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2. 29‐3: Late‐News Paper: Improvement of Chroma and Theoretical Analysis of Silver Deposition‐Based Multicolor Electrochromic Device
3. 48.1: Invited Paper: Applications for Bistable Electronic Paper Display without battery
4. 7.1: Invited Paper: Establishment and Simulation Optimization of Optical Fingerprint Recognition Structure in LCD Screen
5. 47.3: Invited Paper: Near IR Transmission System (NITS): LCD Enhancement Films Enabling High Performance Near IR Transparent LCDs
6. 41.2: Invited Paper: Crystal Control of Amorphous Silicon by Laser Annealing Using Blue Laser Diode
7. 55.1: Invited Paper: FMM‐free OLED Manufacturing Enabled by Photolithographic Patterning Processes
8. 26.1: Invited Paper: Display Evaluation for Advanced Human‐Robot Interaction
9. 5.1: Invited Paper: Preferred LCD and OLED Luminance In Daily Tasks Is Affected By Ambient Lighting and Age
10. 38‐2: Invited Paper: 12.3‐in Highly Transparent LCD by Scattering Mode with Direct Edge Light and Field‐Sequential Color‐Driving Method
11. 4‐1: Invited Paper: Highly Robust Flexible IGZO TFTs and Integrated Circuits
12. 66‐4: Invited Paper: Graphene Enhanced QD Image Sensor Technology
13. 64‐3: Invited Paper: High Optical Density Quantum Dot Pixel Color Conversion Films for Displays
14. 37‐1: Invited Paper: Ultra Wide Color Gamut and High Luminous Efficiency LCD by Environment‐Friendly Organic Material without Cadmium
15. 42‐2: Distinguished Paper: Effects of Luminance Contrast and Font Size on Dual‐Plane HUD Legibility ('The Double 007 Rule for HUDs')
16. 30‐1: Invited Paper: High Aspect Ratio OLED Microdisplay with Pin Mirror Lens for Small Form Factor AR Devices
17. 65‐7: Student Paper: Cd‐Free Quantum‐Dot Light‐Emitting Diode with a Mixed Single Layer to improve the Flatness of Current Efficiency
18. 37‐2: Invited Paper: 8K Zero Border LC Display
19. 13‐1: Invited Paper: Color Quality for Large MicroLED TV
20. 41‐2: Student Paper: High‐Dynamic‐Range HUD with a Polarization Selective Optical Combiner
21. 41‐1: Invited Paper: Dynamic Holography for Automotive Augmented‐Reality Head‐Up Displays (AR‐HUD)
22. 64‐1: Invited Paper: Challenges for Realizing QD‐LED Display
23. 36‐2: Invited Paper: LCD with Integrated In‐cell Fingerprint Sensor
24. 31‐5: Student Paper: Liquid Crystal Based 5 cm Adaptive Focus Lens to Solve Accommodation‐Convergence (AC) Mismatch Issue of AR/VR/3D Displays
25. 18‐2: Invited Paper: LCD Enhancement Films Enabling High‐Performance Near‐IR Transparent LCDs
26. 3‐3: Invited Paper: Development of Organic TFT Technology for Active‐Matrix Display Backplane
27. 47‐4: Student Paper: Ambient Light and Human Vision Effects on High‐Dynamic‐Range Displays
28. 50.2: Invited Paper: Characterization of Co‐Fabricated Silicon TFT and MEMS Shutter Display
29. 55.1: Invited Paper: Photolithographic patterning of OLED and OPD for invisible sensor integration in mobile display
30. 36.1: Invited Paper: Comparison in the Performance of Passive and Active TFT Pixel Sensing Circuits Using PIN Photodiode as the Light Sensing Device
31. 56.1: Invited Paper: A Holographic Waveguide Display with Polarization Volume Gratings
32. 18.2: Invited Paper: Single‐emitter 638nm laser diode with 4W continuous wave power
33. 38-1: Invited Paper : Recent Progress in Video Electronic Paper Displays based on Electro-fluidic Technology
34. 54.3: Invited Paper: Ultra‐high Contrast LCD Displays: Enabling Pixel‐Level Dimming with Dual‐Cell OLCDs
35. 57-1:Invited Paper: Measurement of Readability of E-paper
36. 62‐8: Invited Paper: High Color Gamut QDot ™ LCD Displays with Perovskite Quantum Dots: Devices Architecture, Performance and Reliability
37. 8‐4: Invited Paper: Transparent Zn Doped‐CuI for High‐Performance p‐Channel Thin Film Transistors
38. 39‐1: Invited Paper: Advanced Hyper‐Viewing Angle Controllable LCD
39. 20‐1: Invited Paper: Increasing OLED Stability: Plasmonic PHOLED
40. 40‐1: Invited Paper: New Liquid Crystal and Reactive Mesogens Mixtures for Passive and Active Photonic Components
41. 62‐7: Invited Paper: Quantum Dot Color Conversion for OLED and microLED Displays
42. 63‐2: Student Paper: Thin‐film Compatible Process High Resolution Patterning of Quantum Dots Light‐emitting Diodes
43. 32‐4: Student Paper: Chromatic Aberration Correction Enabled by Broadband Cholesteric Liquid‐Crystal Lens for Pancake Virtual‐Reality Optics
44. 82‐1: Invited Paper: Latest Status of Blue and Green Laser Diodes and Laser Packages for Display Applications
45. 3‐2: Invited Paper: A Wide Color Gamut LCD with a Polarized Laser Backlight
46. 72‐1: Invited Paper: Realizing Long Lifetime Blue Quantum Dots Light Emitting Diodes (QLEDs) through Quantum Dot Structure Tailoring
47. 44‐3: Invited Paper: Integration of additional functionalities into the frontplane of AMOLED displays
48. 47‐3: Invited Paper: High Brightness and RGB Integration of Eu‐doped GaN‐based Red LEDs for Ultrahigh‐resolution Micro‐LED Display
49. 51‐1: Invited Paper: Charge Injection Control of Cadmium‐Free Quantum Dot Light‐Emitting Diodes
50. 16‐1: Invited Paper: Hybrid Full‐Color Micro‐LED Display with Quantum Dots Color Conversion by Using Inkjet‐Printing and Photo‐Lithography Methods
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