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@article{ISU_2019_19_1_a4, author = {A. S. Kolesnikova and K. A. Prikhodchenko}, title = {Influence of doping by oxygen atoms of porous carbon nanostructures on values of {Young's} modulus}, journal = {Izvestiya of Saratov University. Mathematics. Mechanics. Informatics}, pages = {59--68}, publisher = {mathdoc}, volume = {19}, number = {1}, year = {2019}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/ISU_2019_19_1_a4/} }
TY - JOUR AU - A. S. Kolesnikova AU - K. A. Prikhodchenko TI - Influence of doping by oxygen atoms of porous carbon nanostructures on values of Young's modulus JO - Izvestiya of Saratov University. Mathematics. Mechanics. Informatics PY - 2019 SP - 59 EP - 68 VL - 19 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/ISU_2019_19_1_a4/ LA - ru ID - ISU_2019_19_1_a4 ER -
%0 Journal Article %A A. S. Kolesnikova %A K. A. Prikhodchenko %T Influence of doping by oxygen atoms of porous carbon nanostructures on values of Young's modulus %J Izvestiya of Saratov University. Mathematics. Mechanics. Informatics %D 2019 %P 59-68 %V 19 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/ISU_2019_19_1_a4/ %G ru %F ISU_2019_19_1_a4
A. S. Kolesnikova; K. A. Prikhodchenko. Influence of doping by oxygen atoms of porous carbon nanostructures on values of Young's modulus. Izvestiya of Saratov University. Mathematics. Mechanics. Informatics, Tome 19 (2019) no. 1, pp. 59-68. http://geodesic.mathdoc.fr/item/ISU_2019_19_1_a4/
[1] Zhao Z., Wang E. F., Yan H., Kono Y., Wen B., Bai L., Shi F., Zhang J., Kenney-Benson C., Park C., Wang Y., Shen G., “Nanoarchitectured materials composed of fullerene-like spheroids and disordered graphene layers with tunable mechanical properties”, Nature Communications, 6:6212 (2015), 1–10 | DOI
[2] Bauer J., Schroer A., Schwaiger R., Kraft O., “Approaching theoretical strength in glassy carbon nanolattices”, Nat. Mater., 15 (2016), 438–443 | DOI
[3] Kolesnikova A. S., “Mechanical Properties of Sorbents Depending on Nanopore Sizes”, Physics of the Solid State, 59:7 (2017), 1336–1339 | DOI
[4] Manoharan M. P., Lee H., Rajagopalan R., Foley H. C., Haque M. A., “Elastic Properties of 4–6 nm-thick Glassy Carbon Thin Films”, Nanoscale Res Lett., 5 (2010), 14–19 | DOI
[5] Suarez-Martinez I., Marks N. A., “Effect of microstructure on the thermal conductivity of disordered carbon”, Applied Physics Letters, 99:3 (2011), 033101 pp. | DOI
[6] Yao M., Xiao J., Fan X., Liu R., Liu B., “Transparent, superhard amorphous carbon phase from compressing glassy carbon”, Applied Physics Letters, 104:2 (2014), 021916 pp. | DOI
[7] Glukhova O. E., Slepchenkov M. M., “Electronic Properties of the Functionalized Porous Glass-Like Carbon”, J. Phys. Chem. C, 120:31 (2016), 17753–17758 | DOI
[8] Liang H., Ma X., Yang Z., Wang P., Zhang X., Ren Z., Xuea M., Chen G., “Emergence of superconductivity in doped glassy-carbon”, Carbon, 99 (2016), 585–590 | DOI
[9] Feng S., Li W., Shi Q., Li Y., Chen J., Ling Y., Asiri A. M., Zhao D., “Synthesis of Nitrogen-Doped Hollow Carbon Nanospheres for CO2 Capture.”, Chem. Commun., 50 (2014), 329–331 | DOI
