In-Sensor Polarimetric Optoelectronic Computing Based on Gate-Tunable 2D ...
Multi-Color Detection of Single Sensor Based on Tellurium Relaxation Char...
Uncooled InAsSb- based high- speed mid- wave infrared barrier detector
High Frequency Mid-Infrared Quantum Cascade Laser Integrated With Grounde...
Multi-function sensing applications based on high Q-factor multi-Fano res...
High-power electrically pumped terahertz topological laser based on a sur...
Van der Waals polarity-engineered 3D integration of 2D complementary logic
Distinguishing the Charge Trapping Centers in CaF2-Based 2D Material MOSFETs
Influence of Growth Process on Suppression of Surface Morphological Defec...
High-Power External Spatial Beam Combining of 7-Channel Quantum Cascade L...
官方微信
友情链接

Scratch-Resistant Ti-Doped SiNx Film with Wavelength Conversion Characteristics for Blue Light Blocking

2024-09-12


Jiang, Yu; Tan, Manqing; You, Daoming; Li, Wenqing; Zhao, Yali; Guo, Wentao Source: SSRN, June 28, 2024; ISSN: 15565068; DOI: 10.2139/ssrn.4879907; Repository: SSRN

Author affiliation:

State Key Laboratory of Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing; 100083, China

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing; 100049, China

Abstract:

Currently, blue and white light-emitting diodes (LEDs), widely utilized in various devices, emit blue light (approximately 400-515 nm) with relatively high intensity. To mitigate potential ocular hazards posed by blue light, we have developed Ti-doped SiNx blue-light-blocking films and analyzed their blue light-blocking mechanism based on the structure, composition, and optical properties of the films. Furthermore, the phenomenon of luminescence under violet and ultraviolet light exposure has been observed, indicating their capability to absorb and convert short-wavelength light. The influence of Ti content and film thickness on blue-light-blocking effectiveness was examined. By measuring the blue-light-blocking rate of the films through a spectrometer, the Ti-doped SiNx film with a thickness of about 480 nm and a Ti content of 11.36% can block more than 99% of the blue light emitted by commercial white LEDs and mobile phones. Additionally, we have investigated the scratch resistance properties of the films and revealed excellent scratch resistance. Given their excellent blue light protection and scratch resistance, the films have significant potential for blue-light-blocking applications and as protective coatings for electronic devices.




关于我们
下载视频观看
联系方式
通信地址

北京市海淀区清华东路甲35号(林大北路中段) 北京912信箱 (100083)

电话

010-82304210/010-82305052(传真)

E-mail

semi@semi.ac.cn

交通地图
版权所有 中国科学院半导体研究所

备案号:京ICP备05085259-1号 京公网安备110402500052 中国科学院半导体所声明