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Femtosecond laser-induced size reduction and emission quantum yield enhancement of colloidal silicon nanocrystals: effect of laser ablation time

机译:Femtosecond激光诱导的尺寸减小和排放量子产量增强胶体硅纳米晶体:激光烧蚀时间的影响

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摘要

Colloidal silicon (Si) nanocrystals (NCs) with different sizes were successfully prepared by femtosecond laser ablation under different laser ablation time (LAT). The mean size decreases from 4.23 to 1.42 nm by increasing the LAT from 30 to 120 min. In combination with structural characterization, temperature-dependent photoluminescence (PL), time-resolved PL and PL excitation spectra, we attribute room-temperature blue emissions peaked at 405 and 430 nm to the radiative recombination of electron-hole pairs via the oxygen-deficient centers related to Si-C-H-2 and Si-O-Si bonds of colloidal Si NCs prepared in 1-octene, respectively. In particular, the measured PL quantum yield of colloidal Si NCs has been enhanced significantly from 23.6% to 55.8% by prolonging the LAT from 30 to 120 min.
机译:在不同激光烧蚀时间(LAT)下飞秒激光消融成功地制备了具有不同尺寸的胶体硅(Si)纳米晶(NCS)。 通过将LAT从30至120分钟增加,平均尺寸从4.23降至1.42nm。 结合结构表征,温度依赖的光致发光(PL),时间分辨的PL和PL激励光谱,我们将室温蓝色排放量达到405和430nm,通过缺氧来辐射电子 - 空穴对的辐射重组 分别与1-辛烯制备的胶体Si NCs的Si-Ch-2和Si-O-Si键相关的中心。 特别地,通过将LAT从30至120分钟延长,胶体SiNS的测量Pl量子产率显着增强了23.6%至55.8%。

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