41
|
Shekhovtsov N.A.
, Vorob’eva S.
, Nikolaenkova E.B.
, Ryadun A.A.
, Krivopalov V.P.
, Gourlaouen C.
, Bushuev M.B.
Complexes on the Base of a Proton Transfer Capable Pyrimidine Derivative: How Protonation and Deprotonation Switch Emission Mechanisms
Inorganic Chemistry. 2023.
V.62. N41. P.16734-16751. DOI: 10.1021/acs.inorgchem.3c02036
WOS
Scopus
РИНЦ
OpenAlex
|
42
|
Yu X.
, Ryadun A.A.
, Pavlov D.I.
, Guselnikova T.Y.
, Potapov A.S.
, Fedin V.P.
Highly Luminescent Lanthanide Metal‐Organic Frameworks with Tunable Color for Nanomolar Detection of Iron(III), Ofloxacin and Gossypol and Anti‐counterfeiting Applications
Angewandte Chemie International Edition. 2023.
V.62. N35. e202306680
:1-9. DOI: 10.1002/anie.202306680
WOS
Scopus
OpenAlex
|
43
|
Pavlov D.I.
, Yu X.
, Ryadun A.A.
, Fedin V.P.
, Potapov A.S.
Luminescent Metal-Organic Framework with 2,1,3-Benzothiadiazole Units for Highly Sensitive Gossypol Sensing
Chemosensors. 2023.
V.11. N1. P.52-52. DOI: 10.3390/chemosensors11010052
WOS
Scopus
OpenAlex
|
44
|
Shekhovtsov N.A.
, Nikolaenkova E.B.
, Ryadun A.A.
, Samsonenko D.G.
, Tikhonov A.Y.
, Bushuev M.B.
ESIPT-Capable 4-(2-Hydroxyphenyl)-2-(Pyridin-2-yl)-1H-Imidazoles with Single and Double Proton Transfer: Synthesis, Selective Reduction of the Imidazolic OH Group and Luminescence
Molecules. 2023.
V.28. N4. 1793
:1-20. DOI: 10.3390/molecules28041793
WOS
Scopus
OpenAlex
|
45
|
Shekhovtsov N.A.
, Nikolaenkova E.B.
, Ryadun A.A.
, Vorob’eva S.N.
, Krivopalov V.P.
, Bushuev M.B.
Dual emission of ESIPT-capable 2-(2-hydroxyphenyl)-4-(1H-pyrazol-1-yl)pyrimidines: interplay of fluorescence and phosphorescence
New Journal of Chemistry. 2023.
V.47. N13. P.6361-6377. DOI: 10.1039/d3nj00570d
WOS
Scopus
OpenAlex
|
46
|
Yu X.
, Ryadun A.A.
, Kovalenko K.A.
, Guselnikova T.Y.
, Ponomareva V.G.
, Potapov A.S.
, Fedin V.P.
4 in 1: multifunctional europium-organic framework with luminescent sensing properties, white light emission, proton conductivity and reverse acetylene-carbon dioxide adsorption selectivity
Dalton Transactions. 2023.
V.52. N25. P.8695-8703. DOI: 10.1039/d3dt01323e
WOS
Scopus
РИНЦ
OpenAlex
|
47
|
Mironova O.A.
, Ryadun A.A.
, Sukhikh T.S.
, Pushkarevsky N.A.
, Konchenko S.N.
Synthesis and photophysical properties of rare earth (La, Nd, Gd, Y, Ho) complexes with silanediamido ligands bearing a chelating phenylbenzothiazole chromophore
New Journal of Chemistry. 2023.
V.47. N7. P.3406-3416. DOI: 10.1039/d2nj05540f
WOS
Scopus
OpenAlex
|
48
|
Bekker T.B.
, Ryadun A.A.
, Rashchenko S.V.
, Davydov A.V.
, Baykalova E.B.
, Solntsev V.P.
A Photoluminescence Study of Eu3+, Tb3+, Ce3+ Emission in Doped Crystals of Strontium-Barium Fluoride Borate Solid Solution Ba4−xSr3+x(BO3)4−yF2+3y (BSBF)
Materials. 2023.
V.16. N15. 5344
:1-13. DOI: 10.3390/ma16155344
WOS
Scopus
OpenAlex
|
49
|
Evtushok D.V.
, Sukhikh T.S.
, Ivanov A.A.
, Gayfulin Y.M.
, Eltsov I.V.
, Stass D.V.
, Ryadun A.A.
, Zubareva A.P.
, Shestopalov M.A.
Improved Synthesis of (TBA)2[W6Br14] Paving the Way to Further Study of Bromide Cluster Complexes
Inorganic Chemistry. 2023.
V.62. N12. P.4934-4946. DOI: 10.1021/acs.inorgchem.2c04426
WOS
Scopus
OpenAlex
|
50
|
Bekker T.B.
, Ryadun A.A.
, Davydov A.V.
, Rashchenko S.V.
LiBa12(BO3)7F4 (LBBF) crystals doped with Eu3+, Tb3+, Ce3+: structure and luminescence properties
Dalton Transactions. 2023.
