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Carrier multiplication in semiconductor nanocrystals detected by energy transfer to organic dye molecules

机译:通过能量转移到有机染料分子来检测半导体纳米晶体中的载流子增殖

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摘要

Carrier multiplication describes an interesting optical phenomenon in semiconductors whereby more than one electron-hole pair, or exciton, can be simultaneously generated upon absorption of a single high-energy photon. So far, it has been highly debated whether the carrier multiplication efficiency is enhanced in semiconductor nanocrystals as compared with their bulk counterpart. The controversy arises from the fact that the ultrafast optical methods currently used need to correctly account for the false contribution of charged excitons to the carrier multiplication signals. Here we show that this charged exciton issue can be resolved in an energy transfer system, where biexcitons generated in the donor nanocrystals are transferred to the acceptor dyes, leading to an enhanced fluorescence from the latter. With the biexciton Auger and energy transfer lifetime measurements, an average carrier multiplication efficiency of ~17.1% can be roughly estimated in CdSe nanocrystals when the excitation photon energy is ~2.46 times of their energy gap.
机译:载流子倍增描述了半导体中一种有趣的光学现象,通过吸收单个高能光子可以同时产生一个以上的电子-空穴对或激子。迄今为止,与体相相比,半导体纳米晶体中的载流子倍增效率是否提高,一直是争论不休的问题。争议源于以下事实:当前使用的超快光学方法需要正确考虑带电激子对载流子倍增信号的错误贡献。在这里,我们表明,该带电激子问题可以在能量转移系统中解决,在该系统中,在供体纳米晶体中产生的双激子转移到受体染料上,从而导致受体荧光增强。通过双激子俄歇和能量转移寿命测量,当激发光子能量约为能隙的2.46倍时,CdSe纳米晶体的平均载流子倍增效率约为17.1%。

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