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Chemistry

D-Index
46
Citations
6440
World Ranking
16182
National Ranking
61

Overview

Yuri V. Mironov is affiliated with the Nikolaev Institute of Inorganic Chemistry in the Russian Federation. Their research focuses primarily on materials science and chemistry, with significant contributions to subfields such as materials chemistry, inorganic chemistry, organic chemistry, electronic, optical and magnetic materials, and process chemistry and technology.

The scientist's work covers a broad range of topics including crystallization and solubility studies, X-ray diffraction in crystallography, inorganic chemistry and materials, organometallic complex synthesis and catalysis, nanocluster synthesis and applications, crystal structures and properties, as well as iron-based superconductors research.

Frequent co-authors in their publications include Yakov M. Gayfulin, Taisiya S. Sukhikh, Aleksei S. Pronin, Konstantin A. Brylev, and Anton I. Smolentsev. Their collaborative efforts have been published in various scientific journals and databases.

Yuri V. Mironov has contributed to numerous papers, some recent examples are:

  • METAL-ORGANIC FRAMEWORKS IN RUSSIA: FROM THE SYNTHESIS AND STRUCTURE TO FUNCTIONAL PROPERTIES AND MATERIALS (2022, Journal of Structural Chemistry)
  • Cyclodextrin-Assisted Hierarchical Aggregation of Dawson-type Polyoxometalate in the Presence of {Re6Se8} Based Clusters (2020, Inorganic Chemistry)
  • Heterogeneous photoactive antimicrobial coatings based on a fluoroplastic doped with an octahedral molybdenum cluster compound (2021, Dalton Transactions)
  • Photodynamic properties of tungsten iodide clusters incorporated into silicone: A2[M6I8L6]@silicone (2020, RSC Advances)
  • Soluble Molecular Rhenium Cluster Complexes Exhibiting Multistage Terminal Ligands Reduction (2020, Inorganic Chemistry)

Mironov's publications frequently appear in The Cambridge Structural Database, Journal of Structural Chemistry, Inorganic Chemistry, Molecules, and the Russian Journal of Coordination Chemistry. The Cambridge Structural Database hosts the largest number of their publications.

Best Publications

  • Cocrystallized Mixtures and Multiple Geometries: Syntheses, Structures, and NMR Spectroscopy of the Re6 Clusters [NMe4]4[Re6(Te8-nSen)(CN)6] (n = 0−8)

    Yuri V. Mironov;Jason A. Cody;Thomas E. Albrecht-Schmitt;James A. Ibers

  • Advances in the Engineering of Near Infrared Emitting Liquid Crystals and Copolymers, Extended Porous Frameworks, Theranostic Tools and Molecular Junctions Using Tailored Re6 Cluster Building Blocks

    Stéphane Cordier;Yann Molard;Konstantin A. Brylev;Konstantin A. Brylev;Yuri V. Mironov;Yuri V. Mironov

  • Triangular thiocomplexes of molybdenum: reactions with halogens, hydrohalogen acids and phosphines

    V.P. Fedin;M.N. Sokolov;Yu.V. Mironov;B.A. Kolesov

  • Red‐NIR Luminescent Hybrid Poly(methyl methacrylate) Containing Covalently Linked Octahedral Rhenium Metallic Clusters

    Yann Molard;Frederick Dorson;Konstantin A. Brylev;Konstantin A. Brylev;Michael A. Shestopalov;Michael A. Shestopalov

  • Chalcogenide clusters of Group 5–7 metals

    V E Fedorov;Yu V Mironov;N G Naumov;M N Sokolov

  • Rhenium-chalcogenide-cyano clusters, Cu(2+) ions, and 1,2,3,4-tetraaminobutane as molecular building blocks for chiral coordination polymers.

    Unknown

  • Cellular internalisation, bioimaging and dark and photodynamic cytotoxicity of silica nanoparticles doped by {Mo6I8}4+ metal clusters

    Anastasiya O. Solovieva;Yuri A. Vorotnikov;Kristina E. Trifonova;Olga A. Efremova

  • A highly emissive inorganic hexamolybdenum cluster complex as a handy precursor for the preparation of new luminescent materials

    Olga A. Efremova;Michael A. Shestopalov;N. A. Chirtsova;Anton I. Smolentsev

  • Prospects of molybdenum and rhenium octahedral cluster complexes as X-ray contrast agents.

    Unknown

  • [{(Cu(en)2})2RE4TE4 (CN)12]·5H2O and [{(Cu(en)2})2Re6Te8 (CN)6]·5H2O: Bonding of a transition-metal complex to a rhenium chalcocyanide cluster

    Yuri V. Mironov;Vladimir E. Fedorov;Ismail Ijjaali;James A. Ibers

  • Synthesis, crystal structure, and colloidal dispersions of vanadium tetrasulfide (VS4).

