NANOSCALE REDUCED-GRAPHENE-OXIDE ORIGIN OF SHUNGITE IN LIGHT OF NEUTRON SCATTERING of nanosize fragments of
reduced graphene oxide (rGO) (Int. J. Smart Nano Mat. 1, 1, 2014). The
natural r
Shungite as the natural pantry of nanoscale reduced graphene oxide that is formed by a successive aggregation of ~1 nm
reduced graphene oxide nanosheets. Turbostratic stacks
Kaolin alleviates the toxicity of graphene oxide for mammalian cells and kaolin on mammalian cells. We have shown that the joint application of
graphene oxide and kaolin
reduced Technical graphene (reduced graphene oxide) and its natural analog (shungite) of molecular
graphenics—reduced graphene oxide (RGO)—is explained from a quantum-chemical standpoint
Molecular theory of graphene oxide of
graphene oxide chemistry and suggesting reliable models of both chemically produced and chemically
reduced Parent and reduced graphene oxide of different origin in light of neutron scattering of parent and
reduced graphene oxides (GO and rGO, respectively) of different origins. The first part
Neutron scattering from graphene oxide paper and thermally exfoliated reduced graphene oxide-thermally exfoliated
reduced graphene oxide (TErGO)-were studied by elastic and inelastic neutron scattering at low
Neutron scattering study of reduced graphene oxide of natural origin the chemical composition of basic structural elements of shungite attributing the latter to
reduced graphene Heteroatom necklaces of sp2 amorphous carbons. XPS supported INS and DRIFT spectroscopy (laboratory
reduced graphene oxides), and industrial products (carbon blacks) has shown, that while INS
Functionalization and Reduction of Graphene Oxide for the functionalization of
reduced graphene oxide (RGO) are considered next. While discussing GO chemical properties