A DFT study of electronic, vibrational and optical properties of gold clusters

被引:0
作者
Tahir Iqbal
Amna Azam
Abdul Majid
Maria Zafar
Muhammad Shafiq
Sami Ullah
Mohamed Hussien
机构
[1] University of Gujrat,Department of Physics, Faculty of Sciences
[2] Quaid-i-Azam University,Department of Physics
[3] King Khalid University,Department of Chemistry, College of Science
来源
Optical and Quantum Electronics | 2022年 / 54卷
关键词
DFTB method; Gold clusters; Optical properties; Electronic properties; Metal; Computation;
D O I
暂无
中图分类号
学科分类号
摘要
Density functional theory has a central position in the literature to demonstrate the materials' physical and structural properties that are extremely useful for the human’s daily life. Gold is the multipurpose material that has been utilized for examining the technological applications. In this work calculations depend on the framework of first principle DFT computations that are performed to design the gold clusters for the enhancement of Electronic, Optical and Vibrational properties. Density of State and the HUMO-LUMO gap are calculated for the prediction of the electronic properties. Optical properties are calculated with the help of HUMO-LUMO gap and IR spectra. Vibrational properties are calculated with the help of Infrared Intensity and partial Infrared Intensity. Furthermore, DFTB method has been utilized to design these Gold clusters which are size dependent and it is observed that quantum confinement effects narrowed the energy gap. It is expected that this work will be beneficial for the modification of the gold clusters characteristics.
引用
收藏
相关论文
共 159 条
[1]  
Afsheen S(2019)Modeling of 1D Au plasmonic grating as efficient gas sensor Mater. Res. Exp. 6 126203-1894
[2]  
Iqbal T(2015)Functionalized gold nanoparticles: synthesis, properties and applications—a review J. Nanosci. Nanotechnol. 15 1869-508
[3]  
Aftab M(2012)Properties and applications of protein-stabilized fluorescent gold nanoclusters: short review J. Nanophoton. 6 064504-611
[4]  
Bashir A(1997)Structural evolution of larger gold clusters Zeitschrift Für Physik D Atoms Mol. Clust. 40 503-15681
[5]  
Tehseen A(1999)Melting of gold clusters Phys. Rev. B 60 5065-4036
[6]  
Khan MY(2007)Solving the 3D structure of metal nanoparticles Zeitschrift Für Kristallogr. Crystal. Mater. 222 605-1482
[7]  
Ijaz M(2005)Gold-caged metal clusters with large HOMO− LUMO gap and high electron affinity J. Am. Chem. Soc. 127 15680-426
[8]  
Alex S(2020)Novel Au nano-grating for detection of water in various electrolytes Appl. Nanosci. 10 4029-5870
[9]  
Tiwari A(2020)A review on Ag-nanostructures for enhancement in shelf time of fruits J. Inorg. Organomet. Polym Mater. 30 1475-362
[10]  
Chevrier DM(2020)Rectangular and sinusoidal Au-grating as plasmonic sensor: a comparative study Opt. Mater. 99 109530-1671