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Physical characteristics and optical properties of PbS nanoclusters: DFT simulation and experimental study

机译:PbS纳米团簇的物理特性和光学性质:DFT模拟和实验研究

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The physical characteristics and optical properties of PbS nanoclusters are investigated by using density functional theory (DFT) of first-principles. Microstructure models of (PbS)_n (n=l-9) nanoclusters and bulk materials are built on Materials Studio platform, and its energy band structures, highest occupied molecular orbital-lowest unoccupied molecular orbital gap (HOMO-LUMO gap), density of state (DOS), and optical properties are calculated, respectively. Compared to PbS bulk materials, PbS nanoclusters show a discrete energy gap as well as the DOS, because of the quantum confinement effect. It is interesting that the HOMO-LUMO gap of (PbS)_n (n=l-9) shows oscillates with the increasing of the n number. However, when its size is large enough, the HOMO-LUMO gap is gradually decrease with the increasing of size (>27 atoms). And, the HOMO-LUMO gap of PbS nanoclusters of different sizes is range from 2.575 to 0.58 eV, which covers the low loss communication band of optical communication. In addition, PbS nanomaterials (NMs) with small size are synthesized by using oleylamine as ligands. Sizes of PbS NMs can be accurately controlled through control of the reaction time as well as the growth temperature. The photoluminescence (PL) spectra show strong size dependence, which is large red shift with increasing size of the NMs. This trend is basically in agreement with the theoretical calculation above. Moreover, transmission electron microscopy (TEM) further reveals the morphology of PbS NMs. PbS NMs can be used in optical fiber amplifiers and fiber lasers because of its unique optical properties in optical communication bands.
机译:利用第一性原理的密度泛函理论(DFT)研究了PbS纳米团簇的物理特性和光学性质。 (PbS)_n(n = l-9)纳米团簇和块状材料的微观结构模型是在Materials Studio平台上构建的,其能带结构,最高占据分子轨道-最低未占据分子轨道间隙(HOMO-LUMO间隙),态(DOS)和光学性质分别计算。与PbS块状材料相比,PbS纳米团簇由于量子限制效应而显示出与DOS一样的离散能隙。有趣的是,(PbS)_n(n = 1-9)的HOMO-LUMO间隙显示随着n数的增加而振荡。但是,当其尺寸足够大时,HOMO-LUMO间隙会随着尺寸的增加(> 27个原子)而逐渐减小。并且,不同尺寸的PbS纳米团簇的HOMO-LUMO间隙在2.575至0.58 eV范围内,覆盖了光通信的低损耗通信频带。另外,以油胺为配体合成了尺寸较小的PbS纳米材料。通过控制反应时间以及生长温度,可以精确地控制PbS NM的大小。光致发光(PL)光谱显示出强烈的尺寸依赖性,随着NMs尺寸的增加,它具有大的红移。这种趋势基本上与上述理论计算相符。此外,透射电子显微镜(TEM)进一步揭示了PbS NMs的形态。由于PbS NM在光通信频带中具有独特的光学特性,因此可用于光纤放大器和光纤激光器。

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