The reductive demetalation of manganese corroles was investigated in CH2Cl2/HCl (aqueous) solvent by using SnCl2 as reducing agent. It was found that the demetalation yields depend on the substituents of corrole mac...The reductive demetalation of manganese corroles was investigated in CH2Cl2/HCl (aqueous) solvent by using SnCl2 as reducing agent. It was found that the demetalation yields depend on the substituents of corrole macrocycle significantly. Electron- rich manganese corrole undergoes reductive demetalation more easily than electron-deficient ones. The isolated reductive demetalation yield of manganese 5,10,15-tris(phenyl)corrole in present system is moderate (46%). As for electron-deficient Mn(Ⅲ) 5,10,15-tris(pentafluorophenyl)corrole, the acid-induced demetalation in HOAc-HESO4 (V/V = 3:1) is preferable with an isolated yield of 67%.展开更多
The effects of axial ligand on the oxygen atom transfer(OAT)reaction from 5,10,15-tris(pentafluorophenyl)corrole((tpfc)MnVO)to dimethyl sulfide(DMS)have been investigated by density functional theory(DFT)calculations....The effects of axial ligand on the oxygen atom transfer(OAT)reaction from 5,10,15-tris(pentafluorophenyl)corrole((tpfc)MnVO)to dimethyl sulfide(DMS)have been investigated by density functional theory(DFT)calculations.Imidazole(Im),4-methylimidazole(4-MI)and pyridine(Py)were selected as the axial ligands.The results revealed that the axial ligand can form coordinate bond with(tpfc)MnVO in the transition state(TS)of the OAT reaction.The axial coordination favored charge transferring from(tpfc)MnVO to DMS,and weakened the Mn≡O bond in both singlet and triplet states.Furthermore,axial coordination can reduce the energy barrier of neutral(tpfc)MnVO from 23.62 kJ·mol^-1 to less than 3 kJ·mol^-1 in the triplet state,which is significantly lower than in the singlet state.This makes(tpfc)MnVO tend to direct the OAT reaction via triplet state pathway.On the other hand,the energy barriers of[(tpfc)MnVIO]+species from disproportionation pathway increased from 1.26 to 33.95 kJ·mol^-1 in a doublet state.This suggests axial ligands were conducive for direct(tpfc)MnVO OAT reaction pathway.展开更多
Several Mn(Ⅲ)10-(hydroxylphenyl)-5,15-bis(pentafluoro-phenyl)corroles with the hydroxyl at ortho-,meta-and para-position of 10-phenyl group were used as the catalysts in the oxidative cleavage of plasmid DNA in the p...Several Mn(Ⅲ)10-(hydroxylphenyl)-5,15-bis(pentafluoro-phenyl)corroles with the hydroxyl at ortho-,meta-and para-position of 10-phenyl group were used as the catalysts in the oxidative cleavage of plasmid DNA in the presence of H2O2.The catalytic system was composed of 10 μL 0.5 mg/mL pC DNA 6 in TE buffer solution(pH=8.0,4.0×10-2 mol/L Tris,1.0×10-3 mol/L EDTA),10 μL 1.0×10-5 mol/L Mn(Ⅲ)corrole in DMSO and 10 μL 0.3% H2O2.After 8 h incubation at room temperature,significant oxidative DNA damage could be observed with the ortho-hydroxyl Mn(Ⅲ)corrole showing a better activity as detected by agarose-gel electrophoresis.Plasmid DNA was completely damaged after 12 h incubation.These observations show Mn(Ⅲ)corrole can be used as an artificial model of nuclease.展开更多
The title complex, [Mn2L2(EtOH)2 (bipy )](ClO4)2 (L=N,N'-ethylenebis (1-phenyl-3-imino-1-butanonato), bipy = 4, 4'-bipyridine] crystallizes inmonoclinic system, space group P21/c with a= 12. 63O(5), b=13- 151 ...The title complex, [Mn2L2(EtOH)2 (bipy )](ClO4)2 (L=N,N'-ethylenebis (1-phenyl-3-imino-1-butanonato), bipy = 4, 4'-bipyridine] crystallizes inmonoclinic system, space group P21/c with a= 12. 63O(5), b=13- 151 (2), c=18. 3773001 reflections The two [MnL(EtOH)]+ units are joined by one 4, 4'-bipyridine molecule to form a centrosymmetric binuclear complex cation [Mn2L2(EtOH)2 (bipy]2+. The coordination geometry around Mn atoms is a distorted octahe-dron with equatorial plane N2O2 from the Schiff base ligand L.展开更多
