This book compiles and details cutting-edge research in fundamentals and design of modern 2D and 3D graphene composites nanomaterials and their practical use from the leading specialists in the field of graphene science and technology from the Institute for Research & Medical Consultations.
This book compiles and details cutting-edge research in fundamentals and design of modern 2D and 3D graphene composites nanomaterials and their practical use from the leading specialists in the field of graphene science and technology from the Institute for Research & Medical Consultations.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Olga E. Glukhova is head of the Chair of Radio Engineering and Electrodynamics at the Department of Physics, Saratov State University (SGU), Russia. She is also head of the Department of Mathematical Modeling at the Educational Research Institute of Nanostructures and Biosystems of SGU and senior researcher at the Laboratory of Biomedical Nanotechnology, Institute of Bionic Technologies and Engineering, I. M. Sechenov First Moscow State Medical University, Russia. She obtained her PhD in physics and mathematics in 1997 and Doctorate of Physical and Mathematical Sciences (the highest scientific degree in Russia, habilitation) in 2009 from SGU. Prof. Glukhova's research interests include molecular modeling of nanostructures and biosystems, condensed matter physics, materials science, carbon nanostructures (fullerenes, nanotubes, graphene, graphane), nanoelectronics, mechanics of nanostructures, quantum transport, photovoltaics and optoelectronics, biophysics, and structural chemistry.
Inhaltsangabe
Graphene and Graphene Nanomesh-Based Platforms for Sensing, Transparent Electrodes, and Catalysis Templates. Essential Properties of Fluorinated Graphene and Graphene Nanoribbons. Perspectives of new 2D-films based on covalently bonded graphene and carbon nanotubes for electronic applications. Control of the emission properties of pillared graphene. Application of 3D-porous graphene in emission electronics: new atomistic model and numerical estimations. The atomistic structure and electrical conductivity of pillared graphene films. Electro-conductive properties and applications of graphene-DNA nucleotide complex. Structural and electronic properties of a new multi-layer graphene/graphane material. New physical effects in graphene/C60 hybrid systems. Graphene/carbon nanotube hybrid material as an element base of optical nanodevices.
Graphene and Graphene Nanomesh-Based Platforms for Sensing, Transparent Electrodes, and Catalysis Templates. Essential Properties of Fluorinated Graphene and Graphene Nanoribbons. Perspectives of new 2D-films based on covalently bonded graphene and carbon nanotubes for electronic applications. Control of the emission properties of pillared graphene. Application of 3D-porous graphene in emission electronics: new atomistic model and numerical estimations. The atomistic structure and electrical conductivity of pillared graphene films. Electro-conductive properties and applications of graphene-DNA nucleotide complex. Structural and electronic properties of a new multi-layer graphene/graphane material. New physical effects in graphene/C60 hybrid systems. Graphene/carbon nanotube hybrid material as an element base of optical nanodevices.
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