论文标题

横向量子限制调节CDSE/CDSES CORE/CROWN NANOPLATELETS中的载体转移和Biexciton相互作用

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

论文作者

Yao, Yige, Bao, Xiaotian, Zhu, Yunke, Sui, Xinyu, Hu, An, Bai, Peng, Wang, Shufeng, Yang, Hong, Liu, Xinfeng, Gao, Yunan

论文摘要

电荷载体动力学本质上确定了胶体半导体纳米晶体的各种光电应用的性能。其中,二维纳米板片为其独特的核心/冠异质结构提供了新的调整自由。在本文中,我们证明,通过微调核心尺寸和横向量子限制,在CDSE/CDSE/CDSES CORE/ALLOY-CROWN NANOPLATELETS中,电荷载体转移速率可以通过一个数量级来改变。另外,转移可能会受载体阻断机制的影响,即,填充的载体阻碍了进一步的转移。此外,我们发现Biexciton相互作用与量子限制和电子离域化相反,导致biexciton结合能与发射波长的非单调变化。这项工作为胶体纳米片的电荷载体传输动力学和激子相互作用提供了新的观察和见解,并将促进其在激光,显示,传感等中的进一步应用。

Charge carrier dynamics essentially determine the performance of various optoelectronic applications of colloidal semiconductor nanocrystals. Among them, two-dimensional nanoplatelets provide new adjustment freedom for their unique core/crown heterostructure. 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.

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