荧光粉
化学
光电子学
传输(电信)
二极管
波形
带宽(计算)
发光
光无线
降级(电信)
数据传输
发光二极管
无线
可见光通信
渗透(战争)
热的
光通信
发射强度
光强度
穿透深度
正弦波
电容
反向
通信系统
传输速率
传输损耗
光发射
正弦
作者
Hangzhang Kou,Fanlei Qin,Jian-Feng Wang,Esmaeil Heydari,Gongxun Bai
标识
DOI:10.1021/acs.inorgchem.5c04734
摘要
Near-infrared (NIR) wireless communication has been widely investigated because of its fast transmission speed and good penetration barrier performance. Despite their promising characteristics, the implementation of these materials is substantially limited by thermal degradation effects. To address this challenge, we developed Cr3+-activated gadolinium gallate phosphors that exhibit an emission bandwidth of 92.8 nm at half-maximum intensity while maintaining 86.3% of the initial luminous intensity at 150 °C. Furthermore, phosphor-converted light-emitting diodes (pc-LEDs) were manufactured, attaining a 1060 mW NIR output power and 360 mA current. The device was used to test the signal transmission effect using the prepared NIR pc-LEDs as the light source. In the case of input sine wave, inverse sine wave, and triangle wave, the transmission of the waveform was realized, and its penetration performance was tested. The experimental findings demonstrate that the proposed material exhibits promising applications in NIR optical communication systems.
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