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Ionic Liquids - Analytical Reagents - Chemoinformatics Research group of Prof. Igor V. Pletnev | e-mail |
In brief
(iii) computational chemistry in general, and chemical data management/mining. A particular activity is related to the development of IUPAC International Chemical Identifier, InChI Reseach Group Members
Dr. Irina I. Torocheshnikova, Assoc. Prof. Current collaborations
Research group of Dr. Natalia Shvedene, Laboratory of Electrochemical Methods of Analysis, MSU Chem
(ion-selective electrodes, voltammetry) Ongoing proects Room-temperature ionic liquids
Room-temperature ionic liquids (RTILs) are low-melting organic salts.
They have an unique combination of properties (non-volatile, conductive,
some of them are hydrophobic,...) and may be extremely useful
in separations and chemical analysis.
Lecture on IL (in Russian; 04-21-2009)
Host-guest complexation
Metal ion complexes as receptors for various compounds and ions, as well as active components of ion-selective electrodes .
Theoretical coordination chemistry
Application of data mining methods to the rationalization and prediction of
metal ion complexation with polydentate ligands.
Selected Publications
Rzevskaia A.V., Shvedene N.V., Pletnev I.V.
Solidified ionic liquid as crystalline sensing element of the bromide selective electrode.
Sensors and Actuators, B: Chemical. 2014, v, 193, p. 563-567.
Pletnev I, Erin A, McNaught A, Blinov K, Tchekhovskoi D, Heller S.
InChI - the worldwide chemical structure identifier standard.
J. Cheminformatics. 2013, v. 5, p.7
Pletnev I, Erin A, McNaught A, Blinov K, Tchekhovskoi D, Heller S.
InChIKey collision resistance: an experimental testing.
J. Cheminformatics. 2012 Dec 20;4.
Shvedene NV, Rzhevskaia AV, Pletnev IV.
Ionic liquids based on quaternary phosphonium cation as active components of solid-state iodide selective electrode.
Talanta. 2012 Dec 15;102:123–7.
N.V. Shvedene, O.A. Avramenko, V.E. Baulin, L.G. Tomilova, I.V. Pletnev.
Iodide-Selective Screen-Printed Electrodes Based on Low-Melting Ionic
Solids and Metallated Phthalocyanine.
Electroanalysis, 2011, v. 23, N5, 1067-1072.
V.M. Egorov, D.I. Djigailo, D.S. Momotenko, D.V. Chernyshov, I.I. Torocheshnikova, S.V. Smirnova and I.V. Pletnev.
Task-specific ionic liquid trioctylmethylammonium salicylate as extraction solvent for transition metal ions.
Talanta, 2010, v. 80, N3, 1177-1182.
N.V. Shvedene, D.V. Chernyshev, Y.P.Gromova, M.Y. Nemilova, and I.V. Pletnev.
Hydrophobic ionic liquids in plasticized membranes of ion-selective eletctrodes.
J. Analyt. Chem., 2010, v. 65, N8, 861-865.
A.G. Vendilo, D.I. Djigailo, H.Ronkkomaki, M. Lajunen, E.A. Chernikova, L.H.J. Lajunen, I.V. Pletnev and K.I. Popov. A correlation of caesium-18-crown-6 complex formation constants with the extraction capability for hydrophobic ionic liquids. Mendeleev Communications, 2010, v. 20, N2, 122-124.
D.V. Chernyshov, V.M. Egorov, N.V. Shvedene, and I.V. Pletnev.
Vladimir M. Egorov, Svetlana V. Smirnova and Igor V. Pletnev.
Low-Melting Ionic Solids: Versatile Materials for Ion-Sensing Devices.
ACS Appl. Mater. Interfaces, 2009, v.1 , N9, pp 2055-2059.
Vladimir M. Egorov, Svetlana V. Smirnova and Igor V. Pletnev.
Highly efficient extraction of phenols and aromatic amines into novel ionic liquids incorporating quaternary ammonium cation.