[10] Bo X., Bai J., Ju J., Guo L., “Highly dispersed Pt nanoparticles supported on poly(ionic liquids) derived hollow carbon spheres for methanol oxidation.”, J. Power Sources, 196 (2011), 8360–8365 | DOI
[11] Qiao Z. A., Guo B., Binder A. J., Chen J., Veith G. M., Dai S., “Controlled Synthesis of Mesoporous Carbon Nanostructures via a “Silica-Assisted” Strategy”, Nano Lett., 13 (2013), 207–212 | DOI
[12] Bushuev N. A., Glukhova O. E., Grigor'ev Y. A., Ivanov D. V., Kolesnikova A. S., Nikolaev A. A., Shalaev P. D., Shesterkin V. I., “Emissivity of a multibeam electron gun with a glassy carbon field-emission cathode”, Technical Physics, 61:2 (2016), 290–295 | DOI | MR
[13] White R. J., Tauer K., Antonietti M., Titirici M. M., “Functional Hollow Carbon Nanospheres by Latex Templating”, J. Am. Chem. Soc., 132 (2010), 17360–17363 | DOI
[14] Chen A., Yu Y., Lv H., Wang Y., Shen S., Hu Y., Li B., Zhang Y., Zhang J., “Thin-walled, mesoporous and nitrogen-doped hollow carbon spheres using ionic liquids as precursors”, J. Mater. Chem. A, 1 (2013), 1045–1047 | DOI
[15] Lu A.-H., Li W.-C., Hao G.-P., Spliethoff B., Bongard H.-J., Schaack B. B., Schüth F., “Easy synthesis of hollow polymer, carbon, and graphitized microspheres”, Angew. Chem. Int. Ed., 49 (2010), 1615–1618 | DOI
[16] Gong K. P., Du F., Xia Z. H., Durstock M., Dai L. M., “Nitrogen-Doped Carbon Nanotube Arrays with High Electrocatalytic Activity for Oxygen Reduction”, Science, 323 (2009), 760–764 | DOI
[17] Tang J., Salunkhe R. R., Liu J., Torad N. L., Imura M., Furukawa S., Yamauchi Y., “Thermal conversion of core-shell metal-organic frameworks: a new method for selectively functionalized nanoporous hybrid carbon”, J. Am. Chem. Soc., 137 (2015), 1572–1580 | DOI
[18] Zhong M., Kim E. K., McGann J. P., Chun S.-E., Whitacre J. F., Jaroniec M., Matyjaszewski K., Kowalewski T., “Electrochemically Active Nitrogen-Enriched Nanocarbons with Well-Defined Morphology Synthesized by Pyrolysis of Self-Assembled Block Copolymer”, J. Am. Chem. Soc., 134 (2012), 14846–14857 | DOI
[19] Kakinoki J., “A model for the structure of 'glassy carbon'”, Acta Cryst., 18 (1965), 578 | DOI
[20] Brenner D. W., “Empirical potential for hydrocarbons for use in simulating the chemical vapor deposition of diamond films”, Phys. Rev. B, 42 (1990), 9458 | DOI
[21] Glukhova O. E., Kolesnikova A. S., Kossovich E. L., Zhnichkov R. Y., “Super strong nanoindentors for biomedical applications based on bamboo-like nanotubes”, Progress in Biomedical Optics and Imaging, Proceedings of SPIE, 8233, 2012, 823311 | DOI
[22] Glukhova O. E., Kolesnikova A. S., “Empirical modeling of longitudinal tension and compression of graphene nanoparticles and nanoribbons”, Physics of the Solid State, 53:9 (2011), 1957–1962 | DOI
[23] Glukhova O. E., Kolesnikova A. S., “Mechanical and emission properties of thinnest stable bamboolike nanotubes”, Journal of Physics: Conference Series, 393 (2012), 012027 | DOI
[24] Glukhova O. E., Saliy I. N., Zhnichkov R. Y., Khvatov I. A., Kolesnikova A. S., Slepchenkov M. M., “Elastic properties of graphene-graphane nanoribbons”, Journal of Physics : Conference Series, 248 (2010), 012004 | DOI