Virtual Vibrational Spectrometry of Stable Radicals—Necklaced Graphene Molecules

The article presents results of an extended virtual experiment on graphene molecules per-formed using the virtual vibrational spectrometer HF Spectrodyn that exploits semiempirical Har-tree-Fock approximation. The molecules are composed of flat graphene domains surrounded with heteroatom necklaces. Not existing individually, these molecules are met in practice as basic structure units of complex multilevel structure of all sp2 amorphous carbons. This circumstance deprives the solids’ in vitro spectroscopy of revealing the individual character of basic structural elements, and in silico spectrometry fills this shortcoming. The obtained virtual vibrational spectra allow for drawing first conclusions about the specific features of the vibrational dynamics of the necklaced graphene molecules, caused by spatial structure and packing of their graphene domains as well as by chemical composition of the relevant necklaces. As shown, IR absorption spectra of the molecules are strongly necklace dependent, once becoming a distinct spectral signature of the amorphous body origin. Otherwise, Raman spectra are a spectral mark of the graphene domain’s size and pack-ing, thus disclosing the mystery of their universal D-G-band standard related to graphene-contain-ing materials of various origins

Авторы
Журнал
Издательство
MDPI AG
Номер выпуска
4
Язык
Английский
Страницы
597
Статус
Опубликовано
Номер
597
Том
12
Год
2022
Организации
  • 1 Российский университет дружбы народов
Ключевые слова
virtual vibrational spectrometry; virtual spectrometer; semiempirical Hartree–Fock approximation; digital twins; necklaced graphene molecules; sp2 amorphous carbons
Дата создания
05.05.2022
Дата изменения
05.05.2022
Постоянная ссылка
https://repository.rudn.ru/ru/records/article/record/82933/
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