List of poster presentations
List of poster presentations
PDF 177 Kb
PDF 177 Kb
Poster session 1 (01 July) | ||
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Topic 1: Graphene | ||
P1.00 | Elena Sheka | |
Water dynamics in shungite with inelastic neutron scattering | ||
P1.01 | Elena Sheka | |
Spectral properties of shungite quantum dots | ||
P1.02 | Vladimir Yakovlevich Davydov | |
Estimation of adsorption isotherms and heats of compounds adsorption on graphene | ||
P1.03 | Victor Demin | |
Theoretical investigation of graphene-graphane nanoribbons magnetic properties | ||
P1.04 | Mattia Gaboardi | |
Metal Decorated Graphenes: Synthesis and Characterization | ||
P1.05 | Konstantin Alekseevich Simonov | |
Iodine p-doping of graphene on Ni(111) by thermal CuI overlayer decomposition | ||
P1.06 | Mikhail Katkov | |
Selective gas sensor on the basis of fluorinated graphene | ||
P1.07 | Ilya Klimovskikh | |
Electronic and spin structure of graphene on Pt(111) | ||
P1.08 | Oleg Kononenko | |
Investigation of structure and transport properties of graphene grown by low-pressure no flow CVD on polycrystalline Ni films | ||
P1.09 | Mikhail V Korobov | |
Interaction of graphite oxide with the solvents | ||
P1.10 | Yury Krivosenko | |
New hard x-ray photoelectron spectroscopic probe of chemical bonding in graphene-on-substrate | ||
P1.11 | Yulia Vladimirovna Kudashova | |
Monolayer graphene oxide films on silicon surface | ||
P1.12 | Dmitry Gennadievich Kvashnin | |
Investigation of the strong influence of the edges and dopants to the work function of graphene-based nanostructures | ||
P1.13 | Alexander Alexandrovich Lebedev | |
Grapheme and multigraphene layers grown on 6H-SiC low temperature transport properties investigations. | ||
P1.14 | Alexander Alexandrovich Lebedev | |
Energy gaps in graphene induced by the silicon carbide substrate | ||
P1.15 | Denis Dmitrievich Levin | |
Formation and investigation of graphene films produced by different methods | ||
P1.16 | Natalia Lvova | |
The adsorption properties of polycrystalline graphene: quantum-chemical simulation | ||
P1.17 | Valery Michailovich Mikushkin | |
X-ray induced graphene oxide reduction studied by photoelectron spectroscopy | ||
P1.18 | Valery Michailovich Mikushkin | |
Size confinement effect in bilayer graphene grown on 6H-SiC (0001) substrate | ||
P1.19 | Valery Michailovich Mikushkin | |
Few-layer graphene hydrogenation by H2+ ion beam of the keV-energy range | ||
P1.20 | Nadezhda Aleksandrovna Nebogatikova | |
The mechanism of fluorination processes for few-layer graphene in the aqueous solution of hydrofluoric acid | ||
P1.21 | Anastasia Pak | |
The evolution of few cycles optical pulses in a double-layer graphene - boron nitride, taking into account medium nonlinearity | ||
P1.22 | Nadezhda Anatolievna Popova | |
Molecular theory of graphene oxide | ||
P1.23 | Nadezhda Anatolievna Popova | |
Topological mechanochemistry of graphene | ||
P1.24 | Mauro Ricco | |
Muons probe hydrogen interaction with graphene | ||
P1.25 | Vladimir Sakharov | |
Utilizing of the Medium-Energy Ion Scattering Spectrometry for the Composition Investigation of Graphene Oxide Films on Silicon Surface | ||
P1.26 | Vasil Saroka | |
Slow plasmon-polaritons in carbon nanostructures for Cherenkov-type generators | ||
P1.27 | Daria Sedlovets | |
The influence of the ambient conditions on the electrical resistance of graphene-like films | ||
P1.28 | Vladimir Shnitov | |
Unusual momentum dependence of pi-plasmon energy and halfwidth in epitaxial bilayer graphene | ||
P1.29 | Alexander Sergeevich Sinitsa | |
