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G. Myachina, S. Korzhova, T. Ermakova, B. Sukhov, Boris Trofimov (2008)
Silver-poly(1-vinyl-1,2,4-triazole) nanocompositesDoklady Chemistry, 420
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ISSN 00125008, Doklady Chemistry, 2010, Vol. 431, Part 1, pp. 63–64. © Pleiades Publishing, Ltd., 2010. Original Russian Text © G.F. Myachina, T.V. Kon’kova, S.A. Korzhova, T.G. Ermakova, A.S. Pozdnyakov, B.G. Sukhov, K.Yu. Arsent’ev, E.V. Likhoshvai, B.A. Trofimov, 2010, published in Doklady Akademii Nauk, 2010, Vol. 431, No. 1, pp. 50–51. CHEMISTRY Gold Nanoparticles Stabilized with WaterSoluble Biocompatible Poly(1vinyl1,2,4triazole) a a a a G. F. Myachina , T. V. Kon’kova , S. A. Korzhova , T. G. Ermakova , a a b A. S. Pozdnyakov , B. G. Sukhov , K. Yu. Arsent’ev , b a E. V. Likhoshvai , and Academician B. A. Trofimov Received October 7, 2009 DOI: 10.1134/S0012500810030018 Gold nanoparticles impart unusual optical, mag 516–532 nm (Fig. 1), which is typical of systems with netic, and biological properties to nanocomposites, separate gold particles in nanosized zerovalent metal which are widely used in analytical chemistry, geomi state [1]. The IR spectra of the nanocomposites crobiology, geobiochemistry, and photography [1], as exhibit absorption bands corresponding to the stretch well as in medicine for providing the transport of sub ing and bending vibrations of the triazole ring of the stances into cell by endocytosis [2, 3], the delivery of
Doklady Chemistry – Springer Journals
Published: Mar 23, 2010
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