INTERMOLECULAR INTERACTIONS OF POLYDIMETHYLSILOXANE OLIGOMERS WITH HYDROXYLATED AND SILYLATED FUMED SILICA: QUANTUM CHEMICAL MODELING ArticleNikitina E., Khavryutchenko V., Sheka E., Barthel H., Weis J.Organosilicon Chemistry I: From Molecules to Materials. 2008. P.. 745-762
MECHANICAL BEHAVIOR OF POLYDIMETHYLSILOXANES UNDER DEFORMATION, QUANTUM-CHEMICAL VIEW ArticleNikitina E., Khavryutchenko V., Sheka E., Barthel H., Weis J.Organosilicon Chemistry I: From Molecules to Materials. 2008. P.. 739-744
FUMED SILICA STRUCTURE AND PARTICLE AGGREGATION: COMPUTATIONAL MODELLING AND VERIFICATION BY VIBRATIONAL SPECTROSCOPY ArticleKhavryutchenko V., Nikitina E., Barthel H., Weis J., Sheka E.Organosilicon Chemistry I: From Molecules to Materials. 2008. P.. 734-738
CARBOXYLIC SPECIES ADSORPTION ON TIO2 NANOPARTICLES ArticleSheka E.F., Nikitina E.A., Zayets V.A., Ginzburg I.Ya., Schoonman J.Physics of the Solid State. Vol. 49. 2007. P.. 154-163
METABOLIC EFFECTS OF WEIGHT REDUCTION IN OBESE PATIENTS WITH OR WITHOUT ARTERIAL HYPERTENSION ArticleShavaroval E., Nikitina E.A., Conrady A.O.Journal of Hypertension. Vol. 25. 2007.
CARBOXYLIC SPECIES ADSORPTION ON TIO2 NANOPARTICLES ArticleSheka E.F., Nikitina E.A., Ginzburg I.Ya., Schoonman J., Zayets V.A.FIZIKA TVERDOGO TELA. Vol. 49. 2007. P.. 149-157
QUANTUM-CHEMICAL STUDY OF THE INTERFACE FORMED BY CARBOXYLATED SPECIES ON TIO2 NANOPARTICLES. 1. NANOPARTICLE SURFACE ArticleSheka E.F., Nikitina E.A., Zayets V.A., Ginzburg I.Y., Schoonman J.Physics of Low-Dimensional Structures. Vol. 1. 2006. P.. 81-99
QUANTUM-CHEMICAL STUDY OF THE INTERFACE FORMED BY CARBOXYLATED SPECIES AND TIO2 NANOPARTICLES. 2. CARBOXYLIC SPECIES ADSORPTION ArticleSheka E.F., Nikitina E.A., Zayets V.A., Ginzburg I.Y., Schoonman J.Physics of Low-Dimensional Structures. Vol. 1. 2006. P.. 99-112
PROLOG STUDY: MAIN RESULTS AND GUIDANCE FOR FURTHER ACTION ArticleMartsevich S.Yu., Shalnova S.A., Deev A.D., Kutishenko N.P., Yakusevich V.V., Alimova E.V., Andreeva G.F., Voronina V.P., Gorbunov V.M., Dmitrieva N.A., Жигарева И.П., Zagrebelnyi A.V., Zakharova A.V., Иваненкова Н.Ю., Isaikina O.Yu., Козырева М.П., Kutishenko N.P., Lerman O.V., Lukina Yu.V., Семенова Ю.Э. ...Cardiovascular Therapy and Prevention. Vol. 5. 2006. P.. 23-26
QUANTUM-CHEMICAL STUDY OF THE INTERFACE FORMED BY CARBOXYLIC SPECIES ON TIO2 NANOPARTICLES. 1. NANOPARTICLE SURFACE ArticleSheka E.F., Nikitina E.A., Ginzburg I.Ya., Schoonman J., Zayets V.A.Journal of Nanoparticle Research. Vol. 7. 2005. P.. 171-186
PROLOG STUDY: DECREASING CARDIOVASCULAR DISEASE RISK IN HYPERTENSIVE PATIENTS BY ANTIHYPERTENSIVE THERAPY ArticleShalnova S.A., Martsevich S.Yu., Deev A.D., Kutishenko N.P., Oganov R.G., Shabalin A.V., Никольская И.Н., Tretyakova T.V., Shulman V.A., Matyushin G.V., Nikulina S.Yu., Злодеев К.В., Юрин В.В., Nechaeva G.I., Zheltukhova E.V., Volkova E.G., Жаворонкова Е.Ю., Максимов Н.М., Сафронова В.В., Архипова Н.Ю. ...Cardiovascular Therapy and Prevention. Vol. 4. 2005. P.. 10-15
HIGHSPIN MOLECULAR MAGNETISM OF SILICON SURFACES ArticleSheka E.F., Nikitina E.A., Zayets V.A.Surface Science. Vol. 532-535. 2003. P.. 754-758
HIGH-SPIN SILICON FULLERENE SI60 AND ITS OLIGOMERS ArticleSheka E.F., Nikitina E.A., Zayets V.A., Ginzburg I.Ya.International Journal of Quantum Chemistry. Vol. 88. 2002. P.. 441-448
COMPARATIVE STUDY OF THE SI(100) SURFACE RECONSTRUCTION UNDER SUCCESSIVE DEHYDROGENATION. I. SI(100)(1X1)-H SURFACE ArticleNikitina E.A., Sheka E.F., Aono M.Physics of Low-Dimensional Structures. Vol. 2001. 2001. P.. 31-56
FULLERENE MODEL OF SILICON NANOFIBERS ArticleSheka E.F., Nikitina E.A., Zaets V.A., Ginzburg I.Ya.JETP Letters. Vol. 74. 2001. P.. 177-181