Separation and Purification Technology, 2008, 63, 710-715.
I.V. Pletnev, S.V. Smirnova and V.M. Egorov.
Liquid-Liquid Extraction of Organic Compounds.
In: Ionic Liquids in Chemical Analysis. Ed. By M. Koel. CRC Press, 2008. pp. 243-267.
Denis V Chernyshov, Natalia V Shvedene, Erika R Antipova, Igor V. Pletnev.
Ionic liquid based miniature electrochemical sensors for the voltammetric determination of
catecholamines.
Anal. Chim. Acta, 2008, 621(2), pp. 178-184 .
D.V. Chernyshov, M.G. Khrenova,
I.V. Pletnev, N.V. Shvedene.
Screen-printed ion-selective electrodes covered with
membranes containing ionic liquids.
Mendeleev Communications, 2008, 18(8), 88-90.
V. M. Egorov, S. V. Smirnova, A.A. Formanovsky, I. V. Pletnev,
and Yu A. Zolotov.
Dissolution of cellulose in ionic liquids as a way to obtain test materials
for metal-ion detection.
Anal Bioanal Chem (2007) 387:2263-2269.
N. V. Shvedene, D. V. Chernyshov, M. G. Khrenova, A. A. Formanovsky,
V.E. Baulin, I.V. Pletnev.
Ionic Liquids Plasticize and Bring Ion-Sensing Ability to Polymer Membranes of Selective Electrodes.
Electroanalysis 18, 2006, No. 13-14, 1416 - 1421.
I. V. Pletnev, S. V. Smirnova, K. S. Khachatryan, and V. V. Zernov.
Application of ionic liquids in liquid-liquid extraction (a review; in Russian).
Journal of Russian Chemical Society, 2004, v. 58, N6, 51-58.
N. V. Shvedene, S. V. Borovskaya, V. V. Sviridov, E. R. Ismailova, I. V. Pletnev.
Measurement of Ionic Liquid Solubility in Water with Ion-Selective Electrodes.
Anal. Bioanal. Chem., 2005, v. 381, pp. 427-430.
K. S. Khachatryan, S. V. Smirnova, I. I. Torocheshnikova, N. V. Shvedene, A.A. Formanovsky, I. V. Pletnev.
Solvent extraction and extraction-voltammetric determination of phenols using room temperature ionic liquid.
Anal. Bioanal. Chem., 2005, v. 381, pp. 464-470.
S. V. Smirnova, I. I. Torocheshnikova, A. A. Formanovsky, I. V. Pletnev.
Solvent extraction of amino acids into room-temperature ionic liquid
with dicyclohexano-18-crown-6.
Anal. Bioanal. Chem., 2004, v. 378, pp. 1369-1375.
N.V. Shvedene, M.Yu. Nemilova, K.S. Khachatryan, N.A. Mamonov, A.V. Shukhaev, A.A.Formanovsky, I.V. Pletnev
EXTRACTION-VOLTAMMETRIC DETERMINATION OF CATECHOLAMINES USING A NOVEL
CLASS OF SOLVENTS:IONIC LIQUIDS
Proc. Moscow Univ. Ser. Chem., 2004, v.45, pp.324-332.
V. V. Zernov, K. V. Balakin, A. A. Ivaschenko, N. P. Savchuk, and I. V. Pletnev.
Drug Discovery Using Support Vector Machines. The Case Studies of Drug-likeness, Agrochemical-likeness, and Enzyme Inhibition Predictions.
J. Chem. Inf. Comput. Sci., 2003, 43(6).
M.B. Darkhovskii, I.V. Pletnev, and A.L. Tchougreeff.
Low- and high-spin iron (II) complexes studied by effective crystal field method combined with molecular mechanics.
J. Comp. Chem., 2003, 24(14), 1703-1719.
I. V. Pletnev, A.A. Formanovsky, S. V. Smirnova, I. I. Torocheshnikova, K. S. Khachatrya, N. V. Shvedene, M. Yu. Nemilova.
Ionic liquids -- new solvents for extraction and analysis.
