Imine-Based Catechols and o-Benzoquinones: Synthesis, Structure, and Features of Redox Behavior

被引:15
作者
Astaf'eva, Tatiana, V [1 ,2 ]
Arsenyev, Maxim, V [1 ,2 ]
Rumyantcev, Roman, V [1 ]
Fukin, Georgy K. [1 ]
Cherkasov, Vladimir K. [1 ,2 ]
Poddel'sky, Andrey, I [1 ]
机构
[1] Russian Acad Sci, GA Razuvaev Inst Organometall Chem, Nizhnii Novgorod 603137, Russia
[2] Natl Res Lobachevsky State Univ Nizhny Novgorod, Chem Fac, Nizhnii Novgorod 603950, Russia
来源
ACS OMEGA | 2020年 / 5卷 / 35期
关键词
ANTIBACTERIAL ACTIVITIES; ANTIVIRAL ACTIVITIES; REVERSIBLE BINDING; ELECTRON-TRANSFER; CRYSTAL-STRUCTURE; SCHIFF-BASES; LIGANDS; COMPLEXES; OXIDATION; GOSSYPOL;
D O I
10.1021/acsomega.0c02277
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Novel sterically hindered catechols of the type 3-(RN=CH)-4,6-DBCatH(2) with iminoalkyl or iminoaryl groups in the third position of the aromatic ring have been synthesized and characterized in detail. The o-benzoquinones 3-(RN=CH)-4,6-DBBQ have been synthesized by the oxidation of the corresponding catechols. The oxidation of methylimino-substituted catechol with K-3[Fe(CN)(6)] in alkaline medium leads to the formation of two products: o-quinone and diene-dione, the product of the water addition to the corresponding o-quinone. Some o-benzoquinones react with water or methanol to yield products of water or methanol addition. A prototropic tautomerism is characteristic of catecholaldimines: a quinomethide form is observed in the case of aliphatic amine derivatives, while aryl-substituted catecholaldimines can exist both in the catechol and quinomethide forms in the crystalline state. The formation of dimeric structures motifs is observed in crystals. The electrochemical oxidation of imino-based catechols proceeds via two one-electron processes; the second wave is quasi-reversible, which is unusual for catechols.
引用
收藏
页码:22179 / 22191
页数:13
相关论文
共 54 条
[1]   Cyclic endoperoxides based on triphenylantimony(V) catecholates: The reversible binding of dioxygen [J].
Abakumov, GA ;
Cherkasov, VK ;
Grunova, EV ;
Poddel'skii, AI ;
Abakumova, LG ;
Kurskii, YA ;
Fukin, GK ;
Baranov, EV .
DOKLADY CHEMISTRY, 2005, 405 (1-3) :222-225
[2]   Catechol imine ligands:: from helicates to supramolecular tetrahedra [J].
Albrecht, M ;
Ingo, JA ;
Fröhlich, R .
CHEMICAL COMMUNICATIONS, 2005, (02) :157-165
[3]   Long-range stereocontrol in the self-assembly of two-nanometer-dimensioned triple-stranded dinuclear helicates [J].
Albrecht, M ;
Janser, I ;
Houjou, H ;
Fröhlich, R .
CHEMISTRY-A EUROPEAN JOURNAL, 2004, 10 (11) :2839-2850
[4]   Dicatechol-diimines:: easily accessible ligands for the self-assembly of dinuclear triple-stranded helicates [J].
Albrecht, M ;
Janser, I ;
Kamptmann, S ;
Weis, P ;
Wibbeling, B ;
Fröhlich, R .
DALTON TRANSACTIONS, 2004, (01) :37-43
[5]   3,3′-{(1E,2E)-hydrazine-1,2-diylidenedi[(E)methylylidene]}dibenzene-1,2-diol (BCAz-H4):: an easy to prepare but very useful building block for the self-assembly of triple-stranded helicates;: the X-ray crystal structure of Na4[(BCAz)3Ti2]•7 dmf•H2O [J].
Albrecht, M ;
Kamptmann, S ;
Fröhlich, R .
POLYHEDRON, 2003, 22 (05) :643-647
[6]   Protonation of tris(iminocatecholato) complexes of gallium(III) and titanium(IV) [J].
Albrecht, Markus ;
Burk, Simon ;
Stoffel, Ralf ;
Luechow, Arne ;
Froehlich, Roland ;
Kogej, Michael ;
Schalley, Christoph A. .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2007, (10) :1361-1372
[7]   Self-assembly and host-guest chemistry of big metallosupramolecular M4L4 tetrahedra [J].
Albrecht, Markus ;
Janser, Ingo ;
Burk, Simon ;
Weis, Patrick .
DALTON TRANSACTIONS, 2006, (23) :2875-2880
[8]  
[Anonymous], 2012, RED CORR PROGR CRYS
[9]   Synthesis, structures, and properties of new sterically hindered hydrazine-based catecholaldimines [J].
Arsenyev, M. V. ;
Khamaletdinova, N. M. ;
Baranov, E. V. ;
Chesnokov, S. A. ;
Cherkasov, V. K. .
RUSSIAN CHEMICAL BULLETIN, 2016, 65 (07) :1805-1813
[10]   Synthesis and structure of Schiff bases based on 4,6-di-tert-butyl-2,3-dihydroxybenzaldehyde. New sterically hindered bis-catecholaldimines [J].
Arsenyev, M. V. ;
Baranov, E. V. ;
Chesnokov, S. A. ;
Cherkasov, V. K. ;
Abakumov, G. A. .
RUSSIAN CHEMICAL BULLETIN, 2013, 62 (11) :2394-2400