017).
[21] TSUJIMURA T, ZHU W, MIZUKOSHI S, et al. 8.1:
[22] LIAO S F, CHOU H Y, YANG T H, et al. 20.1: perceived brightness of LED projector[J]. SID Symposium Digest of Technical Papers, 40, 262-264(2009).
[23] LIAO S F, YANG T H, LEE C C, et al. 18.4: color perception in LED projectors[J]. SID Symposium Digest of Technical Papers, 42, 229-231(2011).
[24] MANDERS J R, QIAN L, TITOV A, et al. High efficiency and ultra-wide color gamut quantum dot LEDs for next generation displays[J]. Journal of the Society for Information Display, 23, 523-528(2015).
[25] LUO ZH Y, XU D M, WU S T. Emerging quantum-dots-enhanced LCDs[J]. Journal of Display Technology, 10, 526-539(2014).
[26] CORNSWEET T N, TELLER D Y. Relation of increment thresholds to brightness and luminance[J]. Journal of the Optical Society of America, 55, 1303-1308(1965).
[27] UCHIKAWA K, UCHIKAWA H, KAISER P K. Equating colors for saturation and brightness: the relationship to luminance[J]. Journal of the Optical Society of America, 72, 1219-1224(1982).
[28] UCHIKAWA K, UCHIKAWA H, KAISER P K. Luminance and saturation of equally bright colors[J]. Color Research & Application, 9, 5-14(1984).
[29] KAISER P K. Sensation luminance: a new name to distinguish CIE luminance from luminance dependent on an individual's spectral sensitivity[J]. Vision Research, 28, 455-456(1988).
[30] KAISER P K. Models of heterochromatic brightness matching[J]. CIE Journal, 5, 57-59(1986).
[31] NAYATANI Y, UMEMURA Y, SOBAGAKI H, et al. Lightness perception of chromatic object colors[J]. Color Research & Application, 16, 16-25(1991).
[32] NAYATANI Y. Simple estimation methods for the Helmholtz-Kohlrausch effect[J]. Color Research & Application, 22, 385-401(1997).
[33] [33] State Administration of Radio, Film, Television. GYT 1341998 The method f subjective assessment of the quality of digital television picture[S]. Institute of Stardization Planning, State Administration of Radio, Film Television, 1999. (in Chinese)
[34] KASHANI A H, ZIMMER-GALLER I E, SHAH S M, et al. Retinal thickness analysis by race, gender, and age using stratus OCT[J]. American Journal of Ophthalmology, 149, 496-502(2010).
[35] ZHANG P Q, WANG D, LV ZH H, et al. Review of determinants of healthy display[J]. Chinese Journal of Liquid Crystals and Displays, 35, 981-990(2020).
[36] SHI D M, YANG B. Current development and trend of quantum dot materials and display technology[J]. Science and Technology in China, 8-10(2017).
[37] LYU M, ZHANG L, ZHANG Y, et al. Strategies for improving the stability of quantum dots light-emitting diodes[J]. Chinese Optics, 14, 117-134(2021).
Get Citation
Copy Citation Text
Hong-lei JI, Shang-jun CHENG, Peng-fei LI, Yan ZHANG, Zi-yi GE, Hai-zheng ZHONG. Illustrating the Helmholtz-Kohlrausch effect of quantum dots enhanced LCD through a comparative study[J]. Chinese Optics, 2022, 15(1): 132
Category: Original Article
Received: Mar. 17, 2021
Accepted: May. 28, 2021
Published Online: Jul. 27, 2022
The Author Email: Peng-fei LI (pengfei7.li@tcl.com), Hai-zheng ZHONG (hzzhong@bit.edu.cn)