Zh. analit. khim. (Russ. J. Analyt. Chem.), 2003, 58(7), 710.
L. P. Berdnikova, N. V. Shvedene and I. V. Pletnev.
Hydroxamic acids and their in situ formed complexes
as the active component of membrane ion-selective electrodes.
Koord. khim. (Russ. J. Coord. Chem.), 2002, 28(11), 816-821.
N. V. Shvedene, I. A. Nazarova, A. A. Formanovsky, D. S. Otkidach and I. V. Pletnev.
3-(4-Tolylazo)phenylboronic acid as the active component of polyhydroxy compounds-selective electrodes.
Electrochemistry Communications, 4 (2002), 978-984.
Darhovskii M.B., Razumov M.G., Pletnev I.V. and Tchougreeff A.L.
Hybrid molecular mechanics: effective crystal field method for modeling potential energy surfaces of transition metal complexes.
Int. J. Quantum Chem. 2002, v.88, N5, 588-605.
Pletnev I.V., Zernov V.V.
Classification of metal ions according to their complexing
properties: a data-driven approach.
Analytica Chimica Acta, 2002, v. 455, pp. 131-142.
Yu. N. Blikova, N. V. Shvedene, I. V. Pletnev.
Binuclear Copper(II) Phthalocyanate as Active
Component in Membrane Anion-Selective Electrodes.
Zh. Analit. Khim. (Russ. J. Analyt.Chem.),
2002, v.57, N10, 1110-1115 (in Russian).
N. N. Leyzerovich, N. V. Shvedene, Yu. N. Blikova, L. G. Tomilova,
I. V. Pletnev. Comparative Study of the Metal Phthalocyanates as Active
Components in Salicylate-Selective Electrodes. Electroanalysis 2001, v.
13, N3, 246-252. M. G. Razumov, V. L. Melnikov and I. V. Pletnev. Molecular
Mechanics Calculations of beta-Diketonate, Aqua, And Aqua- beta-Diketonate
Complexes of Lanthanide Ions Using Gillespie-Kepert Model. J. Comput.
Chem., 2001, v. 22, N1, 38-50. D.S. Otkidach, I.V. Pletnev. Conformational
Analysis of Boron-Containing Compounds Using Gillespie-Kepert Version of
Molecular Mechanics. J. Mol. Struct. Theochem, 2001, v. 536, N1, p.
65-72.
Nazarova I.A., Starushko N.V., Otkidach K.N., Shvedene N.V., Formanovskii A.A., Pletnev I.V.
Using hydrophobic derivatives of boronic acid for ionometric determination of polyhydroxycompounds.
Vestnik MGU Ser.2. Khimiya (Moscow University Chemistry Bulletin),
2001, Л. 42, № 1, pp. 33-37 (in Russian). Smirnova S.V., Torocheshnikova I.I., Pletnev I.V.
Extraction of Amino Acids with Dinonylnaphthalenesulfonic Acid in the Presence of Dicyclohexyl-18-Crown-6.
Vestnik MGU Ser.2. Khimiya (Moscow University Chemistry Bulletin),
2000, v. 41, № 3, pp. 186-188 (in Russian).
Shvedene N.V., Leizerovich N.N., Rybakova M.M., Kostalyndina E.V., Koval Ya.N., Pletnev I.V.
Aluminium (III) Phthalocyanate As an Active Component of Salicylate -Selective Membrane Electrode.
Vestnik MGU Ser.2. Khimiya (Moscow University Chemistry Bulletin),
2000, v. 41, № 1, pp. 34-36 (in Russian). Pletnev I. V., Shvedene N. V., Lyutikova I. V., Nazarova I. A.,
Litvak I. M., Mikhura I. V., Zolotov Yu. A. Arylboronic
compounds - novel carriers for catecholamine selective membrane
electrodes. Fres. J Analyt. Chem. 1999, v. 364, N8, pp.
