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1.
The synthesis and characterization of a mononuclear nickel(II) complex [Ni(L(2))](ClO(4))(2) (1) and an analogous mononuclear copper(II) complex [Cu(L(2))](ClO(4))(2) (2) of a 15-membered azamacrocycle (L(2) = 3-(2-pyridyl)-6,8,8,13,13,15-hexamethyl-1,2,4,5,9,12-hexaazacyclopentadeca-5,15-diene) are reported. The macrocyclic ligand is formed during the reaction of 4,4,9,9-tetramethyl-5,8-diazadodecane-2,11-dione dihydrazone (L(1)) with pyridine-2-aldehyde (PyCHO) templated by metal ions. The X-ray crystal structure of 1 exhibits a distorted square-pyramidal coordination geometry, where the metal ion sits in the macrocyclic cavity and the pendant pyridine group of L(2) occupies the axial position. While 1 is stable in the presence of an excess of PyCHO, 2 reacts further with copper(II) salt and PyCHO to form a mononuclear copper(I) complex, [Cu(H(2)L(3))](ClO(4))(3) (3). The structure of the complex cation of 3 reveals a distorted tetrahedral coordination geometry at the copper center with a pseudo 2-fold screw axis. A two-dimensional (2D) polymeric copper(II) complex, {[Cu(2)(L(4))(2)](ClO(4))(2)}(n) (4) is obtained by reacting complex 2 (or [Ni(L(1))](ClO(4))(2)) with copper(II) perchlorate and pyridine-2-aldehyde in a methanol-water solvent mixture. Complex 4 is also obtained by treating 3 with copper(II) perchlorate and pyridine-2-aldehyde in the presence of a base. The X-ray structural analysis of 4 confirms the formation of a pyrazolate bridged dimeric copper(II) complex. The extended structure in the solid state of 4 revealed the formation of a 2D coordination polymer with the dimeric core as the repeating unit. The ligand (HL(4)) in 4 is a 3,4,5-trisubstituted pyrazole ring formed in situ via C-C bond formation and represents an unprecedented transformation reaction.  相似文献   

2.
Irradiation (λ > 340 nm) of the title compound 2a in t-BuOH affords 3,3,10,10-tetramethyl-2,8-dioxatricyclo-[4.3.2.01,6]undecane-5,9-dione (3) via photoextrusion of 2-methylpropene and subsequent photocycloaddition of 2a to the alkene. The same regioisomer 3 is formed selectively and in much higher yields on irradiating 2a in the presence of excess 2-methylpropene. Irradiation of 3 (λ = 300 nm) in t-BuOH in the presence of the same alkene gives a 6:1 mixture of spirooxetanes 7a and 7b but not α-cleavage products. In 2-propanol, 2a is photoreduced to a 2:1 mixture of diastereoisomeric hydrodimers 9 .  相似文献   

3.
The intermolecular [2+2] photocycloaddition of dimedone 6 and 1-acetoxy-2-methyl-5-dioxolan-1-hexene 7 followed by alkaline treatment, gave the 1,5,5,11-tetramethyl-7-dioxolan bicyclo [4,3,2]-4-decen-2,3-dione 12, and the 1,5,5-trimethyl-3-hydroxy-7-dioxolan bicyclo [5,4,1] dodecan-2,11-dione 13.  相似文献   

4.
The synthesis of 5,8-dihydroxynaphtho[2,3-c][1,2,5]thiadiazole-4,9-dione 3 , 6,9-dihydroxybenzo[g]quinoxaline-5,10-dione 4 , and their lesser oxygenated analogs via Friedel-Crafts and Diels-Alder synthesis is reported.  相似文献   

5.
Aminovinyl derivatives of quinoline-5,8-dione and isoquinoline-5,8-dione were obtained. The structure of (E)-6-chloro-7-[2-(N,N-diethylamino)vinyl]quinoline-5,8-dione was confirmed by X-ray structural analysis.  相似文献   

6.
The synthesis of 5,8-difluoronaphtho[2,3-c]thiophene-4,9-dione ( 2a ) has been accomplished. Treatment of 2a with 2,2-dimethylaminoethylamine leads to 2-[2-(dimethylamino)ethyl]-5-[2-(dimethylamino)ethylamino]-8-fluoronaphtho[2,3-c]pyrrole-4,9-dione ( 6 ).  相似文献   

7.
A modified procedure was developed for the synthesis of 5,6,7,8,13,13a-hexahydrophthalazino[1,2-b]quinazoline-5,8-dione and 6-amino-5,6,6a,11-tetrahydroisoindolo[2,1-a]quinazoline-5,11-dione from o-formylbenzoic acid and anthranilic acid hydrazide. The mechanism of the transformation is suggested, some reactions were studied, and new derivatives of these compounds were synthesized. Anthranilic acid hydrazide was used in the novel synthesis of 5-substituted phthalazino[1,2-b]quinazolin-8-one derivatives. The possible reaction mechanism is discussed. 5,6,7,8-Tetrahydrophthalazino[1,2-b]quinazoline-5,8-dione and 5-phenylphthalazino[2,1-b]quinazolin-8-one were studied by X-ray diffraction.  相似文献   

8.
4-Chloroquinoline-5,8-dione ( 8a ) and 6-bromo-4-chloroquinoline-5,8-dione ( 8b ) were reacted with homophthalic anhydride to give tetracyclic compounds 10 and 11 respectively. The 6,11-dihydroxy derivative 12 was prepared in low yield by photochemical addition of benzocyclobutenedione to 4-chloroquinoline-5,8-dione ( 8a ) and in better yield through a Friedel-Crafts reaction of phthalic anhydride with 4-chloro-5,8-dimethoxyquinoline ( 7a ). Whereas 4-chloro-6-hydroxynaphtho[2,3-g]quinoline-5,12-dione ( 11 ) was substituted by amines in the usual way to the corresponding 4-amino-substituted derivatives, 4-chloro-11-hydroxynaph-tho[2,3-g]quinoline-5,12-dione ( 10 ) led to a mixture of 4-amino derivatives and the unexpected 2,6-disubstituted-imidazo[4,5,l-I-j]naphtho[2,3-g]quinolin-7-ones, 13a-b .  相似文献   

9.
The 1:1 and 2:2 cyclization reactions were simultaneously observed by addition of diethyl oxalate on 3,3,10,10-tetramethyl-1,5,8,12-tetraazadodecane. The resulting 1:1 cyclisation product was fully characterized by spectroscopy and X-ray diffraction study. The reduction of this compound gives the 3,3,10,10-tetramethyl-1,5,8,12-tetraazacyclotetradecane with a high yield.  相似文献   

10.
Copper and cobalt complexes of tetra[4,5]([8,9](benzo[f]quinoline-7,10-dione)phthalocyanine, tetra[4,5]-([6,7]1-acetyl-2H-naphtho[2,3-d][1,2,3]triazole-5,8-dione) phthalocyanine, and tetra[4,5]([6,7]3-methylquinoline-5,8-dione)phthalocyanine were synthesized and their spectral properties were investigated.  相似文献   

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