Theoretical Study of Graphene Nucleation on Nickel Surface | ||
P1.30 | NYAN-HWA TAI | |
Influences of graphene on the viability of colon cancer cells under near infrared irradiation | ||
P1.31 | Kazuyuki Takai | |
Calorimetric Study of Muliti-Shell Nanographite derived from Nanodiamond | ||
P1.32 | Galina Vladimirovna Tikhomirova | |
Comparative studies of transport and phase transitions in graphene and graphite at high pressures | ||
P1.33 | I-SHOU TSAI | |
Preparation of Multi-layer Graphene Sheets by Electrochemical Exfoliation | ||
P1.34 | Viacheslav Andreevich Tur | |
Synthesis and characterization of few-layered graphene for supercapasitors | ||
P1.35 | Evgeny Vladimirovich Zhizhin | |
Modification of induced spin-orbit splitting of ? - states of graphene under joint intercalation of Bi and Au | ||
P1.36 | Eugenii Vyacheslavovich Skokan | |
Density functional-tight binding study of graphene fluorination | ||
Topic 2: Carbon Nanotubes | ||
P2.01 | Maxim Sergeevich Barabashko | |
Low temperature heat capacity of 1D chains of adsorbates (Xe, N2) in outer grooves of c-SWNT bundles. | ||
P2.02 | Sergey Vladimirovich Boroznin | |
Migration processes on the surface of carbon nanotubes with substitute boron atoms | ||
P2.03 | Vladimir Y. Butko | |
Interfacial and dimensional effects in graphene based nanostructures | ||
P2.04 | Olessya Aleksandrovna Davletova | |
The study of the adsorption of biologically active diketones containing diphenyloxide fragment on the outer surface of carbon nanotubes. | ||
P2.05 | Lusine Elbakyan | |
THE POLYMERS WITH CARBON NANOTUBES AS NEW MATERIALS IN STOMATOLOGY | ||
P2.06 | Alexander Valentinovich Eletskii | |
Effect of the thermal motion of the residual gas molecules onto the degradation of carbon nanotube-based electron field emission cathode | ||
P2.07 | Georgy Fedorov | |
Carbon Nanotube Sensors: Interplay between Schottky Barrier and Gas Adsorption | ||
P2.08 | Ekaterina Olegovna Fedorovskaya | |
Electrochemical and electronic properties of polyaniline/graphene composites | ||
P2.09 | Levan Ichkitidze | |
Electrically-Conductive Layers of Composite Nanomaterial with Multiwalled Carbon Nanotubes | ||
P2.10 | Levan Ichkitidze | |
The Use of Composite Nanobiomaterials based on Carbon Nanotubes for Compounds Biological Tissues | ||
P2.11 | Nadiia Kolomiiets | |
Fast-response chemical sensor based on CNT | ||
P2.12 | Natalia Konobeeva | |
Propagation of attosecond pulses in carbon nanotubes | ||
P2.13 | German Germanovich Kosakovskii | |
The mechanism of field emission in nanodiode with nanotube cathode | ||
P2.14 | German Germanovich Kosakovskii | |
The study of emission mechanism from carbon nanotube at a small anode-cathode distance | ||
P2.15 | Kirill Vladimirovich Kremlev | |
Synthesis and characterization of MWCNTs decorated with rhenium nanoparticles | ||
P2.16 | Kirill Vladimirovich Kremlev | |
NEXAFS studies of the composite MWCNT’s-pyrolitic Cr by synchrotron radiation | ||
P2.17 | Aleksey Andreevich Krutoyarov | |
About adsorption of the polyethylene monomer unit on the single-walled carbon nanotubes surface | ||
P2.18 | Natalia Pavlovna Polikarpova | |
SENSOR ACTIVITY OF CARBON NANOTUBES WITH MODIFICATION OF CARBOXYL GROUP | ||
P2.19 | Aleksandr Prikhodko | |
Percolation Mechanism and Specific Features of Nanosecond Current–Voltage Characteristics of an Array of Carbon Nanotubes | ||
P2.20 | Roman Rozanov | |
Formation of a memristor-based structures of metal oxides with carbon nanotube electrode pads | ||
P2.21 | Artem Viktorovich Rukhov | |
