| 1 | Radiush E.A.
    ,        Wang H.
    ,        Chulanova E.A.
    ,        Prima D.O.
    ,        Radaeva N.S.
    ,        Ponomareva Y.A.
    ,        Semenov N.A.
    ,        Zibarev A.V. Recognition and sensing of Lewis bases by 1,2,5-chalcogenadiazoles
 Mendeleev Communications. 2024.
        V.34.     N3.     P.297-306. DOI: 10.1016/j.mencom.2024.04.001
            WOS
        
            Scopus
        
            OpenAlex
 | 
                    
                                                        | 2 | Radiush E.A.
    ,        Wang H.
    ,        Chulanova E.A.
    ,        Ponomareva Y.A.
    ,        Li B.
    ,        Wei Q.Y.
    ,        Salnikov G.E.
    ,        Petrakova S.Y.
    ,        Semenov N.A.
    ,        Zibarev A.V. Halide Complexes of 5,6‐Dicyano‐2,1,3‐Benzoselenadiazole with 1 : 4 Stoichiometry: Cooperativity between Chalcogen and Hydrogen Bonding
 ChemPlusChem. 2023.
        V.88.     N11.     e202300523
        :1-11.    DOI: 10.1002/cplu.202300523
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 3 | Katlenok E.A.
    ,        Kuznetsov M.L.
    ,        Semenov N.A.
    ,        Bokach N.A.
    ,        Kukushkin V.Y. A new look at the chalcogen bond: π-hole-based chalcogen (Se, Te) bonding which does not include a σ-hole interaction
 Inorganic Chemistry Frontiers. 2023.
        V.10.     N10.     P.3065-3081. DOI: 10.1039/d3qi00087g
            WOS
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 4 | Chulanova E.A.
    ,        Radiush E.A.
    ,        Semenov N.A.
    ,        Hupf E.
    ,        Irtegova I.G.
    ,        Kosenkova Y.S.
    ,        Bagryanskaya I.Y.
    ,        Shundrin L.A.
    ,        Beckmann J.
    ,        Zibarev A.V. Tuning Molecular Electron Affinities against Atomic Electronegativities by Spatial Expansion of a π-System
 ChemPhysChem. 2023.
                e202200876
        :1-8.    DOI: 10.1002/cphc.202200876
            WOS
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 5 | Radiush E.A.
    ,        Pritchina E.A.
    ,        Chulanova E.A.
    ,        Dmitriev A.A.
    ,        Bagryanskaya I.Y.
    ,        Slawin A.M.Z.
    ,        Woollins J.D.
    ,        Gritsan N.P.
    ,        Zibarev A.V.
    ,        Semenov N.A. Chalcogen-bonded donor-acceptor complexes of 5,6-dicyano[1,2,5]selenadiazolo[3,4-b]pyrazine with halide ions
 New Journal of Chemistry. 2022.
        V.46.         P.14490-14501. DOI: 10.1039/d2nj02345h
            WOS
        
            OpenAlex
 | 
                    
                                                        | 6 | Parman E.
    ,        Lõkov M.
    ,        Järviste R.
    ,        Tshepelevitsh S.
    ,        Semenov N.A.
    ,        Chulanova E.A.
    ,        Salnikov G.E.
    ,        Prima D.O.
    ,        Slizhov Y.G.
    ,        Leito I.
    ,        Zibarev A.V. Acid-Base and Anion Binding Properties of Tetrafluorinated 1,3-Benzodiazole, 1,2,3-Benzotriazole and 2,1,3-Benzoselenadiazole
 ChemPhysChem. 2021.
        V.22.     N22.     P.2329-2335. DOI: 10.1002/cphc.202100475
            WOS
        
            Scopus
        
            OpenAlex
 | 
                    
                                                        | 7 | Chulanova E.A.
    ,        Radiush E.A.
    ,        Shundrina I.K.
    ,        Bagryanskaya I.Y.
    ,        Semenov N.A.
    ,        Beckmann J.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Lewis ambiphilicity of 1,2,5-chalcogenadiazoles for crystal engineering: Complexes with crown ethers
 Crystal Growth and Design. 2020.
        V.20.     N9.     P.5868-5879. DOI: 10.1021/acs.cgd.0c00536
            WOS
        
