A Neoteric View of sp2 Amorphous Carbon

Author:

Sheka Elena F.1ORCID

Affiliation:

1. Institute of Physical Researches and Technology, Peoples’ Friendship University of Russia (RUDN University), 117198 Moscow, Russia

Abstract

Presented is a concentrated synopsis of facilities of empirical and virtual analytics that, once applied, have provided a fully new vision of sp2 amorphous carbons. This study proved that the solids are multilevel structures, started with the first-level basic structural units (BSUs) and accomplished as macroscopic agglomerates of globular structures, consisting, in its turn, of stacked BSUs. BSUs present necklaced graphene molecules, size, and shape of which are governed by the relevant graphene domains while chemical composition in addition to basic carbon is controlled with heteroatoms of the necklaces. This study shows that BSUs and stacks of BSUs determine the short-range order of the solids and are the main subject of the applied analytics. The synopsis consists of two parts related to empirical and virtual analytics. The former is composed of sections related to structural determination, total and atomic chemical content evaluation and elicitation of the covalent bond composition. The second presents new analytic approaches based on the Digital Twins concept and virtual vibrational spectrometry. The synopsis is configured as an atlas composed of generalized pictures accompanied with necessary explanations to be discussed in detail in the extended references.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference153 articles.

1. Shungite as the natural pantry of nanoscale reduced graphene oxide;Sheka;Int. J. Smart Nano Mater.,2014

2. Small but strong lessons from chemistry for nanoscience;Hoffmann;Angew. Chem. Int. Ed.,2013

3. Elliot, S.R. (1983). Physics of Amorphous Materials, Longman.

4. Molecular structure of amorphous solids;Raman;Nature,1922

5. Computationally Supported Neutron Scattering Study of Parent and Chemically Reduced Graphene Oxide;Natkaniec;J. Phys. Chem. C,2015

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