Macrokinetics of production processes of carbon fibrous nanomaterials | ||
P2.22 | Kerstin Schneider | |
CVD growth of carbon nanotubes with a Ni catalyst in a polyimide trench | ||
P2.23 | Sergey Urvanov | |
Carbon fibers modified with carbon nanotubes and fullerenes | ||
P2.24 | Nadzeya Igorevna Valynets | |
Electromagnetic interference shielding of carbon nanotube buckypaper in Ka-band | ||
P2.25 | Aleksei Vladimirovich Yemelyanov | |
Field control conductivity of a channel made of carbon nanotubes coated with organic molecules | ||
Poster session 2 (03 July) | ||
Topic 3: Fullerenes | ||
P3.01 | Arslan Rifkhatovich Akhmetov | |
The reaction of [60]fullerene with halogen azides | ||
P3.02 | Arslan Rifkhatovich Akhmetov | |
The reaction of [60]fullerene with aluminum azides | ||
P3.03 | Sergey Andreev | |
Facile preparation of aqueous fullerene nanodispersions | ||
P3.04 | Marina Apenova | |
Bingel-Hirsch mechanism of dichlorocarbene addition to C60/70: experimental evidence | ||
P3.05 | Shafoat Aqnazarova | |
Investigation of the structure and physical properties of fullereneсontaining polymers | ||
P3.06 | Elena Bashkatova | |
Attenuation of allergic inflammation by treatment with water-soluble forms of fullerene C60 | ||
P3.07 | Victor Andreevich Brotsman | |
Regioselective functionalization of homofullerene C60CF2 for organic photovoltaic applications | ||
P3.08 | Grigory Nikolaevich Churilov | |
The influence of helium pressure on the formation process of carbon nanodispersed substances in the plasma of high-frequency arc | ||
P3.09 | Grigory Nikolaevich Churilov | |
The formation of higher and endohedral fullerenes in the plasma of high-frequency arc with low-frequency modulation under elevated helium pressure | ||
P3.10 | Ruslan Rashidovich Gazizov | |
Formation of stable radicals in the photochemical reaction of C60 with C4F8I2 | ||
P3.11 | Ayrat Khamatgalimov | |
Stabilization of higher IPR fullerenes C74 (D3h) and C76 (Td) with open shell in radical addition reactions | ||
P3.12 | Dmitri Valentinovich Konarev | |
Preparation of mononuclear and dinuclear transition metal-fullerene compounds by the reduction method | ||
P3.13 | Valerii Ignatyevich Kovalenko | |
Isolated Pentagon Rule – what`s new? | ||
P3.14 | Kirill Vladimirovich Kremlev | |
Quenching of the phthalocyanine and porphyrine luminescence by C60 in toluene solution | ||
P3.15 | Vasily T. Lebedev | |
Supramolecular structures in aqueous solutions of fullerene-containing propylene oxide oligomers | ||
P3.16 | Vasily T. Lebedev | |
Polymer membranes modified by hybrid star-shaped macromolecules with fullerene C60 branching center | ||
P3.17 | Olga Nikolaevna Mazaleva | |
Computational study of formation pathway of the heptagon-containing C88Cl22 | ||
P3.18 | Konstantin Pavlovich Meletov | |
Phase transitions at high pressure in the neutral state donor-acceptor complexes {Pt(dbdtc)2}2C60, {Cd(dedtc)2}2C60 and {Hg(dedtc)2}2C60. | ||
P3.19 | Konstantin Pavlovich Meletov | |
Raman study of the neutral state donor-acceptor complexes of the fullerene C70 {Cd(dtc)2}2C70, {NiII(dcp)2}(C70)2 and (CuSeEt)C70 at high pressure. | ||
P3.20 | Ivan Mikheev | |
Preparation and characterization of a new clustered {С70}n fullerene material | ||
P3.21 | Ievgenii Alexandrovich Petrenko | |
Simulation of photon and secondary electron transport in thin metal and fullerite films | ||
P3.22 | Levon Borisovich Piotrovskiy | |
Characterization of fullerene derivatives by MALDI LIFT-TOF/TOF mass spectrometry | ||
P3.23 | Roman Polozkov | |
Structured pseudopotential correction to the jellium model for fullerenes | ||
