Laser-induced surface restructuring of carbon dots enables tunable multicolor photoluminescence via microcavity confinement
Abstract
Photochromic carbon dots (CDs) with high-contrast and tunable multicolor emission in solution hold great promise for the development of versatile light emitters. However, achieving such properties through a convenient and controllable synthesis method remains a significant challenge. Here, we introduce an innovative approach utilizing laser irradiation of CDs confined within a microcavity, enabling the synthesis of multicolored photoluminescent CDs. The laser-irradiated CDs exhibit time-dependent dynamic photochromic emission, transitioning from yellow to blue as a function of irradiation time. Notably, upon exceeding 450 s of irradiation, the CDs stabilize into a time-independent blue emission. The resulting CDs, with their diverse emission colors, demonstrate excellent stability and quenching resistance under ambient conditions. Mechanistic investigations reveal that the laser-induced modulation of electronic transitions within surface states, coupled with radiative recombination involving multiple surface functional groups, underpins the tunable emission properties. This work provides a robust and scalable strategy for the synthesis of photochromic CDs, opening avenues for their application in advanced optoelectronic devices and beyond.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (5)
Chuanxin Yan
Laboratory of Quantum Materials Under Extreme Conditions in Shandong Province, School of Physics Science and Information Technology, Liaocheng University 1 , Liaocheng 252000,
Lin Chen
Chunguang Zhai
Mingguang Yao
Cailong Liu
Laboratory of Quantum Materials Under Extreme Conditions in Shandong Province, School of Physics Science and Information Technology, Liaocheng University 1 , Liaocheng 252000,