            Scopus
        
            OpenAlex
 | 
                    
                                                        | 8 | Semenov N.A.
    ,        Radiush E.A.
    ,        Chulanova E.A.
    ,        Slawin A.M.Z.
    ,        Woollins J.D.
    ,        Kadilenko E.M.
    ,        Bagryanskaya I.Y.
    ,        Irtegova I.G.
    ,        Bogomyakov A.S.
    ,        Shundrin L.A.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
 New Journal of Chemistry. 2019.
        V.43.     N41.     P.16331-16337. DOI: 10.1039/c9nj04069b
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 9 | Chulanova E.A.
    ,        Semenov N.A.
    ,        Pushkarevsky N.A.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Charge-transfer chemistry of chalcogen-nitrogen pi-heterocycles
 Mendeleev Communications. 2018.
        V.28.     N5.     P.453-460. DOI: 10.1016/j.mencom.2018.09.001
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 10 | Semenov N.A.
    ,        Gorbunov D.E.
    ,        Shakhova M.V.
    ,        Salnikov G.E.
    ,        Bagryanskaya I.Y.
    ,        Korolev V.V.
    ,        Beckmann J.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Donor-Acceptor Complexes between 1,2,5-Chalcogenadiazoles (Te, Se, S) and the Pseudohalides CN- and XCN- (X=O, S, Se, Te)
 Chemistry - A European Journal. 2018.
        V.24.     N49.     P.12983-12991. DOI: 10.1002/chem.201802257
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 11 | Shuku Y.
    ,        Hirai Y.
    ,        Semenov N.A.
    ,        Kadilenko E.
    ,        Gritsan N.P.
    ,        Zibarev A.V.
    ,        Rakitin O.A.
    ,        Awaga K. 3D molecular network and magnetic ordering, formed by multi-dentate magnetic couplers, bis(benzene)chromium(I) and [1,2,5]thiadiazolo[3,4-c][1,2,5] thiadiazolidyl
 Dalton Transactions. 2018.
        V.47.     N29.     P.9897-9902. DOI: 10.1039/c8dt02214c
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 12 | Konstantinova L.S.
    ,        Baranovsky I.V.
    ,        Pritchina E.A.
    ,        Mikhailov M.S.
    ,        Bagryanskaya I.Y.
    ,        Semenov N.A.
    ,        Irtegova I.G.
    ,        Salnikov G.E.
    ,        Lyssenko K.A.
    ,        Gritsan N.P.
    ,        Zibarev A.V.
    ,        Rakitin O.A. Fused 1,2,3-Thiaselenazoles Synthesized from 1,2,3-Dithiazoles through Selective Chalcogen Exchange
 Chemistry - A European Journal. 2017.
        V.23.     N67.     P.17037-17047. DOI: 10.1002/chem.201703182
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 13 | Semenov N.A.
    ,        Lonchakov A.V.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Donor-acceptor coordination of anions by chalcogen atoms of 1,2,5-chalcogenadiazoles
 Russian Chemical Bulletin. 2015.
        V.64.     N3.     P.499-510. DOI: 10.1007/s11172-015-0893-7
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 14 | Семенов Н.А.
    ,        Лончаков А.В.
    ,        Грицан Н.П.
    ,        Зибарев А.В. Донорно-акцепторная координация анионов атомами халькогенов 1,2,5-халькогенадиазолов
 Известия Академии наук. Серия химическая.(RUSS CHEM B+). 2015.
            №3.     С.499. 
            РИНЦ
 | 
                    
                                                        | 15 | Pushkarevsky N.A.
    ,        Semenov N.A.
    ,        Dmitriev A.A.
    ,        Kuratieva N.V.
    ,        Bogomyakov A.S.
    ,        Irtegova I.G.
    ,        Vasilieva N.V.
    ,        Bode B.E.
    ,        Gritsan N.P.
    ,        Konstantinova L.S.
    ,        Woollins J.D.
    ,        Rakitin O.A.
    ,        Konchenko S.N.
    ,        Ovcharenko V.I.
    ,        Zibarev A.V. Synthesis and Properties of the Heterospin (S-1 = S-2=1/2) Radical-Ion Salt Bis(mesitylene)molybdenum(I) [1,2,5]Thiadiazolo[3,4-c][1,2,5]thiadiazolidyl
 
