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Pyrene chromophores were attached to silicon nanocrystals (SiNCs) with diameters of 2.6 and 5.0 nm to provide light-harvesting antennae for enhanced optical absorption. Efficient energy transfer from the pyrene moieties to the SiNCs was observed to induce bright visible (2.6 nm) or near-infrared (NIR) (5.0 nm) photoluminescence (PL). The 5.0 nm diameter pyrene-derivatized SiNCs exhibited NIR PL emission that was insensitive to dioxygen, with a 40

作者:Mirko, Locritani;Yixuan, Yu;Giacomo, Bergamini;Massimo, Baroncini;Jennifer K, Molloy;Brian A, Korgel;Paola, Ceroni

来源:The journal of physical chemistry letters 2014 年 5卷 19期

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作者:
Mirko, Locritani;Yixuan, Yu;Giacomo, Bergamini;Massimo, Baroncini;Jennifer K, Molloy;Brian A, Korgel;Paola, Ceroni
来源:
The journal of physical chemistry letters 2014 年 5卷 19期
标签:
energy transfer nanocrystals near-infrared photoluminescence silicon
Pyrene chromophores were attached to silicon nanocrystals (SiNCs) with diameters of 2.6 and 5.0 nm to provide light-harvesting antennae for enhanced optical absorption. Efficient energy transfer from the pyrene moieties to the SiNCs was observed to induce bright visible (2.6 nm) or near-infrared (NIR) (5.0 nm) photoluminescence (PL). The 5.0 nm diameter pyrene-derivatized SiNCs exhibited NIR PL emission that was insensitive to dioxygen, with a 40