P3.24 | Iraida Nikolaevna Potapova | |
Structure and properties of fullerene-derived carbon particles after heating under pressure in the temperature range of fullerene molecule stability limit | ||
P3.25 | Aleksei Pozdnyakov | |
NEXAFS spectra of PMMA-C60 and PMMA-MWNT nanocomposites | ||
P3.26 | Aleksei Pozdnyakov | |
UV-Vis diagnostics of the PMMA-C60 composite system and the kinetics of its thermal decomposition | ||
P3.27 | Natalia Andreevna Romanova | |
Synthesis, structure and theoretical study of trifluoromethylated derivatives of C84(23) fullerene | ||
P3.28 | Alexey Vladimirovich Rybalchenko | |
Spectroelectrochemical and theoretical studies of C60(CF2)H2 | ||
P3.29 | Denis Sabirov | |
Metal complexes in the synthesis of oxygen-containing C60 and C70 fullerene derivatives | ||
P3.30 | Vladimir Shnitov | |
Peculiarity of electron beam induced modification of C60/C70 composite film | ||
P3.31 | Eugenii Vyacheslavovich Skokan | |
XPS studies of several trifluoromethyl and dihalomethylene derivatives of fullerenes C60 and C70 | ||
P3.32 | Gennadi Girshevitch Sominski | |
Field emitters made of fullerene and indium nano-layers with greatly differing work functions. | ||
P3.33 | Gennadi Girshevitch Sominski | |
Operation of tip field emitters with activated fullerene coatings in technical vacuum conditions. | ||
P3.34 | Sergey Igorevich Troyanov | |
New trifluoromethylated C90 fullerenes: C90(30)(CF3)18 and C90(35)(CF3)14 | ||
P3.35 | Ayrat Khamatgalimov | |
Trifluoromethyl mono and diadducts of fullerene C84 (isomers 22 and 4): theoretical analysis of the electronic structure | ||
P3.36 | Airat Tuktarov | |
A new synthesis of fullerenyl ketones catalyzed by Ti(Oi-Pr)4 | ||
P3.37 | Irina B. Zakharova | |
Fullerene films with suppressed polymerizing ability | ||
P3.38 | Irina B. Zakharova | |
Structure, composition and optical properties of C60 thin films | ||
Poster session 3 (04 July) | ||
Topic 4: Nanodiamond particles | ||
P4.01 | Valeriy Aleksandrovich Davydov | |
Synergistic influence of fluorine and hydrogen on processes of thermal transformations of carbon-containing systems under high pressures | ||
P4.02 | Valeriy Aleksandrovich Davydov | |
Synthesis of diamond with silicon-vacancy defects at high static pressures | ||
P4.03 | Tatiana Dolenko | |
Diamond-water coupling effects in Raman and photoluminescence spectra of nanodiamond colloidal suspensions | ||
P4.04 | Valery Dolmatov | |
Radioactive nanodiamonds | ||
P4.05 | Valery Dolmatov | |
A probable mechanism of formation of detonation nanodiamond | ||
P4.06 | Viktor Volodymyrovych Garashchenko | |
The vibrational spectra of ultradispersed diamond powders | ||
P4.07 | Farida Rafilevna Gareeva | |
Electrosurface Properties of Primary Particles of Deagglomerated Detonation Nanodiamond in Aqueous KCl Solutions | ||
P4.08 | Elena Golubina | |
Effect of nanodiamond surface composition on adsorption of metal ions and catalytic properties of supported metal particles | ||
P4.09 | Dmitriy Vladimirovich Gorodetskiy | |
PE CVD synthesis of carbon-carbon composites | ||
P4.10 | Michail Grigorievic Ivanov | |
Nanodiamond-based oil lubricants on steel-steel and stainless steel- hard alloy (WC) high load contact: investigation of friction surfaces | ||
P4.11 | Andrew Khomich | |
The origin of broadband photoluminescence and EPR signals in HPHT nanodiamonds | ||
P4.12 | Inna Ivanovna Kulakova | |
Active hydrogen accumulation on detonation nanodiamond surface in Ni-supported catalysts | ||
P4.13 | Tikhon Sergeevich Kurkin | |