  Inorganic Chemistry. 2015.
        V.54.     N14.     P.7007-7013. DOI: 10.1021/acs.inorgchem.5b01033
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex | 
                    
                                                        | 16 | Semenov N.A.
    ,        Lonchakov A.V.
    ,        Pushkarevsky N.A.
    ,        Suturina E.A.
    ,        Korolev V.V.
    ,        Lork E.
    ,        Vasiliev V.G.
    ,        Konchenko S.N.
    ,        Beckmann J.
    ,        Gritsan N.P.
    ,        Zibarev A.V. Coordination of Halide and Chalcogenolate Anions to Heavier 1,2,5-Chalcogenadiazoles: Experiment and Theory
 Organometallics. 2014.
        V.33.     N16.     P.4302-4314. DOI: 10.1021/om5006403
            WOS
        
            Scopus
        
            OpenAlex
 | 
                    
                                                        | 17 | Makarov A.Y.
    ,        Chulanova E.A.
    ,        Semenov N.A.
    ,        Pushkarevsky N.A.
    ,        Lonchakov A.V.
    ,        Bogomyakov A.S.
    ,        Irtegova I.G.
    ,        Vasilieva N.V.
    ,        Lork E.
    ,        Gritsan N.P.
    ,        Konchenko S.N.
    ,        Ovcharenko V.I.
    ,        Zibarev A.V. A novel sulfur-nitrogen Pi-heterocyclic radical anion, (6H-1,2,3-benzodithiazo16-ylidene)malononitrilidyl, and its homo- and heterospin salts
 Polyhedron. 2014.
        V.72.         P.43-49. DOI: 10.1016/j.poly.2014.01.027
            WOS
        
            Scopus
        
            OpenAlex
 | 
                    
                                                        | 18 | Semenov N.A.
    ,        Pushkarevsky N.A.
    ,        Suturina E.A.
    ,        Chulanova E.A.
    ,        Kuratieva N.V.
    ,        Bogomyakov A.S.
    ,        Irtegova I.G.
    ,        Vasilieva N.V.
    ,        Konstantinova L.S.
    ,        Gritsan N.P.
    ,        Rakitin O.A.
    ,        Ovcharenko V.I.
    ,        Konchenko S.N.
    ,        Zibarev A.V. Bis(toluene)chromium(I) [1,2,5]Thiadiazolo[3,4-c][1,2,5]thiadiazolidyl and [1,2,5]Thiadiazolo[3,4-b]pyrazinidyl: New Heterospin (S-1 = S-2=1/2) Radical-Ion Salts
 Inorganic Chemistry. 2013.
        V.52.     N11.     P.6654-6663. DOI: 10.1021/ic400659q
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 19 | Semenov N.A.
    ,        Pushkarevsky N.A.
    ,        Beckmann J.
    ,        Finke P.
    ,        Lork E.
    ,        Mews R.
    ,        Bagryanskaya I.Y.
    ,        Gatilov Y.V.
    ,        Konchenko S.N.
    ,        Vasiliev V.G.
    ,        Zibarev A.V. Tellurium-Nitrogen p-Heterocyclic Chemistry - Synthesis, Structure, and Reactivity Toward Halides and Pyridine of 3,4-Dicyano-1,2,5-telluradiazole
 European Journal of Inorganic Chemistry. 2012.
            N23.     P.3693-3703. DOI: 10.1002/ejic.201200376
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 | 
                    
                                                        | 20 | Bashirov D.A.
    ,        Sukhikh T.S.
    ,        Kuratieva N.V.
    ,        Naumov D.Y.
    ,        Konchenko S.N.
    ,        Semenov N.A.
    ,        Zibarev A.V. Iridium complexes with 2,1,3-benzothiadiazole and related ligands
 Polyhedron. 2012.
        V.42.     N1.     P.168-174. DOI: 10.1016/j.poly.2012.05.015
            WOS
        
            Scopus
        
            РИНЦ
        
            OpenAlex
 |