V.52. N24. P.8402-8413. DOI: 10.1039/d3dt01279d
WOS
Scopus
OpenAlex
|
51
|
Matveevskaya V.V.
, Pavlov D.I.
, Ryadun A.A.
, Fedin V.P.
, Potapov A.S.
Synthesis, Crystal Structure, and Luminescent Sensing Properties of a Supramolecular 3D Zinc(II) Metal–Organic Framework with Terephthalate and Bis(imidazol-1-yl)methane Linkers
Inorganics. 2023.
V.11. N7. 264
:1-13. DOI: 10.3390/inorganics11070264
WOS
Scopus
OpenAlex
|
52
|
Komlyagina V.I.
, Romashev N.F.
, Besprozvannykh V.K.
, Arakelyan J.
, Wu C.
, Chubarov A.S.
, Bakaev I.V.
, Soh Y.K.
, Abramov P.A.
, Cheung K.L.
, Kompankov N.B.
, Ryadun A.A.
, Babak M.V.
, Gushchin A.L.
Effects of Bis(imino)acenaphthene (Bian)-Derived Ligands on the Cytotoxicity, DNA Interactions, and Redox Activity of Palladium(II) Bipyridine Complexes
Inorganic Chemistry. 2023.
V.62. N29. P.11541-11553. DOI: 10.1021/acs.inorgchem.3c01172
WOS
Scopus
OpenAlex
|
53
|
Першина Е.А.
, Бурлуцкий Н.П.
, Павлов Д.И.
, Рядун А.А.
, Федин В.П.
, Потапов А.С.
СИНТЕЗ, КРИСТАЛЛИЧЕСКАЯ СТРУКТУРА И ЛЮМИНЕСЦЕНТНЫЕ СВОЙСТВА КООРДИНАЦИОННЫХ ПОЛИМЕРОВ КАДМИЯ С ДИ(ПИРАЗОЛ-1-ИЛ)АЛКАН-4,4'-ДИКАРБОНОВЫМИ КИСЛОТАМИ
Координационная химия. 2022.
Т.48. №10. С.582-589. DOI: 10.31857/s0132344x2210005x
OpenAlex
|
54
|
Pershina E.A.
, Burlutskiy N.P.
, Pavlov D.I.
, Ryadun A.A.
, Fedin V.P.
, Potapov A.S.
Coordination Polymers of Cadmium with Di(pyrazol-1-yl)alkane4,4'-dicarboxylic Acids: Synthesis, Crystal Structures,
and Luminescence Properties
Russian Journal of Coordination Chemistry. 2022.
V.48. N10. P.601–607. DOI: 10.1134/S1070328422100049
WOS
Scopus
OpenAlex
|
55
|
Demakov P.A.
, Ryadun A.A.
, Fedin V.P.
Aliphatic-Bridged Early Lanthanide Metal–Organic Frameworks: Topological Polymorphism and Excitation-Dependent Luminescence
Inorganics. 2022.
V.10. N10. P.163. DOI: 10.3390/inorganics10100163
WOS
Scopus
OpenAlex
|
56
|
Khisamov R.M.
, Ryadun A.A.
, Konchenko S.N.
, Sukhikh T.S.
Fluorescence vs. Phosphorescence: Which Scenario Is Preferable in Au(I) Complexes with Benzothiadiazoles?
Molecules. 2022.
V.27. N23. 8162
:1-12. DOI: 10.3390/molecules27238162
WOS
Scopus
OpenAlex
|
57
|
Khisamov R.M.
, Ryadun A.A.
, Konchenko S.N.
, Sukhikh T.S.
Molecular Environment Effects That Modulate the Photophysical Properties of Novel 1,3-Phosphinoamines Based on 2,1,3-Benzothiadiazole
Molecules. 2022.
V.27. N12. 3857
:1-13. DOI: 10.3390/molecules27123857
WOS
Scopus
РИНЦ
OpenAlex
|
58
|
Demakov P.A.
, Ryadun A.A.
, Dybtsev D.N.
Highly Luminescent Crystalline Sponge: Sensing Properties and Direct X-ray Visualization of the Substrates
Molecules. 2022.
V.27. N22. 8055
:1-14. DOI: 10.3390/molecules27228055
WOS
Scopus
OpenAlex
|
59
|
Demakov P.A.
, Ryadun A.A.
, Fedin V.P.
Zn(II) coordination polymer with π-stacked 4,4′-bipyridine dimers: Synthesis, structure and luminescent properties
Polyhedron. 2022.
V.219. 115793
:1-5. DOI: 10.1016/j.poly.2022.115793
WOS
Scopus
РИНЦ
OpenAlex
|
60
|
Tarasenko M.S.
, Duritsyn R.V.
, Potapov D.A.
, Kuratieva N.V.
, Ryadun A.A.
, Naumov N.G.
DOUBLE YTTRIUM THIOSILICATES AYSiS4 (A = Rb, Cs): SYNTHESIS, STRUCTURE, OPTICAL PROPERTIES
Journal of Structural Chemistry. 2022.
V.63. N12. P.1988-1996. DOI: 10.1134/s0022476622120101
WOS
Scopus
OpenAlex
|