A homochrial manganese(Ⅲ) complex(1) derived from chiral salen ligand(1 R,2 R)-(-)-1,2-diphenylethane-1,2-diamine-N,N?-bicarboxyl-salicylidene) has been synthesized through solvothermal procedure and charac...A homochrial manganese(Ⅲ) complex(1) derived from chiral salen ligand(1 R,2 R)-(-)-1,2-diphenylethane-1,2-diamine-N,N?-bicarboxyl-salicylidene) has been synthesized through solvothermal procedure and characterized by IR,elemental analysis,TGA,circular dichroism(CD),powder and single-crystal X-ray crystallography.It crystallizes in orthorhombic,space group P212121 with a = 9.108(3),b = 16.431(5),c = 26.531(6) A,V = 3970.4(19) A^3,Z = 4,Dc = 1.248 g/cm^3,F(000) = 1568,Mr = 745.73,μ = 0.383 mm^-1,the final GOOF = 0.957,R = 0.0631 and wR = 0.1079 for 13250 observed reflections with I 〉 2σ(I).The coordination polymer 1 possesses a 1 D infinite zigzag chain architecture constructed by the dicarboxyl-functionalized metallosalen ligand(Mn-salen),and the polymeric chains are further assembled into a 3D supramolecular network structure via strong intermolecular hydrogen bonding interactions between adjacent zigzag chains.As a heterogeneous catalyst,1 was used as an efficient heterogeneous catalyst for the asymmetric olefin epoxidation.展开更多
The interaction of calf thymus DNA (CT DNA) and water-soluble manganese corrole, 5,10,15-tris(4-carboxyphenyl)corrolatomanganese(Ⅲ) (MnuTCPC) has been studied by absorption spectra, fluorescence spectra and C...The interaction of calf thymus DNA (CT DNA) and water-soluble manganese corrole, 5,10,15-tris(4-carboxyphenyl)corrolatomanganese(Ⅲ) (MnuTCPC) has been studied by absorption spectra, fluorescence spectra and CD spectra, as well as by viscosity measurements. Results revealed that this manganese corrole binds to CT DNA via an outside groove binding mode with intrinsic binding constant Ku of 4.67 × 104 Lomol L DNA cleavage activities of MnmTCPC in the presence of various oxidants were also investigated, MnmTCPC can cleave the supercoiled plas- mid pBR322 DNA to both nicked and linear form in the presence of hydrogen peroxide or tert-BuOOH, while no nuclease activity was observed by using KHSO5 as oxidant. Inhibitor tests revealed that hydroxyl radicals or singlet oxygen was not involved in MnTCPC mediated DNA oxidative cleavage. It is suggested that (oxo)manganese(V) corrole is the possibly active intermediate in this oxidative cleavage reactions.展开更多
基金National Natural Science Foundation of China(Nos.20771039,20572027),Research Grant Council of Hong Kong.
文摘The reductive demetalation of manganese corroles was investigated in CH2Cl2/HCl (aqueous) solvent by using SnCl2 as reducing agent. It was found that the demetalation yields depend on the substituents of corrole macrocycle significantly. Electron- rich manganese corrole undergoes reductive demetalation more easily than electron-deficient ones. The isolated reductive demetalation yield of manganese 5,10,15-tris(phenyl)corrole in present system is moderate (46%). As for electron-deficient Mn(Ⅲ) 5,10,15-tris(pentafluorophenyl)corrole, the acid-induced demetalation in HOAc-HESO4 (V/V = 3:1) is preferable with an isolated yield of 67%.
基金supported by the National Natural Science Foundation of China(21275057,21671068)Natural Science Foundation of Guangdong Province(S2012010008763,2017A050506048)
文摘The effects of axial ligand on the oxygen atom transfer(OAT)reaction from 5,10,15-tris(pentafluorophenyl)corrole((tpfc)MnVO)to dimethyl sulfide(DMS)have been investigated by density functional theory(DFT)calculations.Imidazole(Im),4-methylimidazole(4-MI)and pyridine(Py)were selected as the axial ligands.The results revealed that the axial ligand can form coordinate bond with(tpfc)MnVO in the transition state(TS)of the OAT reaction.The axial coordination favored charge transferring from(tpfc)MnVO to DMS,and weakened the Mn≡O bond in both singlet and triplet states.Furthermore,axial coordination can reduce the energy barrier of neutral(tpfc)MnVO from 23.62 kJ·mol^-1 to less than 3 kJ·mol^-1 in the triplet state,which is significantly lower than in the singlet state.This makes(tpfc)MnVO tend to direct the OAT reaction via triplet state pathway.On the other hand,the energy barriers of[(tpfc)MnVIO]+species from disproportionation pathway increased from 1.26 to 33.95 kJ·mol^-1 in a doublet state.This suggests axial ligands were conducive for direct(tpfc)MnVO OAT reaction pathway.
