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Results 1 to 25 of 36

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Edge-state effects on the magneto-polarizability of nanographite layersPLEUTIN, Stéphane; OVCHINNIKOV, Alexander.Carbon (New York, NY). 2002, Vol 40, Num 1, pp 129-131, issn 0008-6223Article

On possible surface magnetism in nanographiteKUSAKABE, Koichi; TAKAGI, Yoshiteru.Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystals. 2002, Vol 387, pp 7-11, issn 1058-725X, 5 p.Conference Paper

Nuclear spin―lattice relaxation in nanocarbon compounds caused by adsorbed oxygenPANICH, A. M; SHAMES, A. I.Diamond and related materials. 2011, Vol 20, Num 2, pp 201-204, issn 0925-9635, 4 p.Article

Growth and characterization of diamond micro and nano crystals obtained using different methane concentration in argon-rich gas mixtureBARBOSA, D. C; BARRETO, P. R. P; TRAVA-AIROLDI, V. J et al.Diamond and related materials. 2010, Vol 19, Num 7-9, pp 768-771, issn 0925-9635, 4 p.Conference Paper

Structures and electronic properties of surface/edges of nanodiamond and nanographiteENOKI, Toshiaki; KOBAYASHI, Yousuke; KATSUYAMA, Chika et al.Diamond and related materials. 2007, Vol 16, Num 12, pp 2029-2034, issn 0925-9635, 6 p.Conference Paper

Tight-binding band structures of nanographite multiribbonsSHYU, F. L; LIN, Ming Fa; CHANG, C. P et al.Journal of the Physical Society of Japan. 2001, Vol 70, Num 11, pp 3348-3355, issn 0031-9015Article

Carbon nanotubes can exhibit negative effects in electroanalysis due to presence of nanographite impuritiesSCOTT, Claire L; PUMERA, Martin.Electrochemistry communications. 2011, Vol 13, Num 5, pp 426-428, issn 1388-2481, 3 p.Article

Raman characterization and UV optical absorption studies of surface plasmon resonance in multishell nanographiteOSIPOV, V. Yu; BARANOV, A. V; VUL', A. Ya et al.Diamond and related materials. 2011, Vol 20, Num 2, pp 205-209, issn 0925-9635, 5 p.Article

Aqueous-phase adsorption of aromatic compounds on water-soluble nanographiteKAMEGAWA, Katsumi; NISHIKUBO, Keiko; KODAMA, Masaya et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 2005, Vol 254, Num 1-3, pp 31-35, issn 0927-7757, 5 p.Article

Nanodiamonds intercalated with metals: structure and diamond-graphite phase transitionsALEKSENSKY, A. E; BAIDAKOVA, M. V; YAGOVKINA, M. A et al.Diamond and related materials. 2004, Vol 13, Num 11-12, pp 2076-2080, issn 0925-9635, 5 p.Conference Paper

Effect of Residual Gas Pressure on Field Electron Emission from Nanographite FilmsVASILYEVA, Elena A; KLESHCH, Victor I; OBRAZSOV, Alexander N et al.Journal of nanoelectronics and optoelectronics. 2012, Vol 7, Num 1, pp 41-45, issn 1555-130X, 5 p.Article

Magnetic properties of nanocarbonMAKAROVA, T. L.Diamond and related materials. 2007, Vol 16, Num 10, pp 1841-1846, issn 0925-9635, 6 p.Conference Paper

Calculations of electric capacitance in carbon and BN nanotubes, and zigzag nanographite (BN, BCN) ribbonsHARIGAYA, Kikuo.Physica. E, low-dimentional systems and nanostructures. 2005, Vol 29, Num 3-4, pp 628-632, issn 1386-9477, 5 p.Conference Paper

Magnetic and transport properties of nanographitesWAKABAYASHI, Katsunori.Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystals. 2000, Vol 340, pp 7-12, issn 1058-725XConference Paper

Scanning Anode Field Emission Microscopy of NanocarbonsBANDURIN, Denis A; KLESHCH, Victor I; SMOLNIKOVA, Elena A et al.Journal of nanoelectronics and optoelectronics. 2013, Vol 8, Num 1, pp 114-118, issn 1555-130X, 5 p.Article

Preparation and characterization of foamed polyurethane/silicone rubber/graphite nanocomposite as radio frequency wave absorbing material: The role of interfacial compatibilizationSHAFIEIZADEGAN ESFAHANI, A. R; KATBAB, A. A; DEHKHODA, P et al.Composites science and technology. 2012, Vol 72, Num 3, pp 382-389, issn 0266-3538, 8 p.Article

Characterization of Nanographite Films by Specular Gloss MeasurementsKAPLAS, Tommi; ISMAGILOV, Rinat; OBRAZTSOV, Alexander et al.Journal of nanoelectronics and optoelectronics. 2012, Vol 7, Num 1, pp 54-59, issn 1555-130X, 6 p.Article

Field-Induced Electron Emission from Graphitic Nano-Island Films at Silicon Substrates : Advanced Carbon NanostructuresARKHIPOV, A. V; GABDULLIN, P. G; KREL, S. I et al.Fullerenes, nanotubes, and carbon nanostructures (Print). 2012, Vol 20, Num 1-8, pp 468-472, issn 1536-383X, 5 p.Conference Paper

Solid state nuclear magnetic resonance studies of nanocarbonsPANICH, A. M.Diamond and related materials. 2007, Vol 16, Num 12, pp 2044-2049, issn 0925-9635, 6 p.Conference Paper

Dissolution-aggregation behavior of water-soluble nanographites and their adsorptive characteristics for 2-naphthol in aqueous solutionsKAMEGAWA, Katsumi; NISHIKUBO, Keiko; KODAMA, Masaya et al.Journal of colloid and interface science. 2003, Vol 268, Num 1, pp 58-62, issn 0021-9797, 5 p.Article

Fabrication of graphitic nanowire structure by electron beam lithographyTAKAI, Kazuyuki; ENOKI, Toshiaki.Physica. E, low-dimentional systems and nanostructures. 2007, Vol 40, Num 2, pp 321-323, issn 1386-9477, 3 p.Conference Paper

The low-energy electronic structures of nanographite ribbons in modulated magnetic fieldsWU, J. Y; HO, J. H; LAI, Y. H et al.Physica. E, low-dimentional systems and nanostructures. 2008, Vol 40, Num 6, pp 2019-2021, issn 1386-9477, 3 p.Conference Paper

Nanostructural properties of pyrolytic carbon from polyacetylene thin filmKYOTANI, M; GOTO, A; PIAO, G et al.Synthetic metals. 2003, Vol 135-36, pp 785-786, issn 0379-6779, 2 p.Conference Paper

Differential conductance fluctuation of curved nanographite sheets in the mesoscopic regimeHAOMIN WANG; CHOONG, Catherine; JUN ZHANG et al.Solid state communications. 2008, Vol 145, Num 7-8, pp 341-345, issn 0038-1098, 5 p.Article

Optical spectra of AB- and AA-stacked nanographite ribbonsCHIU, C. W; SHYU, F. L; CHANG, C. P et al.Journal of the Physical Society of Japan. 2003, Vol 72, Num 1, pp 170-177, issn 0031-9015, 8 p.Article

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