首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Quercetin 2,3-dioxygenase mimicking ring cleavage of the flavonolate ligand assisted by copper. Synthesis and characterization of copper(I) complexes [Cu(PPh3)(2)(fla)] (fla = flavonolate) and [Cu(PPh3)(2)(O-bs)] (O-bs = O-benzoylsalicylate)
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Quercetin 2,3-dioxygenase mimicking ring cleavage of the flavonolate ligand assisted by copper. Synthesis and characterization of copper(I) complexes [Cu(PPh3)(2)(fla)] (fla = flavonolate) and [Cu(PPh3)(2)(O-bs)] (O-bs = O-benzoylsalicylate)

机译:槲皮素2,3-二加氧酶模拟铜辅助的黄酮酸酯配体的环裂解。铜(I)配合物[Cu(PPh3)(2)(fla)](fla =黄酮酸酯)和[Cu(PPh3)(2)(O-bs)](O-bs = O-苯甲酰水杨酸酯)的合成与表征

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Cu(PPh3)(2)(fla) has been prepared by reacting copper(I) chloride with sodium flavonolate in tetrahydrofuran solution. Crystallographic characterization of the complex (orthorhombic, P2(1)2(1)2(1), a = 9.588(1) Angstrom, b = 17.364(3) Angstrom, c = 24.378(3) Angstrom, V = 4058.6(10) Angstrom(3), Z = 4, R = 0.049) has shown that the coordination geometry of the molecule is tetrahedral. Oxygenation of Cu(PPh3)(2)(fla) in a methylene chloride solution at ambient conditions gives the O-benzoylsalicylato copper complex Cu(PPh3)(2)(O-bs) and carbon monoxide. Labeling experiments with an O-18(2)-O-16(2) mixture (1:4) evidenced the incorporation of both O-18 atoms of O-18(2) into the O-bs ligand. IR and MS studies of labeled O-bs confirmed the incorporation of O-18(2) while the released CO remained unlabeled. Crystallographic characterization of Cu(PPh3)(2)(O-bs) on crystals obtained as the acetone solvate (triclinic, P (1) over bar, a = 13.154(1) Angstrom, b = 17.991(1) Angstrom, c = 20.495(1) Angstrom, alpha = 80.01(1)degrees, beta = 88.02(1)degrees, gamma = 71.83(1)degrees, V = 4537.5(5) Angstrom(3), Z = 4, R = 0.0403) shows that the molecule has a distorted tetrahedral structure. The oxygenolysis was followed by spectrophotometry, and the rate constants were determined according to the rate law -d[Cu(PPh3)(2)(fla)]/dt = k(2)[Cu(PPh3)(2)(fla)][O-2]. The rate constant, activation enthalpy, and entropy at 363.16 K are as follows: k(2)/M-1 s(-1) = 4.16 +/- 0.48, Delta H double dagger/kJ mol(-1) = 102 +/- 7, Delta S double dagger/J mol(-1) K-1 = -13.0 +/- 21. The reaction fits a Hammett linear free energy relationship for 4'-substituted flavonolates, and an increase of the electron density on copper makes the oxygenation reaction faster. [References: 90]
机译:Cu(PPh3)(2)(fla)是通过使氯化铜(I)与黄酮酸钠在四氢呋喃溶液中反应制备的。配合物的晶体学表征(斜方晶,P2(1)2(1)2(1),a = 9.588(1)埃,b = 17.364(3)埃,c = 24.378(3)埃,V = 4058.6(10 )(Angstrom(3),Z = 4,R = 0.049)表明该分子的配位几何是四面体。 Cu(PPh3)(2)(fla)在环境条件下的二氯甲烷溶液中氧化,生成O-苯甲酰基水杨酸根铜络合物Cu(PPh3)(2)(O-bs)和一氧化碳。用O-18(2)-O-16(2)混合物(1:4)进行的标记实验表明,O-18(2)的两个O-18原子都掺入了O-bs配体中。对标记的O-b的IR和MS研究证实了O-18(2)的结合,而释放的CO仍未标记。 Cu(PPh3)(2)(O-bs)在丙酮溶剂化物(三斜晶系,P(1)上,bar上获得的晶体上的晶体学表征,a = 13.154(1)埃,b = 17.991(1)埃,c = 20.495(1)埃,α= 80.01(1)度,β= 88.02(1)度,伽马= 71.83(1)度,V = 4537.5(5)埃(3),Z = 4,R = 0.0403)显示分子具有扭曲的四面体结构。氧分解后进行分光光度法,并根据速率定律确定速率常数-d [Cu(PPh3)(2)(fla)] / dt = k(2)[Cu(PPh3)(2)(fla) ] [O-2]。速率常数,活化焓和363.16 K处的熵如下:k(2)/ M-1 s(-1)= 4.16 +/- 0.48,ΔH双匕首/ kJ mol(-1)= 102 + /-7,Delta S双匕首/ J mol(-1)K-1 = -13.0 +/- 21.该反应符合4'-取代的黄酮酸酯的Hammett线性自由能关系,并且电子密度增加。铜使氧化反应更快。 [参考:90]

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