1
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Stoyanov E.S.
, Bagryanskaya I.Y.
, Stoyanova I.V.
An IR-spectroscopic and X-ray structural study of vinil-type carbocations in their carborane salts
ACS Omega. 2022.
V.7. N31. 27560–27572
:1-1. DOI: 10.1021/acsomega.2c03025
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2
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Stoyanov E.S.
, Bagryanskaya I.Y.
, Stoyanova I.V.
Unsaturated Vinyl-Type Carbocation [(CH3)2C=CH]+in Its Carborane Salts
ACS Omega. 2021.
V.6. N24. P.15834-15843. DOI: 10.1021/acsomega.1c01297
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3
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Stoyanov E.S.
, Bagryanskaya I.Y.
, Stoyanova I.V.
Isomers of the Allyl Carbocation C3H5+in Solid Salts: Infrared Spectra and Structures
ACS Omega. 2021.
V.6. N37. P.23691–23699. DOI: 10.1021/acsomega.1c01316
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4
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Stoyanov E.S.
, Stoyanova I.V.
The Mechanism of High Reactivity of Benzyl Carbocation, C6H5CH2+, during Interaction with Benzene
ChemistrySelect. 2020.
V.5. N29. P.9277-9280. DOI: 10.1002/slct.202001852
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5
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Stoyanov E.S.
, Stoyanova I.V.
Features of Protonation of the Simplest Weakly Basic Molecules, SO2, CO, N2O, CO2, and Others by Solid Carborane Superacids
Angewandte Chemie - International Edition. 2018.
V.57. N17. P.4516-4520. DOI: 10.1002/anie.201704645
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6
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Stoyanov E.S.
, Stoyanova I.V.
Chloronium Cations in Dichloromethane Solutions as Catalysts for the Conversion of CH2Cl2 to CHCl3/CCl4 and CH3Cl/CH4
ChemistrySelect. 2018.
V.3. N1. P.122-126. DOI: 10.1002/slct.201702738
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7
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Stoyanov E.S.
, Stoyanova I.V.
Protonation of N2O and NO2 in a solid phase
Physical Chemistry Chemical Physics. 2017.
V.19. N48. P.32733-32740. DOI: 10.1039/c7cp04474g
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8
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Stoyanov E.S.
Stabilization of Saturated Carbocations in Condensed Phases
Journal of Physical Chemistry A. 2017.
V.121. N50. P.9638-9644. DOI: 10.1021/acs.jpca.7b10068
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9
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Stoyanov E.S.
Chemical Properties of Dialkyl Halonium Ions (R(2)Hal(+)) and Their Neutral Analogues, Methyl Carboranes, CH3-(CHB(11)Hal(11)) Where Hal = F, Cl
Journal of Physical Chemistry A. 2017.
V.121. N15. P.2918-2923. DOI: 10.1021/acs.jpca.7b01203
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10
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Stoyanov E.S.
, Nizovtsev A.S.
Stabilization of carbocations CH3+, C2H5+, i-C3H7+, tert-Bu+, and cyclo-pentyl(+) in solid phases: experimental data versus calculations
Physical Chemistry Chemical Physics. 2017.
V.19. N10. P.7270-7279. DOI: 10.1039/c6cp06839a
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11
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Stoyanov E.S.
The salts of chloronium ions R-Cl+-R (R = CH3 or (CHCl)-Cl-2): formation, thermal stability, and interaction with chloromethanes
Physical Chemistry Chemical Physics. 2016.
V.18. N18. P.12896-12904. DOI: 10.1039/c6cp00946h
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12
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Stoyanov E.S.
, Malykhin S.E.
Carbon monoxide protonation in condensed phases and bonding to surface superacidic Bronsted centers
Physical Chemistry Chemical Physics. 2016.
V.18. N6. P.4871-4880. DOI: 10.1039/c5cp07441j
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13
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Stoyanov E.S.
, Gomes G.d.P.
tert-Butyl Carbocation in Condensed Phases: Stabilization via Hyperconjugation, Polarization, and Hydrogen Bonding
Journal of Physical Chemistry A. 2015.
V.119. N32. P.8619-8629. DOI: 10.1021/acs.jpca.5b04657
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14
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Stoyanov E.S.
, Mikhailov V.A.
, Trofimova E.V.
, Petrukhin O.M.
, Yagodin G.A.
IR SPECTROSCOPY STUDY OF COMPLEXES FORMED UNDER IRON(III) EXTRACTION BY HAFNIUM(IV) ACIDIC DI-2-ETHYLHEXYLPHOSPHATE FROM NITRIC-ACID SOLUTIONS
Журнал неорганической химии. 1988.
V.33. N2. P.431-436.
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