682-685
Shvedene N.V., Berdnikova L.P., Bakhmutova E.V., Nemilova M. Yu., Blikova Yu.N.,
Toropchenova E.S, Baulin V.V. Pletnev I.V.
Membrane electrodes based on phosphoryl podands having anonogenic groups for
amines and related compounds.
Vestnik MGU Ser.2. Khimiya (Moscow University Chemistry Bulletin),
1999, v. 40, № 4, pp. 237-240 (in Russian).
Lyutikova, I.V., Pletnev, I.V., Matveeva, I.G., and Torocheshnikova, I.I.
Transport of carbohydrates acros bulk liquid membrane with substituted calix[8]arenes and phosphoryl-containing podand.
Bull. Russ. Acad. Sci., Ser. Chem., 1998, №1, pp. 175-176 (in Russian). Shvedene, N.V.; Shishkanova, T.V.; Torocheshnikova, I.I.; Nazarova,
I.A.; Baulin, V.E.; Zolotov, Yu.A.; Pletnev, I.V. Phosphoryl containing podands
as carriers in plasticized membrane electrodes selective to quarternary
ammonium surfactants. Journal of Inclusion Phenomena and Molecular
Recognition in Chemistry, 1998, v. 32, 9-21.
Shvedene N.V., Belchenko N.N., Starushko N.V., Baulin V.E., and Pletnev, I.V.
Liquid membrane electrodes based on aza compounds for the determination of organic aniones.
Vestnik MGU Ser.2. Khimiya (Moscow University Chemistry Bulletin),
1998, v. 39, № 6, pp. 383-389 (in Russian).
Pletnev, I.V.; Melnikov, V.L.
Molecular mechanics application to coordination compounds: the force field
based on Gillespie-Kepert model.
Koord. Khimiya (Russ. J. Coord. Chem.) 1997, v.23, 205- 213 (in Russian).
Melnikov, V.L.; Pletnev, I.V.
Molecular mechanics study of the amine- and pyridyl-containing complexes
of zinc(II) and cadmium(II): the force field based on Gillespie-Kepert
model.
Bull. Russ. Acad. Sci., Ser. Chem., 1997, №7, pp. 2185-1283 (in Russian). Pletnev, I.V.; Torocheshnikova, I.I. Separation and Determination
of Organic Compounds. Macrocyclic Compounds in Analytical Chemistry. Ed.
by Yu. A. Zolotov. Chemical analysis; v. 143. Wiley-Interscience: New
York. 1997, Chapter 6, 359-404. Pletnev, I.V.; Zolotov, Yu. A.Host-Guest Complexation as a Tool in
Extraction and Membrane Transport of (Bio)organic Compounds. In: Ion
Exchange and Solvent Extraction. Marcel Dekker. N.Y.:L.:Hong Kong.Ed. by
Marinsky, J.; Marcus, Y. Vol.13. 1997, Chapter 3, 95-139.
Shvedene N. V., Nemilova M. Yu., Kochulina O. V., Pronina I.A.,and Pletnev I. V.
Neutral carriers based PVC plasticized ion selective electrodes for the determination
of novocaine.
Vestnik MGU Ser.2. Khimiya (Proc. Moscow Univ., Ser. 2. Chemistry),
1997, v.38, N2, 99-103 (in Russian). Shvedene, N.V.; Shishkanova, T.V.; Pletnev, I.V.; Belchenko, N.V.,
Kovalev, V.V.; Shokova, E.A. Surfactant
ion-selective membrane electrodes. Anal. Lett.,1996, v.29, N6,
843-858.
Pletnev, I. V.
Metal ion complexes of 1,4,7-triazacyclononane and its aminoalkyl derivatives. Analysis of chelate rings fusion and molecular mechanics study.
Can.J.Chem., 1994, v. 72, N5, pp. 1404-1411.
(
DJVU format)
I. V. Pletnev, Yu. A. Zolotov.
Molecular design of polydentate reagents with known stereochemistry of complexation.
Fres. Z. Anal.Chem., 1988. V.331, 245-247.
(
DJVU format)
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