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对CdTe( = 1 - 17)量子点的结构和电子性质的计算研究。

Computational investigations into the structural and electronic properties of Cd Te ( = 1-17) quantum dots.

作者信息

Imran Muhammad, Saif Muhammad Jawwad, Kuznetsov Aleksey E, Idrees Nazeran, Iqbal Javed, Tahir Asif Ali

机构信息

Department of Applied Chemistry, Government College University Faisalabad Pakistan

Departamento de Química, Universidad Técnica Federico Santa María Av. Santa María 6400 Vitacura Santiago Chile.

出版信息

RSC Adv. 2019 Feb 11;9(9):5091-5099. doi: 10.1039/c8ra09465a. eCollection 2019 Feb 5.

Abstract

Size-tunability of the electronic and optical properties of semiconductor quantum dots and nanoclusters is due to the quantum size effect, which causes variations in the electronic excitations as the particle boundaries are changed. Recently, CdSe and CdTe quantum dots have been used in energy harvesting devices. Despite these promising practical applications, a complete understanding of the electronic transitions associated with the surfaces of the nanoparticles is currently lacking and is difficult to achieve experimentally. Computational methods could provide valuable insights and allow us to understand the electronic and optical properties of quantum dots and nanoclusters. Hollow cage and endohedral or core-shell cage structures for Cd Te clusters have been reported before. We have performed systematic density functional theory (DFT) studies on the structure and electronic properties of the Cd Te ( = 1-17) clusters. As the number of atoms increases in the Cd Te clusters, the predicted geometries change from simple planar structures to more complicated 3D-structures. Two classes of the most stable structures were elucidated for clusters with = 10-17: (i) hollow cage structures with an empty center; and (ii) endohedral or core-shell cage structures with one or more atoms inside the cage. Noticeably higher highest occupied molecular orbital (HOMO)-lowest unoccupied molecular orbital (LUMO) gaps were observed for the hollow cage isomers as compared to the core-shell structures. The highest occupied molecular orbitals of all of the clusters studied were shown to be localized on the surface of the cage for the hollow cage structures, while in the case of the core-shell structures, the HOMO electron densities were found to be distributed both on surface and the interior of the structures. Most of the small size clusters Cd Te ( = 2-9) showed minimal values for the dipole moments (close to zero) owing to the highly ordered and symmetric configurations of these structures. For isomers of the larger clusters ( = 10-17), it was observed that the core-shell structures have higher values for the dipole moments than the hollow cage species because of the highly symmetric structures of the hollow cages. Core-shell cage structures exhibited lower polarizability than the respective hollow cage structures.

摘要

半导体量子点和纳米团簇的电子与光学性质的尺寸可调性归因于量子尺寸效应,该效应会随着粒子边界的改变而导致电子激发的变化。近来,CdSe和CdTe量子点已被用于能量收集装置中。尽管有这些前景广阔的实际应用,但目前仍缺乏对与纳米颗粒表面相关的电子跃迁的全面理解,并且难以通过实验实现。计算方法可以提供有价值的见解,并使我们能够理解量子点和纳米团簇的电子与光学性质。此前已报道过CdTe团簇的空心笼状以及内包式或核壳笼状结构。我们对CdTe(n = 1 - 17)团簇的结构和电子性质进行了系统的密度泛函理论(DFT)研究。随着CdTe团簇中原子数的增加,预测的几何结构从简单的平面结构转变为更复杂的三维结构。对于n = 10 - 17的团簇,阐明了两类最稳定的结构:(i)中心为空的空心笼状结构;(ii)笼内有一个或多个原子的内包式或核壳笼状结构。与核壳结构相比,空心笼状异构体的最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)能隙明显更高。对于空心笼状结构,所研究的所有团簇的最高占据分子轨道都定域在笼的表面,而在核壳结构的情况下,发现HOMO电子密度分布在结构的表面和内部。大多数小尺寸团簇CdTe(n = 2 - 9)由于这些结构的高度有序和对称构型,其偶极矩显示出极小值(接近零)。对于较大团簇(n = 10 - 17)的异构体,观察到由于空心笼的高度对称结构,核壳结构的偶极矩值比空心笼状物种更高。核壳笼状结构的极化率低于相应的空心笼状结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4ce/9060703/dd872a9ce176/c8ra09465a-f1.jpg

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