Enhancing the interface strength in fiber-reinforced polymer composite materials via complex modification by strongly charged nanodiamond soot particles | ||
P4.14 | Ivan Alexandrovich Makarov | |
Controlled Oxidation of Detonation Blend | ||
P4.15 | Seira Morimune | |
Nanodiamond Reinforced Polymer Nanocomposites Prepared in Aqueous Media | ||
P4.16 | Vladimir Yurievich Osipov | |
Electron paramagnetic resonance studies of modified detonation nanodiamonds with low ash content | ||
P4.17 | Anna Panova | |
Oxidation of nanodiamond powders with different content of sp2-hybridized carbon | ||
P4.18 | Natalia Igorevna Petrova | |
Electrokinetic Properties of Nanodiamond Particles in Aqueous Electrolyte Solutions | ||
P4.19 | Vladimir A. Popov | |
Use of Liquid Stamping Method for Producing Metal Matrix Composites with Non-agglomerated Nanodiamond Reinforcing Particles | ||
P4.20 | Vladimir A. Popov | |
Electrochemical composite coatings with reinforcing non-agglomerated nanodiamond particles | ||
P4.21 | Konstantin Victorovich Reich | |
Optical Properties of Detonation Nanodiamond Hydrosols | ||
P4.22 | Jessica Marianne Rosenholm | |
Nanodiamond composite structures for inorganic nanomedicine II: Application | ||
P4.23 | Jessica Marianne Rosenholm | |
Nanodiamond composite structures for inorganic nanomedicine I: Fabrication | ||
P4.24 | Natalia Nikolaevna Rozhkova | |
Contribution of graphene shell to the stabilization of nanodiamond particles in aqueous dispersion | ||
P4.25 | Mikhail Dmitrievich Sharkov | |
Ultra-dispersed diamond structure characterization using the methods of x-ray diffractometry and small-angle x-ray scattering | ||
P4.26 | Mikhail Shestakov | |
The structure of nanodiamonds produced by laser shock-wave synthesis. | ||
P4.27 | Oleksandr Vasyliovych Tomchuk | |
Aggregation in modified aqueous dispersions of detonation nanodiamonds as revealed by small-angle neutron scattering | ||
P4.28 | Ekaterina Vasilyeva | |
Production and structure of metallic-nanodiamond composites by spray-dray technique | ||
P4.29 | Nikolay Nikolaevitsh Vershinin | |
Comparative study of nanodiamond and nanosized silicon carbide based catalysts for carbon monoxide oxidation | ||
P4.30 | Dmitry Sergeevich Volkov | |
Direct Elemental Analysis of Nanodiamonds with ICP-OES | ||
P4.31 | Sergey Voropaev | |
Synthesis of Diamondlike Nanoparticles under Cavitation | ||
P4.32 | Alexandr Voznyakovskii | |
Detonation nanodiamonds. Structure or surface | ||
P4.33 | Elena Zagrebina | |
NEXAFS study of surface fluorinated nanodiamonds | ||
Topic 5: Carbon onions, Nanographite, Nanoporous carbon and Other | ||
P5.01 | Karina Ahmadishina | |
Transparent conductive film of nanotubes for flexible electronics | ||
P5.02 | Alexander Victorovich Arkhipov | |
Role of substrate in facilitated field electron emission from nanocarbon films | ||
P5.03 | Alexander Victorovich Arkhipov | |
Field electron emission from a nickel-carbon nanocomposite | ||
P5.04 | Sergey sergeevich Bukalov | |
Structural changes in commercial glassy carbons as a function of heat-treatment temperature, accjrding to Raman< X-ray diffraction and diamagnetic susceptibility data. | ||
P5.05 | Sergey Burikov | |
Using artificial neural networks for elaboration of fluorescence biosensors on the basis of nanoparticles | ||
P5.06 | Valerii Valer'evich Chernov | |
Nanocrystalline diamond films grown on flat and 3D configuration molybdenum substrates and their electron emission properties | ||
P5.07 | Olessya Aleksandrovna Davletova | |
About adsorption of simple gas molecules on a surface of acryle-nitrile nanopolimer | ||
