Electron Transferto Colloidal ZnO Nanocrystals fromthe Excited State of a Perylene Chromophore Formed by Direct Excitationor Triplet–Triplet Annihilation Upconversion

光子上转换 光化学 激发态 猝灭(荧光) 荧光 材料科学 吸收(声学) 电子转移 发色团 吸收光谱法 超快激光光谱学 激发 准分子 化学 紧身衣 光谱学 发射光谱 分析化学(期刊) 时间分辨光谱学 纳米晶 量子点 单重态 荧光光谱法 分子物理学 消灭 吸收带 电子激发 斯托克斯位移
作者
Deepak Badgurjar,Mik Patel,Andrew Healy,Ted M. Pappenfus,David A. Blank,Wayne L. Gladfelter
出处
期刊:Journal of Physical Chemistry C [American Chemical Society]
标识
DOI:10.1021/acs.jpcc.6c02506
摘要

Abstract Upon binding 4-(perylen-3-yl)benzoic acid 1, to oleate-capped ZnO nanocrystals (NCs), significant broadening of the perylene absorption spectrum and fluorescence quenching were observed. In contrast, no broadening of the absorption spectrum or fluorescence quenching was observed when 1 was bound to oleylamine-capped ZrO2 NCs. Measurement of emission quenching by ZnO NCs as a function of dye concentration quantified binding and established that approximately 150 dyes attached to the surface of 3.7 nm diameter ZnO NCs, which correlated roughly to the number of zinc ions on the NC surface. A combination of steady-state spectroscopy, spectroelectrochemistry, and ultrafast pump-probe spectroscopy established that fluorescence quenching occurred via a fast excited-state electron transfer mechanism with a lifetime of less than 100 fs. The singlet excited state of 1 was also generated in solution and on the surface of ZrO2 NCs via triplet–triplet annihilation upconversion (TTA-UC) using a bodipy sensitizer that was present in solution or bound to the ZrO2 surface. Out of a possible maximum of 0.5, the TTA-UC quantum yields in CH2Cl2 were 0.0037 with and 0.0034 without ZrO2 NCs. Following selective excitation of the bodipy dye, dispersions containing both dyes and ZnO NCs showed no upconverted fluorescence from the perylene, demonstrating the ability of ZnO NCs to harvest two low-energy photons through TTA-UC.

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