Condensed Matter and Interfaces, Debye Institute for Nanomaterials Science , Princetonplein 1, 3584 CC Utrecht, The Netherlands.
Laboratoire de Physique et d'Etude des Matériaux (LPEM), PSL Research University , ESPCI-ParisTech, 10 rue Vauquelin, F-75231 Paris Cedex 5, France.
Nano Lett. 2016 Mar 9;16(3):2047-53. doi: 10.1021/acs.nanolett.6b00053. Epub 2016 Feb 15.
Luminescent colloidal CdSe nanoplatelets with atomically defined thicknesses have recently been developed, and their potential for various applications has been shown. To understand their special properties, experiments have until now focused on the relatively short time scales of at most a few nanoseconds. Here, we measure the photoluminescence decay dynamics of colloidal nanoplatelets on time scales up to tens of microseconds. The excited state dynamics are found to be dominated by the slow (∼μs) dynamics of temporary exciton storage in a charge-separated state, previously overlooked. We study the processes of charge carrier separation and exciton recovery in pure CdSe nanoplatelets as well as in core-crown and core-shell CdSe/CdS nanoplatelets with high ensemble quantum yields of 50%, and discuss the implications. Our work highlights the importance of reversible charge carrier trapping and experiments over a wide range of time scales for the understanding of colloidal nanoemitters in general and nanoplatelets in particular.
具有原子定义厚度的发光胶体 CdSe 纳米板最近已经被开发出来,并且已经展示了它们在各种应用中的潜力。为了理解它们的特殊性质,实验迄今为止主要集中在至多几个纳秒的相对较短的时间尺度上。在这里,我们在长达数十微秒的时间尺度上测量胶体纳米板的光致发光衰减动力学。发现激发态动力学主要由在电荷分离态中临时激子存储的缓慢(∼μs)动力学主导,这是以前被忽视的。我们研究了纯 CdSe 纳米板以及具有 50%高整体量子产率的核-冠和核-壳 CdSe/CdS 纳米板中电荷载流子分离和激子恢复的过程,并讨论了其意义。我们的工作强调了在广泛的时间尺度上进行可逆电荷载流子俘获实验对于理解胶体纳米发射器,特别是纳米板的重要性。