Çankaya GCRIS Standart veritabanının içerik oluşturulması ve kurulumu Research Ecosystems (https://www.researchecosystems.com) tarafından devam etmektedir. Bu süreçte gördüğünüz verilerde eksikler olabilir.
 

Density functional study of physical and chemical properties of nano size Boron Clusters: B-n (n=13-20)

No Thumbnail Available

Date

2009

Journal Title

Journal ISSN

Volume Title

Publisher

Chinese Physical Soc

Open Access Color

OpenAIRE Downloads

OpenAIRE Views

Research Projects

Organizational Units

Organizational Unit
Ortak Dersler Bölümü
Ortak Dersler Bölümü’nün amacı öğrencilerimizin analitik düşünme yeteneğini geliştirmek, bazı doğa kanunlarını anlayabilmelerini sağlamak, eğitim, bilim, sanat, tarih ve edebiyat gibi alanlarda öğrencilerimizin kendilerini geliştirmesine imkan sağlamaktır.

Journal Issue

Events

Abstract

Boron is an element that has ability to build strong and highly directional bonds with boron itself. As a result, boron atoms form diverse structural motifs, ultimately can yield distinct nano structures, such as planar, quasi-planar, convex, cage, open-cage, tubular, spherical., ring, dome-like, shell, capsule, and so on, i.e., it can take almost any shape. Therefore, a deep understanding of the physical and chemical properties becomes important in boron cluster chemistry. Electronic and geometric structures, total and binding energies, harmonic frequencies, point symmetries, charge distributions, dipole moments, chemical bondings and the highest occupied molecular orbital-lowest unoccupied molecular orbital energy gaps of neutral B-n (n=13-20) clusters have been investigated by, density functional theory (DFT), B3LYP with 6-311++G(d,p) basis set. Furthermore, the first and the second energy differences are used to obtain the most stable sizes. We have observed that almost all physical properties are size dependent, and double-ring tubular form of B-20 has the highest binding energy per atom. The icosahedral structure with an inside atom is found as impossible as a stable structure for the size thirteen. This structure transforms to an open-cage form. The structural transition from two-dimensional to three-dimensional is found at the size of 20 and consistent with the literature. The calculated charges by the Mulliken analysis show that there is a symmetry pattern with respect to the x-z and y-z planes for the charge distributions. The unusual planar stability of the boron clusters may be explained by the delocalized pi and sigma bonding characteristic together with the existence of the multicentered bonding. The results have been compared to available studies in the literature.

Description

Atis, Murat/0000-0003-4429-6897; Ozdogan, Cem/0000-0002-9644-0013

Keywords

Cluster, Boron, Density Functional Theory

Turkish CoHE Thesis Center URL

Fields of Science

Citation

Atış, M., Özdoğan, C., Güvenç, Z.B. (2009). Density functional study of physical and chemical properties of nano size Boron Clusters: B-n (n=13-20). Chinese Journal of Chemical Pyhsics, 22(4), 380-388. http://dx.doi.org/10.1088/1674-0068/22/04/380-388

WoS Q

Q4

Scopus Q

Q3

Source

Volume

22

Issue

4

Start Page

380

End Page

388