State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Fiber Laser Materials and Applied Techniques, Guangdong Engineering Technology Research and Development Center of Special Optical Fiber Materials and Devices, South China University of Technology, Guangzhou, 510641, P. R. China.
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, KLGHEI of Environment and Energy Chemistry, School of Chemistry, Sun Yat-sen University, Guangzhou, 510006, P. R. China.
Adv Mater. 2022 Dec;34(50):e2206278. doi: 10.1002/adma.202206278. Epub 2022 Nov 9.
Transparent displays (TDs) rendering "levitating" images on screen have appeared as an emerging technology toward augmented/mixed reality applications. However, the traditional phosphor design and screen construction have severely limited the TD performance owing to the lack of efficient narrow-band blue emitters and stable screen structure. Herein, the novel narrow-band (full width at half maximum: 32 nm) NaLi SiO :Eu phosphor with a peak at 467 nm as a key blue emitter is explored, and it is sandwiched in layered film as a unique screen design. The devised screen features decent transparency, high emission color purity, and good reliability, and the TD prototype renders "floating" static images and vivid animation with broad viewing angle (15°-165°) and large color gamut (97% of National Television Standards Committee). Spectroscopic and microstructural characterizations reveal the TD superior performance originates from synergistic contributions of moderate crystal field effect (ε ≈ 1.13 eV; ε ≈ 1.60 eV), weak vibronic coupling (S ≈ 3; ħω ≈ 285 cm ), and limited thermal ionization of 5d electrons (E ≈ 0.43 eV) for NaLi SiO :Eu emission and layered architecture for screen film. These findings establish fundamental guidelines for narrow-band emitting materials design and shine light on superior TD innovative development.
透明显示屏 (TD) 在屏幕上呈现“悬浮”图像,作为增强/混合现实应用的一种新兴技术出现。然而,传统的荧光粉设计和屏幕结构由于缺乏高效的窄带蓝色发射器和稳定的屏幕结构,严重限制了 TD 的性能。在此,探索了一种新型的窄带(半峰全宽:32nm)NaLiSiO:Eu 荧光粉,其峰值在 467nm,作为关键的蓝色发射器,并将其夹在层状薄膜中作为独特的屏幕设计。所设计的屏幕具有良好的透光率、高发射颜色纯度和良好的可靠性,TD 原型呈现出“悬浮”的静态图像和生动的动画,具有宽视角(15°-165°)和大色域(97%的国家电视标准委员会)。光谱和微观结构特性表明,TD 的优异性能源于中等晶体场效应(ε≈1.13eV;ε≈1.60eV)、弱振子耦合(S≈3;ħω≈285cm)和 5d 电子热电离的协同贡献(E≈0.43eV)对于 NaLiSiO:Eu 发射和用于屏幕薄膜的层状结构。这些发现为窄带发射材料的设计奠定了基础,并为卓越的 TD 创新发展指明了方向。