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The influence of optical irradiation on the sorption properties of fullerene materialsV. V. SamoninV. Yu. NikonovaE. A. SpiridonovaPhysical Chemistry of Nanoclusters and NanomaterialsDOI:
10.Cite this article as: Samonin, V.V., Nikonova, V.Y. & Spiridonova, E.A. Russ. J. Phys. Chem. (76. doi:10.
The influence of light of various wavelengths on the sorption of benzene vapor on fullerene-containing materials was studied. Sorption on C60 and CΣ was maximum when the sorbents were irradiated by ultraviolet light. The sorption values decreased in the series ultraviolet-total visible-violet-red light. The lowest absorption was observed in the dark. A decrease in the content of fullerenes in the series fullerenes-fullerene soot-fullerene black-thermally treated fullerene black-active carbon decreased and then fully suppressed (active carbon) this effect. The conclusion was drawn that benzene sorption-desorption on fullerene materials could be controlled by changing the wavelength of light used for their irradiation.1.A. V. Eletskii and B. M. Smirnov, Usp. Fiz. Nauk 161(7), 38 (1991).2.A. V. Eletskii and B. M. Smirnov, Usp. Fiz. Nauk 163(2), 33 (1993).3.V. I. Berezkin and I. V. Viktorovskii, Fiz. Tekh. Poluprovodn. (St. Petersburg) 37(7), 40 (2003) [Semiconductors 37 (7), 775 (2003)].4.V. V. Samonin and E. M. Slutsker, Zh. Fiz. Khim. 79(1), 100 (2005) [Russ. J. Phys. Chem. 79 (1), 87 (2005)].5.V. V. Samonin and E. A. Marakulina, Zh. Fiz. Khim. 76(5), 888 (2002) [Russ. J. Phys. Chem. 76 (5), 787 (2002)].6.L. A. Solov’ev and N. V. Bulina, Izv. Akad. Nauk, Ser. Khim., No. 1, 75 (2001).7.V. I. Berezkin, V. V. Samonin, I. V. Viktorovskii, et al., Zh. Fiz. Khim. 80(12), ) [Russ. J. Phys. Chem. 80 (12), )].8.V. I. Berezkin, V. V. Samonin, V. Yu. Nikonova, et al., Abstracts of Papers, 7th Biennial International Workshop in Russia: Fullerenes and Atomic Clusters IWFAC’2005 (St. Petersburg, Russia, 2005), p. 257.9.Y. Wang, J. M. Holden, Z. H. Dong, et al., Chem. Phys. Lett. 211(4), 341 (1993).10.P. Zhon, Z. H. Dong, A. M. Rao, et al., Chem. Phys. Lett. 211(4), 337 (1993).11.A. Ito, T. Morikawa, and T. Takahashi, Chem. Phys. Lett. 211(4), 333 (1993).12.A. V. Vasin, L. A. Matveeva, V. A. Yukhimchuk, and E. M. Shpilevskii, Pis’ma Zh. Tekh. Fiz. 27(21), 65 (2001) [Tech. Phys. Lett. 27 (11), 918 (2001)].13.J. Maniks, R. Pokulis, J. Kalnacs, and D. Erts, Phys. Status Solidi A 188, 989 (2001).<a class="gtm-reference" data-reference-type="CrossRef" target="_blank" rel="noopener noreferrer" href="http://dx.doi.org/10.6X(%3A3CrossRef14.C. Eklund, A. M. Rao, Z. Ping, et al., Thin Solid Films 257, 185 (1995).15.L. Shebanovs, J. Maniks, and J. Kalnacs, J. Cryst. Growth 234, 202 (2002).16.A. G. Cherepov, L. N. Vorozhbitova, and S. D. Kolosentsev, Methods for Investigation of the Sorption Properties of High-Dispersity Porous Solids: An Analysis of Adsorption Isotherms, Lecture Notes (Leningr. Tekhnol. Inst. im. Lensoveta, Leningrad, 1989), p. 60 [in Russian].17.V. Ya. Davydov, T. M. Roshchina, G. N. Filatov, and N. M. Khrustaleva, Zh. Fiz. Khim. 70(10), ) [Russ. J. Phys. Chem. 70 (10), )].18.E. V. Vlasenko, S. N. Lapin, Yu. S. Nikitin, et al., Abstracts of Papers, VI All-Russia Symposium “Urgent Problems of Adsortion Theory and Sorbent Synthesis” (Inst. Fiz. Khimii, Ross. Akad. Nauk, Moscow, 2000), p. 52.19.D. N. Gavrilov, G. K. Ivakhnyuk, N. F. Fedorov, and Z. V. Kapitonenko, Zh. Prikl. Khim. 58(9), ).20.B. M. Smirnov, Physics of Fractal Clusters (Nauka, Moscow, 1991) [in Russian].21.PersT (Perspektivnye Tekhnologii—Nanostruktury, Sverkhprovodniki, Fullereny) 6(9), (1999); .V. V. Samonin1V. Yu. Nikonova1E. A. Spiridonova11.St. Petersburg State Technological Institute (Technical University)St. PetersburgRussia
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