Multiband Monochromatic Upconversion Emissions of Lanthanide Codoped Monolayer MoS2 Nanosheets for Lighting Applications

材料科学 镧系元素 单层 光子上转换 纳米材料 纳米技术 兴奋剂 发光 光电子学 等离子体子 离子 化学 有机化学
作者
Huan Wang,Xicai Liu,Dongcheng Yang,Hailong Qiu,Fangli Jing,Hongjun Liu,Zhanggui Hu
出处
期刊:ACS applied nano materials [American Chemical Society]
卷期号:6 (13): 11651-11660
标识
DOI:10.1021/acsanm.3c01644
摘要

Upconversion materials have attracted much attention because of their broad application prospects in biomedicine and energy. Although various methods have been tried in nanoparticles and nanocrystals, it is still a challenge to realize monochromatic upconversion luminescence (UCL) in traditional lanthanide-doped materials. Two-dimensional transition metal chalcogenides (2D-TMDs) are a class of excellent luminescent semiconductors, offering a promising platform due to their chemical accessibility and physical sensitivity. However, multi-lanthanide doping, typically boosting the upconversion efficiency, has not been accomplished in monolayer TMD nanosheets. In this work, an optimized liquid precursor-assisted technique is designed to synthesize monolayer MoS2 nanosheets embedded with Er/Yb and Er/Ho by surmounting the precipitation of Ln3+-doped precursors, which is confirmed by structural characterization. The monolayer MoS2 can split the 4f configuration remarkably to produce diverse energy levels due to its strong Coulomb binding and spin–orbit coupling, as well as the unique asymmetric crystal field along the [001] direction. Hence, multiband monochromatic UCL from violet to near-infrared ranges was obtained on these codoped MoS2 nanosheets. This work provides an effective way to tune the luminescence performance and wavelength of 2D-TMD nanosheets as well as a strategy for the design of UCL nanomaterials for light applications as nanophotonic devices.
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