most citedEffects of nitrogen-doping configurations with vacancies on conductivity in graphene

59 citations · 132 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall201431 cited

Kinetics of atomic ordering in metal-doped graphene

T. M. Radchenko, V. A. Tatarenko

Possible stably-ordered substitutional structures based on a graphene-type crystal lattice are considered. A kinetic model of atomic ordering in metal-doped graphene with stoichiom…

cond-mat.mtrl-sci201433 cited

A statistical-thermodynamic analysis of stably ordered substitutional structures in graphene

T. M. Radchenko, V. A. Tatarenko

Ordered distributions of carbon and substitutional dopant (A) atoms over the sites of a graphene lattice and problem of their stability are considered theoretically. The ranges of…

cond-mat.mes-hall20149 cited

Configurations of structural defects in graphene and their effects on its transport properties

T. M. Radchenko, V. A. Tatarenko, I. Yu. Sagalianov +1

The chapter combines analytical (statistical-thermodynamic and kinetic) with numerical (Kubo-Greenwood-formalism-based) approaches used to ascertain an influence of the configurati…

cond-mat.mtrl-sci2014

Microscopic approach to the evaluation of diffusion coefficients for substitutional f.c.c. solid solutions

T. M. Radchenko, V. A. Tatarenko, S. M. Bokoch +1

The microscopic theory of atomic diffusion kinetics is used for f.c.c. substitutional solid solutions. Within this approach, the short-range order relaxation is due to the atomic m…

cond-mat.mtrl-sci2014

Parameters of microdiffusion in f.c.c.-Ni-Mo solid solutions

S. M. Bokoch, M. P. Kulish, V. A. Tatarenko +1

The time evolution of diffuse X-ray scattering intensities conditioned by the short-range order (SRO) in Ni-Mo solid solutions is investigated. As shown, the transition from a quen…

cond-mat.mes-hall201459 cited

Effects of nitrogen-doping configurations with vacancies on conductivity in graphene

T. M. Radchenko, V. A. Tatarenko, I. Yu. Sagalianov +1

We investigate electronic transport in the nitrogen-doped graphene containing different configurations of point defects: singly or doubly substituting N atoms and nitrogen-vacancy…