P5.08 | Olessya Aleksandrovna Davletova | |
Research of hydrogenation of carbon nano-crystalline materials based on pyrolyzed polyacrylonitrile | ||
P5.09 | Olessya Aleksandrovna Davletova | |
Research of adsorption of carbon nanostructures on the base of pyrolized polyacrylonitrile | ||
P5.10 | Tran Thi Thuy Duong | |
MgO - doped alumina reinforced by carbon nanotubes | ||
P5.11 | Aleksey Victorovich Erokhin | |
Structural and catalytic properties of metal – carbon nanocomposites Fe@C and Ni@C in phenylacetylene hydrogenation | ||
P5.12 | Pavel V. Fursikov | |
Metal oxide – carbon nanofibers composites: synthesis, characterization, and electrophysical behavior | ||
P5.13 | Viktor Volodymyrovych Garashchenko | |
Optical limiting in polymer suspension of graphite submicron scale particles | ||
P5.14 | Ramil Ibragimov | |
SERS substrate development for advanced carbon nanostructures study | ||
P5.15 | Sergey Vasilievich Kozyrev | |
Carbon encapsulation of magnetic metal nanoparticles: correlation between nanoscale structure of carbon matrix and electromagnetic properties | ||
P5.16 | Yury Krivosenko | |
Resonances in photoemission from molecules confined in fullerene cages | ||
P5.17 | Yulia Alexandrovna Kvashnina | |
The prediction of the new promising superhard carbon allotropes | ||
P5.18 | Anton Malovichko | |
Sensitive properties of percolating networks of carbon nanotubes and ZnO nanorods investigation | ||
P5.19 | Svetlana Mikhailova | |
Optical properties peculiarity of platinum embedded diamond-like carbon films | ||
P5.20 | Kirill Victorovich Mironovich | |
Secondary nucleation on nanoctructured carbon films grown in the plasma of direct current glow discharge | ||
P5.21 | Evgeny Nicholaevich Moos | |
CRYSTALLINE STATE ATOMIC- PURE SURFACE OF HIGHORIENTATION PYROLYTIC GRAPHITE | ||
P5.22 | Roza Muzafarovna Nikonova | |
Contact interaction of metal melts with nanocarbon materials | ||
P5.23 | Tatiana S Orlova | |
Structure-driven transition in behaviour of elastic and inelastic properties of wood-derived biocarbon | ||
P5.24 | Nail Rahmatullovich Sadykov | |
Calculation of electrical conductivity of polyynic and cumulenic carbon chains | ||
P5.25 | Dmitry Ivanovich Savkin | |
SYNTHESIS AND CHARACTERISTICS OF X-RAY AMORPHOUS NANOCARBON PRODUCED BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS. | ||
P5.26 | Olga Sedelnikova | |
Electromagnetic screening effect in carbon nanostructures: ab initio and experimental study | ||
P5.27 | Fedor Shakhov | |
HPHT synthesis and properties of boron doped diamonds | ||
P5.28 | Tao Wei | |
Putting a non-group-III metal into fullerene cage via metal nitride formation | ||
P5.29 | Olga Anatoliivna Biloivan | |
Nanocomposite Amperometric Biosensor for Choline Determination in Infant Formula | ||
P5.30 | Uladimir Urbanovich | |
On the question of structure formation of amorphous-nanocrystalline composite with high hardness based on nanocarbon at high pressure | ||
P5.31 | Andrey Yakovlevich Vinogradov | |
Growth and characterization of DLC-(Ni-C) nanocomposite sandwich structures | ||
P5.32 | Andrey Yakovlevich Vinogradov | |
Effect of ion bombardment on phase composition and mechanical properties of thin diamond like carbon films | ||
P5.33 | Evgeniya Zharikova | |
New photoluminescent material on the basis of nanodiamonds and ions terbium(III) | ||
P5.34 | Mattia Gaboardi | |
Reversible hydrogen absorption in alkali metal intercalated fullerides | ||
P5.35 | Fupin Liu | |
A series of inorganic solid nitrogen sources for the synthesis of metal nitride clusterfullerenes: the dependence of production yield on the oxidation states of nitrogen and counter ion | ||
