Lateral quantum confinement regulates charge carrier transfer and biexciton interaction in CdSe/CdSeS core/crown nanoplatelets

被引:0
|
作者
Yige Yao
Xiaotian Bao
Yunke Zhu
Xinyu Sui
An Hu
Peng Bai
Shufeng Wang
Hong Yang
Xinfeng Liu
Yunan Gao
机构
[1] Peking University,State Key Laboratory for Artificial Microstructure and Mesoscopic Physics, School of Physics
[2] National Center for Nanoscience and Technology,CAS Key Laboratory of Standardization and Measurement for Nanotechnology
[3] University of Chinese Academy of Sciences,Collaborative Innovation Center of Extreme Optics
[4] Frontiers Science Center for Nano-optoelectronics,undefined
[5] Shanxi University,undefined
[6] Peking University Yangtze Delta Institute of Optoelectronics,undefined
[7] Dalian National Laboratory for Clean Energy,undefined
来源
Nano Research | 2023年 / 16卷
关键词
nanoplatelets; core/crown; charge carrier transfer; ultrafast spectroscopy; biexciton;
D O I
暂无
中图分类号
学科分类号
摘要
Charge carrier dynamics essentially determines the performance of various optoelectronic applications of colloidal semiconductor nanocrystals. Among them, two-dimensional nanoplatelets provide new adjustment freedom for their unique core/crown heterostructures. Herein, we demonstrate that by fine-tuning the core size and the lateral quantum confinement, the charge carrier transfer rate from the crown to the core can be varied by one order of magnitude in CdSe/CdSeS core/alloy-crown nanoplatelets. In addition, the transfer can be affected by a carrier blocking mechanism, i.e., the filled carriers hinder further possible transfer. Furthermore, we found that the biexciton interaction is oppositely affected by quantum confinement and electron delocalization, resulting in a non-monotonic variation of the biexciton binding energy with the emission wavelength. This work provides new observations and insights into the charge carrier transfer dynamics and exciton interactions in colloidal nanoplatelets and will promote their further applications in lasing, display, sensing, etc.
引用
收藏
页码:10420 / 10428
页数:8
相关论文
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