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Том 68, № 6 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Mechanochemical Synthesis of closo-Decaborate Anion Derivatives with Pendant Functional Groups |
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Том 68, № 6 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Study of Crystal Structures of the [B10Cl10]2– Anion with Imidazolium Cations |
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Том 68, № 6 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Derivatives of the closo-Decaborate Anion with Pendant Functional Groups as Inhibitors of Viral Replication |
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Том 68, № 6 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Synthesis and Structure of Trisubstituted closo-Decaborane [B10H7(1-IPh)(6(7),10-NHOCCH3)]: Specifics of Interaction between the [2-B10H9NH=C(OH)CH3]– Ion and PhI(OAc)2 |
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Том 68, № 6 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Study of Hydrolysis of Nitrile Derivatives of closo-Dodecaborate Anion (Et4N)[B12H11N≡C–R] (R = Me, Et, nPr, iPr) |
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Том 68, № 6 (2023) |
КООРДИНАЦИОННЫЕ СОЕДИНЕНИЯ |
Synthesis and Crystal Structures of (HL)2[B10Cl10]·3CH3CN (L = Bipy, Phen) |
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Том 68, № 6 (2023) |
КООРДИНАЦИОННЫЕ СОЕДИНЕНИЯ |
Features of Copper(I) Complexation with Benzimidazole Derivatives in the Presence of the closo-Dodecaborate Anion |
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Том 68, № 5 (2023) |
ИСТОРИЯ НАУКИ |
XII Международное Курнаковское совещание по физико-химическому анализу |
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Том 68, № 4 (2023) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Effect of Supersonic Nitrogen Flow on Ceramic Material Ta4HfC5–SiC |
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Том 68, № 1 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Ion-Selective Membrane Electrode for Determination of the Octahydrotriborate Anion |
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Том 68, № 12 (2023) |
КООРДИНАЦИОННЫЕ СОЕДИНЕНИЯ |
Synthesis of New Iminium Derivatives of Sulphonio-сloso-Decaborate Anion (Bu4N)[2-B10H9SC(NH2)R] (R = –CH3, –CH2CH3, –CH(CH3)2, –Ph, –PhCH3) |
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Том 68, № 12 (2023) |
ФИЗИКОХИМИЯ РАСТВОРОВ |
Potentiometraic Method for Determining Biologically Non-Degradable Antimicrobial Substances |
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Том 68, № 12 (2023) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Synthesis of Two-Dimensional NiO Nanostructures by a Combination of Programmable Chemical Deposition and Hydrothermal Treatment |
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Том 68, № 12 (2023) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Hierarchically Organized MoS2 Films as Promising Electrodes for Flexible Supercapacitors |
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Том 68, № 11 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
New Method for Synthesis of Substituted 1-Amidine-closo-decaborates [1-B10H9NH=C(R1)NHR2] (R1 = Me, iPr, Ph; R2 = nBu, Bn) |
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Том 68, № 10 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Nucleophilic Addition of Aliphatic Diamines NH2(CH2)nNH2 (n = 6, 9) to Nitrilium Derivatives of the closo-Decaborate Anion [2-B10H9NCR]– (R = CH3, C2H5, nC3H7) |
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Том 68, № 10 (2023) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Study of Hydrophilic/Hydrophobic Properties of Borylated Iminols [BnHn – 1NHC(OH)R]– (n = 10, 12) |
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Том 68, № 10 (2023) |
КООРДИНАЦИОННЫЕ СОЕДИНЕНИЯ |
Features of Cadmium(II) Complexation with N-Donor Heterocyclic Ligands in the Presence of the Octadecahydroeicosaborate Anion |
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Том 68, № 9 (2023) |
КООРДИНАЦИОННЫЕ СОЕДИНЕНИЯ |
Synthesis and Structures of Cobalt(II) Coordination Compounds with Isomeric Forms of Octadecahydroeicosaborate Anion |
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Том 69, № 6 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Preparation of a сloso-Dodecaborate Anion Conjugate with Ethyl Glycinate and Study of Its Biodistribution in a B16f10 Melanoma Model |
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Том 69, № 6 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Study of the Reversible Hawthorne Rearrangement between Isomeric Forms of the Octadecahydroeicosaborate Anion using Dynamic 11B NMR Spectroscopy |
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Том 69, № 5 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Synthesis of 1,10-disulfanyl-closo-decaborate anion and its tetraacetylamidedisulfonium derivative |
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Том 69, № 5 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
The substituted derivative of closo-dodecaborate anion based on para-iodo-L-phenylalanine is a novel compound for BNCT with CT imaging capability |
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Том 69, № 4 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Surface Transformation Of Ultrahigh-Temperature Ceramics HfB2-SiC-C(graphene) Under The Influence Of High-Speed Disossociated Nitrogen Jets |
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Том 69, № 4 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Effect Of The Composition Of The Etching System MF-HCl (M = Li+, Na+, NH4+) on the gas-sensitive properties of Ti3C2Tх/Tioх nanocomposites |
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Том 69, № 4 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Application Of Vanadyl Alkoxoacetylacetonate In Formation Of v2O5 Electrochromic Films |
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Том 69, № 4 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Gas sensing properties of Ti0.2V1.8CTx/V2O5 nanocomposite |
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Том 69, № 9 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Chemosensor properties of Ti0.2V1.8CTx–V2O5–SnO2 nanocomposite |
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Том 69, № 10 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
The Iminoacylation Reaction of Iodoaniline with [2-B10H9NCCH3]– Anion is a Route to the Preparation of New Boron-Containing Synthons |
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Том 69, № 10 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
New Method for the Synthesis of Acetylacetone-Based Closo-Borate Anion Derivatives [BnHn–1NH=C(R)C(C(OH)CH3)C(O)CH3]–, Where n = 10, 12, R = Me, Et |
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Том 69, № 9 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Carboxonium derivatives of closo-decaborate anion [2,6-B10H8O2CC6H4R]– based on aromatic carboxylic acids: synthesis and physicochemical properties |
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Том 69, № 11 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
SYNTHESIS OF Ti2AlC IN KBr MELT: EFFECT OF TEMPERATURE AND COMPONENT RATIO |
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Том 69, № 9 (2024) |
СИНТЕЗ И СВОЙСТВА НЕОРГАНИЧЕСКИХ СОЕДИНЕНИЙ |
Synthesis of triethylammonium salts of amidine derivatives of closo-borate anions [B10H10]2– and [B12H12]2– and investigation of their cytotoxic properties |
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Том 69, № 10 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Preparation and Chemosensory Properties of Ti2CTx–10 mol. % SnO2 Composite Material |
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Том 69, № 9 (2024) |
НЕОРГАНИЧЕСКИЕ МАТЕРИАЛЫ И НАНОМАТЕРИАЛЫ |
Preparation and chemosensor properties of nano–composite obtained by hydrothermal modification of Ti2CTx by hierarchically organised Co(CO3)0.5 (OH) ⋅ 0.11H2O |
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