P5.36 | AKIHIRO OTSUKA | |
Various types of intermolecular interactions between C60 anion radicals | ||
School Poster Session (03 July) | ||
P6.01 | Maxim Sergeevich Barabashko | |
The low temperature heat capacity of the C60-CH4 solution | ||
P6.02 | Svetlana Vladimirovna Cherdyntseva | |
Processing and characterization of epoxy nanocomposites modified by multi-wall carbon nanotube Graphistrength® C S1-25 | ||
P6.03 | Alexey Emelianov | |
Field electron emission from carbon films fabricated by magnetron sputtering | ||
P6.04 | Igor Vladimirovich Ershov | |
Ab initio study of atomic structure and surface states of graphene covered MnO polar (111) surfaces | ||
P6.05 | Ekaterina Olegovna Fedorovskaya | |
Biosensors based on composites of aligned carbon nanotubes and RNA | ||
P6.06 | Alina Ibatullina | |
Importance of detonation nanodiamonds post-synthetic processing. | ||
P6.07 | Arthur Alikovich Ibragimov | |
Electron field emission features of carbon nanostructured cathode | ||
P6.08 | Marianna Kharlamova | |
The filling of single-walled carbon nanotube channels is a method of directional modification of their electronic properties | ||
P6.09 | Sergei Koniakhin | |
The electron-phonon matrix element in the Dirac point of graphene | ||
P6.10 | Svyatoslav Igorevich Krel | |
Investigation of low-aspect-ratio carbonic field-emission nanostructures | ||
P6.11 | Yulia Vladimirovna Kudashova | |
Forming of monolayer graphene oxide films on silicon substrate | ||
P6.12 | Alexander Pavlovich Meylakhs | |
Heat Transport across the metal-nanodiamond interface | ||
P6.13 | Nguyen Nguyen | |
Infuluence of the edge and substrate effects of zigzag graphene nanoribbons on atomic and electronic structures of the 8-ZGNR/h-BN(0001) interface. | ||
P6.14 | Veranika Pack | |
Effect of BaTiO3 modification by shungite carbon deposition on the dielectric properties of polymer based composites containing modified BatiO3 as a filler | ||
P6.15 | Veranika Pack | |
ZnS:Cu phosphors modified by shungite nanocarbon deposition | ||
P6.16 | Nikolai Romanov | |
Infrared absorption studies of chemically modified nanodiamonds of dynamic synthesis | ||
P6.17 | Valentina Anatolevna Shmatko | |
H-SWCNT: X-ray absorption spectroscopy and semiempirical calculations. | ||
P6.18 | Filipp Shumilov | |
Would it be possible to control a synthesis process of Detonation diamonds? | ||
P6.19 | Aleksander Shvidchenko | |
The features of applicability of dynamic light scattering method for the size analysis of carbon nanoparticles in sols | ||
P6.20 | Andrey Sergeevich Solomatin | |
Highly tritium labeled detonation nanodiamond | ||
P6.21 | Oleksandr Vasyliovych Tomchuk | |
Small-angle scattering from detonation nanodiamonds as polydisperse particles with diffusive surface | ||
P6.22 | Alina Alekseevna Tomchuk | |
Study of cluster reorganization in C60/NMP/H2O solutions by dynamic light scattering | ||
P6.23 | Kseniya Alekseevna Ustimenko | |
Structure and optical properties of fullerene C60 complex with dipyridinated iron(II) phthalocyanine [Fe(II)Pc(C5H5N)2]•C60•4C6H4Cl2 | ||
P6.24 | Sofiya Piatrouna Varanovich | |
Anomalous absorption of ultra-thin pyrolytic carbon films | ||
P6.25 | Evgeny Vladimirovich Zhizhin | |
Photoelectron spectroscopy with angular and spin (SARPES) resolution for the study of systems based on graphene | ||
P6.26 | Nataliya Aleksandrovna Samoylova | |
Structures and spectroscopy of neutral and charged forms of [6,6]-closed and [6,6]-open fullerene CF2-derivatives |