文摘Several Mn(Ⅲ)10-(hydroxylphenyl)-5,15-bis(pentafluoro-phenyl)corroles with the hydroxyl at ortho-,meta-and para-position of 10-phenyl group were used as the catalysts in the oxidative cleavage of plasmid DNA in the presence of H2O2.The catalytic system was composed of 10 μL 0.5 mg/mL pC DNA 6 in TE buffer solution(pH=8.0,4.0×10-2 mol/L Tris,1.0×10-3 mol/L EDTA),10 μL 1.0×10-5 mol/L Mn(Ⅲ)corrole in DMSO and 10 μL 0.3% H2O2.After 8 h incubation at room temperature,significant oxidative DNA damage could be observed with the ortho-hydroxyl Mn(Ⅲ)corrole showing a better activity as detected by agarose-gel electrophoresis.Plasmid DNA was completely damaged after 12 h incubation.These observations show Mn(Ⅲ)corrole can be used as an artificial model of nuclease.
文摘The title complex, [Mn2L2(EtOH)2 (bipy )](ClO4)2 (L=N,N'-ethylenebis (1-phenyl-3-imino-1-butanonato), bipy = 4, 4'-bipyridine] crystallizes inmonoclinic system, space group P21/c with a= 12. 63O(5), b=13- 151 (2), c=18. 3773001 reflections The two [MnL(EtOH)]+ units are joined by one 4, 4'-bipyridine molecule to form a centrosymmetric binuclear complex cation [Mn2L2(EtOH)2 (bipy]2+. The coordination geometry around Mn atoms is a distorted octahe-dron with equatorial plane N2O2 from the Schiff base ligand L.
基金supported by the National Natural Science Foundation of China(20971046,21171057,61178037,11004256)Natural Science Foundation of Guangdong Province,China(10351064101000000)+1 种基金Open Fund of the State Key Laboratory of Optoelectronic Materials and Technologies(SunYat-Sen University),ChinaAppropriative Researching Fund for Professors and Doctors,Guangdong University of Education,China(10ARF14)~~
基金supported by NSFC-21371119,21431004,21401128,21522104 and 21620102001the National Key Basic Research Program of China(No.2014CB932102 and 2016YFA0203400)the Shanghai“Eastern Scholar”Program
文摘A homochrial manganese(Ⅲ) complex(1) derived from chiral salen ligand(1 R,2 R)-(-)-1,2-diphenylethane-1,2-diamine-N,N?-bicarboxyl-salicylidene) has been synthesized through solvothermal procedure and characterized by IR,elemental analysis,TGA,circular dichroism(CD),powder and single-crystal X-ray crystallography.It crystallizes in orthorhombic,space group P212121 with a = 9.108(3),b = 16.431(5),c = 26.531(6) A,V = 3970.4(19) A^3,Z = 4,Dc = 1.248 g/cm^3,F(000) = 1568,Mr = 745.73,μ = 0.383 mm^-1,the final GOOF = 0.957,R = 0.0631 and wR = 0.1079 for 13250 observed reflections with I 〉 2σ(I).The coordination polymer 1 possesses a 1 D infinite zigzag chain architecture constructed by the dicarboxyl-functionalized metallosalen ligand(Mn-salen),and the polymeric chains are further assembled into a 3D supramolecular network structure via strong intermolecular hydrogen bonding interactions between adjacent zigzag chains.As a heterogeneous catalyst,1 was used as an efficient heterogeneous catalyst for the asymmetric olefin epoxidation.
基金Acknowledgement This work was supported by the National Natural Science Foundation of China (Nos. 20971046, 21171057, 21171177) and Natural Science Foundation of Guangdong Province (No. 10351064101000000).
文摘The interaction of calf thymus DNA (CT DNA) and water-soluble manganese corrole, 5,10,15-tris(4-carboxyphenyl)corrolatomanganese(Ⅲ) (MnuTCPC) has been studied by absorption spectra, fluorescence spectra and CD spectra, as well as by viscosity measurements. Results revealed that this manganese corrole binds to CT DNA via an outside groove binding mode with intrinsic binding constant Ku of 4.67 × 104 Lomol L DNA cleavage activities of MnmTCPC in the presence of various oxidants were also investigated, MnmTCPC can cleave the supercoiled plas- mid pBR322 DNA to both nicked and linear form in the presence of hydrogen peroxide or tert-BuOOH, while no nuclease activity was observed by using KHSO5 as oxidant. Inhibitor tests revealed that hydroxyl radicals or singlet oxygen was not involved in MnTCPC mediated DNA oxidative cleavage. It is suggested that (oxo)manganese(V) corrole is the possibly active intermediate in this oxidative cleavage reactions.