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单耦合胶体量子点分子中相互作用电荷态的完整映射

Complete Mapping of Interacting Charging States in Single Coupled Colloidal Quantum Dot Molecules.

作者信息

Panfil Yossef E, Cui Jiabin, Koley Somnath, Banin Uri

机构信息

Institute of Chemistry and the Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

ACS Nano. 2022 Apr 26;16(4):5566-5576. doi: 10.1021/acsnano.1c10329. Epub 2022 Mar 15.

Abstract

Colloidal quantum dots (CQDs), major building blocks in modern optoelectronic devices, have so far been synthesized with only one emission center where the exciton resides. Recent development of coupled colloidal quantum dots molecules (CQDM), where two core-shell CQDs are fused to form two emission centers in close proximity, allows exploration of how charge carriers in one CQD affect the charge carriers in the other CQD. Cryogenic single particle spectroscopy reveals that while CQD monomers manifest a simple emission spectrum comprising a main emission peak with well-defined phonon sidebands, CQDMs exhibit a complex spectrum with multiple peaks that are not all spaced according to the known phonon frequencies. Based on complementary emission polarization and time-resolved analysis, this is assigned to fluorescence of the two coupled emission centers. Moreover, the complex peak structure shows correlated spectral diffusion indicative of the coupling between the two emission centers. Utilizing Schrödinger-Poisson self-consistent calculations, we directly map the spectral behavior, alternating between neutral and charged states of the CQDM. Spectral shifts related to electrostatic interaction between a charged emission center and the second emission center are thus fully mapped. Furthermore, effects of moving surface charges are identified, whereby the emission center proximal to the charge shows larger shifts. Instances where the two emission centers are negatively charged simultaneously are also identified. Such detailed mapping of charging states is enabled by the coupling within the CQDM and its anisotropic structure. This understanding of the coupling interactions is progress toward quantum technology and sensing applications based on CQDMs.

摘要

胶体量子点(CQDs)是现代光电器件的主要组成部分,迄今为止,其合成过程中仅产生一个激子所在的发射中心。耦合胶体量子点分子(CQDM)是由两个核壳式CQD融合形成两个紧密相邻的发射中心,其最新进展使得人们能够探究一个CQD中的电荷载流子如何影响另一个CQD中的电荷载流子。低温单粒子光谱显示,虽然CQD单体呈现出一个简单的发射光谱,包含一个具有明确声子边带的主发射峰,但CQDM表现出一个复杂的光谱,有多个峰,且并非所有峰都按照已知声子频率间隔排列。基于互补发射极化和时间分辨分析,这被归因于两个耦合发射中心的荧光。此外,复杂的峰结构显示出相关的光谱扩散,表明两个发射中心之间存在耦合。利用薛定谔 - 泊松自洽计算,我们直接绘制了CQDM在中性和带电状态之间交替的光谱行为。因此,与带电发射中心和第二个发射中心之间的静电相互作用相关的光谱位移被完整绘制出来。此外,还识别出移动表面电荷的影响,即靠近电荷的发射中心显示出更大的位移。同时也识别出两个发射中心同时带负电的情况。CQDM内部的耦合及其各向异性结构使得能够对充电状态进行如此详细的绘制。这种对耦合相互作用的理解是基于CQDM的量子技术和传感应用的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71f1/9047002/785ca7d7c783/nn1c10329_0001.jpg

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