4.7 Article

Quantum confinement and effective masses dependence in black phosphorus quantum dots and phosphorene

期刊

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jiec.2022.01.021

关键词

Quantum confinement; Effective mass; Black phosphorus; Phosphorene; Quantum dots; Benzonitrile

资金

  1. R&D Initiative-Appel a projets autour des phosphates APPHOS - OCP (OCP Foundation) under the project entitled *Le potentiel du phosphorene pour le stockage et la con-version denergie [MAT-MOU 01/2017]
  2. R&D Initiative-Appel a projets autour des phosphates APPHOS - OCP (R&D OCP) under the project entitled *Le potentiel du phosphorene pour le stockage et la con-version denergie [MAT-MOU 01/2017]
  3. R&D Initiative-Appel a projets autour des phosphates APPHOS - OCP (Mohammed VIPolytechnic University) under the project entitled *Le potentiel du phosphorene pour le stockage et la con-version denergie [MAT-MOU 01/2017]
  4. R&D Initiative-Appel a projets autour des phosphates APPHOS - OCP (National Centre of Scientific and Technical Research CNRST)under the project entitled *Le potentiel du phosphorene pour le stockage et la con-version denergie [MAT-MOU 01/2017]
  5. RD Initiative-Appel a projets autour des phosphates APPHOS - OCP (Ministry of Higher Education, Scientific Research and Professional Training of Morocco MESRSFC) under the project entitled *Le potentiel du phosphorene pour le stockage et la con-version de [MAT-MOU 01/2017]

向作者/读者索取更多资源

The present study extensively investigates the quantum confinement effect in phosphorene and black phosphorus quantum dots from both experimental and theoretical perspectives. The quantum structures were prepared using Liquid Phase Exfoliation and solvothermal-assisted Liquid Phase Exfoliation techniques. The results show that there is no phosphorus oxidation in both phosphorene and black phosphorus quantum dots solutions. Additionally, the Raman spectroscopy indicates a shift in B-2g and A(g)(2) phonon modes for phosphorene and black phosphorus quantum dots compared to bulk black phosphorus. The structural characterization reveals a high degree of crystallinity in both quantum structures with no sign of aggregations. The optical properties characterization confirms an expected increase in the bandgap value for both structures, which agrees with theoretical calculations. Interestingly, it is demonstrated that the quantum confinement observed in phosphorene is weakened to the expected extent, relative to that in BPQDs, by the loss of two confinement dimensions.
In the present study, quantum confinement effect in phosphorene and black phosphorus quantum dots is extensively studied from experimental and theoretical viewpoints. These quantum structures were prepared with the help of Benzonitrile solvent using Liquid Phase Exfoliation and solvothermal-assisted Liquid Phase Exfoliation, respectively. On one hand, Fourier-transform infrared spectroscopy shows no sign of phosphorus oxidation in both phosphorene and black phosphorus quantum dots solutions. Furthermore, Raman spectroscopy showed a shift in B-2g andA(g)(2) phonon modes for phosphorene and black phosphorus quantum dots as compared to bulk black phosphorus. On the other hand, structural characterization via high-resolution transmission electron microscopy imaging and electron diffraction patterns showed a high degree of crystallinity in both quantum structures with no sign of aggregations. Optical properties characterization showed the expected increase in the bandgap value for both quantum structures, which were supported by theoretical calculations using density functional theory and effective mass approximation. Interestingly, we demonstrate that the quantum confinement observed in phosphorene is weakened to the expected extent, relative to that in BPQDs, by the loss of two confinement dimensions. Appropriate models, describing the bandgap and effective mass dependence as a function of the confinement regime, are presented. (C) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据