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胶体量子点半导体纳米晶体中局部结构基元的演变导致纳米晶面化。

Evolution of Local Structural Motifs in Colloidal Quantum Dot Semiconductor Nanocrystals Leading to Nanofaceting.

机构信息

School of Physics and Astronomy, Cardiff University, Queen's Building, The Parade, Cardiff, Wales CF24 3AA, United Kingdom.

Laboratoire de Physique de l'École Normale Supérieure, ENS, Université PSL, CNRS, Sorbonne Université, Université de Paris, 75005 Paris, France.

出版信息

Nano Lett. 2023 Mar 22;23(6):2277-2286. doi: 10.1021/acs.nanolett.2c04851. Epub 2023 Mar 13.

Abstract

Colloidal nanocrystals (NCs) have shown remarkable promise for optoelectronics, energy harvesting, photonics, and biomedical imaging. In addition to optimizing quantum confinement, the current challenge is to obtain a better understanding of the critical processing steps and their influence on the evolution of structural motifs. Computational simulations and electron microscopy presented in this work show that nanofaceting can occur during nanocrystal synthesis from a Pb-poor environment in a polar solvent. This could explain the curved interfaces and the olivelike-shaped NCs observed experimentally when these conditions are employed. Furthermore, the wettability of the PbS NCs solid film can be further modified via stoichiometry control, which impacts the interface band bending and, therefore, processes such as multiple junction deposition and interparticle epitaxial growth. Our results suggest that nanofaceting in NCs can become an inherent advantage when used to modulate band structures beyond what is traditionally possible in bulk crystals.

摘要

胶体纳米晶体 (NCs) 在光电、能源收集、光子学和生物医学成像方面显示出了显著的应用前景。除了优化量子限制外,目前的挑战是更好地理解关键的处理步骤及其对结构图案演变的影响。本文介绍的计算模拟和电子显微镜研究表明,在极性溶剂中从 Pb 贫环境合成纳米晶体时可能会发生纳米晶面化。这可以解释在采用这些条件时实验中观察到的弯曲界面和橄榄状 NCs。此外,通过化学计量控制可以进一步修饰 PbS NCs 固体薄膜的润湿性,这会影响界面能带弯曲,从而影响多结沉积和颗粒间外延生长等过程。我们的研究结果表明,当用于调制能带结构时,NCs 中的纳米晶面化可以成为一种内在优势,其效果超出了传统块状晶体中可能达到的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dd5/10037336/39af24976a9e/nl2c04851_0001.jpg

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