    Mariia N. Kozlova;Mariia N. Kozlova;Yuri V. Mironov;Yuri V. Mironov;Ekaterina D. Grayfer;Anton I. Smolentsev;Anton I. Smolentsev

  • Octahedral Hexahydroxo Rhenium Cluster Complexes [Re6Q8(OH)6]4–·(Q = S, Se): Synthesis, Structure, and Properties

    Spartak S. Yarovoi;Yuri V. Mironov;Dmitry Y. Naumov;Yuri V. Gatilov

  • Self-Assembly of Ambivalent Organic/Inorganic Building Blocks Containing Re6 Metal Atom Cluster: Formation of a Luminescent Honeycomb, Hollow, Tubular Metal-Organic Framework

    Michael A. Shestopalov;Stéphane Cordier;Olivier Hernandez;Yann Molard

  • Inorganic Coordination Polymers Based on Chalcocyanide Cluster Complexes

    V. E. Fedorov;N. G. Naumov;Yu. V. Mironov;A. V. Virovets

  • Synthesis and crystal structure of a hexanuclear rhenium cluster complex Cs3K[Re6(μ3-S)6 (μ3-Te0.66S0.34)2(CN)6]. Cationic control over orientation of the cluster anion

    Yuri V. Mironov;Alexander V. Virovets;Vladimir E. Fedorov;Nina V. Podberezskaya

  • Homogeneous azidophenylselenylation of glycals using TMSN3–Ph2Se2–PhI(OAc)2

    Yuri V. Mironov;Andrei A. Sherman;Nikolay E. Nifantiev

  • Cluster core controlled reactions of substitution of terminal bromide ligands by triphenylphosphine in octahedral rhenium chalcobromide complexes.

    Michael A Shestopalov;Yuri V Mironov;Konstantin A Brylev;Svetlana G Kozlova

  • The first water-soluble hexarhenium cluster complexes with a heterocyclic ligand environment: synthesis, luminescence, and biological properties.

    Michael A. Shestopalov;Kristina E. Zubareva;Olga P. Khripko;Yuri I. Khripko

  • Syntheses and Characterizations of the New Tetranuclear Rhenium Cluster Compounds Re4(μ3-Q)4(TeCl2)4Cl8 (Q = S, Se, Te)

    Yuri V. Mironov;Thomas E. Albrecht-Schmitt;James A. Ibers

  • METAL-ORGANIC FRAMEWORKS IN RUSSIA: FROM THE SYNTHESIS AND STRUCTURE TO FUNCTIONAL PROPERTIES AND MATERIALS

    Unknown

  • Excision of the {Mo6Se8} Cluster Core from a Chevrel Phase: Synthesis and Properties of the First Molybdenum Octahedral Cluster Selenocyanide Anions [Mo6Se8(CN)6]7− and [Mo6Se8(CN)6]6−

    Yuri V. Mironov;Alexander V. Virovets;Nikolai G. Naumov;Vladimir N. Ikorskii

  • Octahedral molybdenum cluster complexes with aromatic sulfonate ligands

    Olga A. Efremova;Olga A. Efremova;Yuri A. Vorotnikov;Konstantin A. Brylev;Natalya A. Vorotnikova

  • The New Inorganic Ligands TeCl2 and TeBr2: Syntheses and Crystal Structures of Re6Te6Cl6(TeCl2)2 and [Re6Te8(TeBr2)6]Br2

    Yuri V. Mironov;Michael A. Pell;James A. Ibers

  • The first octahedral cluster complexes with terminal formate ligands: synthesis, structure, and properties of K4[Re6S8(HCOO)6] and Cs4[Re6S8(HCOO)6].

    Konstantin A. Brylev;Yuri V. Mironov;Svetlana G. Kozlova;Vladimir E. Fedorov

  • Nanosized mesoporous metal-organic framework MIL-101 as a nanocarrier for photoactive hexamolybdenum cluster compounds.

    Anastasia M. Cheplakova;Anastasiya O. Solovieva;Tatiana N. Pozmogova;Yuri A. Vorotnikov

Frequent Co-Authors

Noboru Kitamura
Noboru Kitamura Hokkaido University
Stéphane Cordier
Stéphane Cordier Grenoble Alpes University
Sung-Jin Kim
Sung-Jin Kim Korea Advanced Institute of Science and Technology
Mohamed Haouas
Mohamed Haouas Versailles Saint-Quentin-en-Yvelines University
Kamil Lang
Kamil Lang Czech Academy of Sciences
Maxim N. Sokolov
Maxim N. Sokolov Russian Academy of Sciences
Thomas E. Albrecht-Schmitt
Thomas E. Albrecht-Schmitt Florida State University
Mark R. J. Elsegood
Mark R. J. Elsegood Loughborough University
Gert Bernhard
Gert Bernhard Helmholtz-Zentrum Dresden-Rossendorf
Paul Kögerler
Paul Kögerler RWTH Aachen University

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