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Induced Metals on BN--Nanotube by DFT/EPR Methods   
Yazarlar
Dr. Öğr. Üyesi Fatemeh MOLLAAMIN
Kastamonu Üniversitesi
Sara Shahriari
Majid Monajjemi
Özet
Abstract: In this study, the isolated boron nitride nanotube has been characterized using the B3LYP exchange-correlation functional of theory by electron paramagnetic resonance of EPR3 basis set. Then the effect of metals such as Li, Na, K, Be, Mg, and Ca inside BN--nanotube has been investigated. Nuclear Magnetic Resonance (NMR) parameters such as, isotropic chemical shielding, anisotropic chemical shielding, asymmetry, chemical shift anisotropy and total atomic charges of BN--nanotube including of metal systems have been calculated with GIAO approximation. It has been shown that the behavior of chemical shift tensor components (isotropic and anisotropic), chemical shift anisotropy, asymmetry and devotion depending on the metal that locating at the center of BN--nanotube that some of periodic transformations. Also, Atomic charge have considered to full alternation B, N and metal atoms in BN--nanotube determined the active sites of structures. Thermo chemical functions of relative enthalpy (ΔH), entropy (ΔS) and free Gibbs energy (ΔG) have been calculated. Our investigation exhibited that some metal atoms can strongly bind to the BN--nanotube to enhance the potential electronic molecular effects of these compounds for various applications.
Anahtar Kelimeler
BN--nanotube | metal | NMR | thermochemical
Makale Türü Özgün Makale
Makale Alt Türü SCOPUS dergilerinde yayımlanan tam makale
Dergi Adı Russian Journal of Physical Chemistry A
Dergi ISSN 0036-0244
Dergi Tarandığı Indeksler SCI-Exp, SCOPUS, CCR Database, Chemistry Server Reaction Center, Curation, Current Contents Physical Chemical & Earth Sciences, Essential Science Indicators, Reaction Citation Index, Reference Master, Sophia
Makale Dili İngilizce
Basım Tarihi 12-2021
Cilt No 95
Sayı 1
Doi Numarası 10.1134/S003602442115019X
BM Sürdürülebilir Kalkınma Amaçları
Atıf Sayıları
WoS 1
SCOPUS 1
Induced Metals on BN--Nanotube by DFT/EPR Methods

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