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比较 PbS 和 PbSe 纳米晶体中的载流子倍增产率:竞争能量损失过程的作用。

Comparison of carrier multiplication yields in PbS and PbSe nanocrystals: the role of competing energy-loss processes.

机构信息

Center for Advanced Solar Photophysics, C-PCS, Chemistry Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Nano Lett. 2012 Feb 8;12(2):622-8. doi: 10.1021/nl203367m. Epub 2012 Jan 30.

Abstract

Infrared band gap semiconductor nanocrystals are promising materials for exploring generation III photovoltaic concepts that rely on carrier multiplication or multiple exciton generation, the process in which a single high-energy photon generates more than one electron-hole pair. In this work, we present measurements of carrier multiplication yields and biexciton lifetimes for a large selection of PbS nanocrystals and compare these results to the well-studied PbSe nanocrystals. The similar bulk properties of PbS and PbSe make this an important comparison for discerning the pertinent properties that determine efficient carrier multiplication. We observe that PbS and PbSe have very similar biexciton lifetimes as a function of confinement energy. Together with the similar bulk properties, this suggests that the rates of multiexciton generation, which is the inverse of Auger recombination, are also similar. The carrier multiplication yields in PbS nanocrystals, however, are strikingly lower than those observed for PbSe nanocrystals. We suggest that this implies the rate of competing processes, such as phonon emission, is higher in PbS nanocrystals than in PbSe nanocrystals. Indeed, our estimations for phonon emission mediated by the polar Fröhlich-type interaction indicate that the corresponding energy-loss rate is approximately twice as large in PbS than in PbSe.

摘要

红外带隙半导体纳米晶体是探索第三代光伏概念的有前途的材料,这些概念依赖于载流子倍增或多激子产生,即单个高能光子产生多个电子-空穴对的过程。在这项工作中,我们对大量 PbS 纳米晶体的载流子倍增产率和双激子寿命进行了测量,并将这些结果与经过充分研究的 PbSe 纳米晶体进行了比较。PbS 和 PbSe 的相似体性质使得这是一个重要的比较,可以辨别决定有效载流子倍增的相关性质。我们观察到,PbS 和 PbSe 的双激子寿命随约束能的变化非常相似。与相似的体性质一起,这表明多激子产生的速率(即俄歇复合的逆过程)也相似。然而,PbS 纳米晶体中的载流子倍增产率明显低于 PbSe 纳米晶体。我们认为这意味着竞争过程(如声子发射)的速率在 PbS 纳米晶体中比在 PbSe 纳米晶体中更高。事实上,我们对通过极性 Fröhlich 型相互作用介导的声子发射的估计表明,相应的能量损耗率在 PbS 中大约是 PbSe 的两倍。

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