材料科学
白光
二氧化钛
碳纤维
二氧化碳
白色(突变)
光电子学
复合材料
化学
生物化学
基因
复合数
有机化学
作者
Dalei Wang,Xiaotao Han,Hao Wang,Zenan Li,Zhaomin Chen,Qing Yang,Mingcheng Yang,Zexin Zhang,Yizhi Zhu,Jintao Tong,Jie Lin,Jingsong Huang,Daping Luo,Tao Wang,Wei Liu,Wenxue Li,Chunxiang Xu,Bin Dong,Zhenhui Kang
标识
DOI:10.1038/s41467-025-60838-7
摘要
Directional light source not only helps to advance scientific progresses but also has great potentials in many application fields. However, it is still challenging to achieve the directional white light without optical elements. Here, we report a highly directional white-light emitter driven by 1064 nm near-infrared laser with 1/60 solid angle that does not require the introduction of optical elements. The emitter which consists of binary components, i.e. carbon dot and titanium oxide, possesses a microlens-shape surface formed during the synthesis process. Upon near-infrared light excitation, carbon dot emits white light based on a fundamentally different mechanism, which may involve a process similar to bremsstrahlung, multiphoton and thermal processes. The emitted white light is then regulated in the near field by the microlens-shape surface due to the confinement effect, resulting in the high directionality. The highly directional white-light emitter exhibits excellent stability and repeatability, making it promising for applications including targeted illumination and projection.
科研通智能强力驱动
Strongly Powered by AbleSci AI