石墨烯
量子点
光激发
材料科学
光化学
双光子激发显微术
光致发光
量子产额
光动力疗法
光电子学
化学
激发态
荧光
纳米技术
光学
原子物理学
物理
有机化学
作者
Wen-Shuo Kuo,Chia‐Yuan Chang,Hao-Yu Chuang,Po‐Lan Su,Jiu-Yao Wang,Pei‐Yu Wu,Hui-Fang Kao,Shih-Wen Tseng,Sheng Lin,Yi-Yuan Lin,Chan-Chi Chang
标识
DOI:10.1016/j.bios.2023.115648
摘要
Doping sorted graphene quantum dots (GQDs) with heteroatoms and functionalizing them with amino acid could improve their radiative recombination and two-photon properties-including their excitation-wavelength-independent photoluminescence from the ultraviolet to the near-infrared-I (NIR-I) region, absorption, quantum yield, absolute cross section, lifetime, and radiative-to-nonradiative decay ratio-under two-photon excitation (TPE) at a low excitation energy and short photoexcitation duration, as determined using a self-made optical microscopy system with a femtosecond Ti-sapphire laser. Four types of sorted GQDs were investigated: undoped GQDs, nitrogen-doped GQDs (N-GQDs), amino-functionalized GQDs (amino-GQDs), and N-doped and amino-functionalized GQDs (amino-N-GQDs). Among them, the sorted amino-N-GQDs are effective as a two-photon photosensitizer and generate the highest quantity of reactive oxygen species for the elimination of multidrug-resistant cancer cells through two-photon photodynamic therapy (PDT). Larger amino-N-GQDs result in a greater number of C-N and N-functionalities, leading to a superior photochemical effect and more favorable intrinsic luminescence properties, making the dots effective contrast agents for tracking and localizing cancer cells during in-depth bioimaging in a three-dimensional biological environment under TPE in the NIR-II region. Overall, this study highlights the potential of large amino-N-GQDs as a material for future application to dual-modality two-photon PDT and biomedical imaging.
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