...
首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Solvent and structural effects on catalase-like function of binuclear manganese(II) compounds with mu-phenoxide bridge
【24h】

Solvent and structural effects on catalase-like function of binuclear manganese(II) compounds with mu-phenoxide bridge

机译:带有木酚盐桥的双核锰(II)化合物对过氧化氢酶样功能的溶剂和结构影响

获取原文
获取原文并翻译 | 示例
           

摘要

The structures and ESR spectral properties of binuclear manganese(II) compounds which functionally mimic the bacterial dimanganese catalase enzyme have been developed. These compounds are formulated as [(L-1)Mn2X2]Y(X=Cl, Br, CH3COO, C6H5COO, (C6H5)(2)HCCOO; Y=ClO4, PF6), [(L-2)(MnX3)-X-2] (X=Cl, Br), and [(L-2)Mn-2(benzoate)(2) (NCS)], where H(L-1)=2,6-bis[bis(2-pyridylmethyl)aminomethyl]-4- methyl-phenol and H(L-2)=2,6-bis[N-(2-dimethylamino)ethyl]-4-methyl-phenol. An X-ray diffraction structure determination of [(L-1)Mn2Cl2(CH3OH)(2)]PF6 confirmed the anticipated N6O septadentate coordination of the (L-1)-ligand, binuclear manganese(II) complex with mu-phenoxide, and two halogenide ions and two methanol molecules. In the crystal of [(L-2)Mn2Cl3]CH3CN, there exists tetranuclear manganese(II) complex having center of symmetry. The terminal and central manganese(II) ions are bridged by phenoxide oxygen and a chloride ion (Mn Mn = 3.440(1) Angstrom), and two central atoms are bridged by two chloride ions with Mn Mn distance of 3.804(1) Angstrom. In acetonitrile solution, catalase-like function of the manganese(II) compounds with H(L-1)-ligand are found to be highly dependent the anions coordinating the Mn(II) ion, the activity of the X=Cl complex is much higher than those of the acetate and benzoate. On the other hand, the activity of [(L-2)Mn2Cl3] is slightly lower than that of the [(L-2)Mn-2(benzoate)(2)(NCS)], where two manganese ions are bridged by benzoate anion. The Mn(II/III) complex of H(L-1), [(L-1)Mn-2(CH3COO)(2)](2+) exhibits much higher activity than that of the corresponding Mn(II/III) complex, [(L-1)Mn-2(CH3COO)(2)](+). In dimethylformamide(dmf) solutions, an induction period (at least 30 minutes) is necessary before vigorous evolution of oxygen gas occurs for both the Mn(II) complexes with (L-1) and (L-2), however, some binuclear Mn-2(II/III) and Mn-2(III/III) complexes exhibited high catalase-like function in dmf. The latter fact may give a reasonable explanation for the fact that the manganese cluster in S-2-state of the Photosystem II shows a high catalase-like function instead of the negligible action in the S-1-state. Based on these facts, it is concluded that the most important factor to control the catalase-like function of binuclear Mn(IE) complex should be the oxidizable nature of the Mn(II) ion to a higher oxidation state, and the unusual behavior in dmf solution was accounted for on the assumption that dmf molecule may contribute to the activation of peroxide ion through interaction with an Mn(II)-peroxide adduct, leading to oxidation of the Mn(II) ion. (C) 1997 Elsevier Science Ltd. [References: 28]
机译:已经开发了功能上模仿细菌二锰过氧化氢酶的双核锰(II)化合物的结构和ESR光谱特性。这些化合物被配制成[[L-1)Mn2X2] Y(X = Cl,Br,CH3COO,C6H5COO,(C6H5)(2)HCCOO; Y = ClO4,PF6),[(L-2)(MnX3)- X-2](X = Cl,Br)和[(L-2)Mn-2(苯甲酸酯)(2)(NCS)],其中H(L-1)= 2,6-bis [bis(2 -吡啶基甲基)氨基甲基] -4-甲基苯酚和H(L-2)= 2,6-双[N-(2-二甲基氨基)乙基] -4-甲基苯酚。 [(L-1)Mn2Cl2(CH3OH)(2)] PF6的X射线衍射结构测定证实了(L-1)-配体双核锰(II)配合物与多酚盐的预期N6O独立配位,和两个卤离子和两个甲醇分子。在[(L-2)Mn2Cl3] CH3CN的晶体中,存在具有对称中心的四核锰(II)配合物。末端和中心锰(II)离子由酚氧化物氧和氯离子(Mn Mn = 3.440(1)埃)桥接,两个中心原子由两个氯离子与Mn Mn距离为3.804(1)埃桥接。在乙腈溶液中,发现具有H(L-1)-配体的锰(II)化合物的过氧化氢酶样功能高度依赖配位于Mn(II)离子的阴离子,X = Cl络合物的活性很大高于乙酸盐和苯甲酸盐。另一方面,[(L-2)Mn2Cl3]的活性稍低于[(L-2)Mn-2(苯甲酸酯)(2)(NCS)]的活性,其中两个锰离子通过苯甲酸酯阴离子。 H(L-1),[(L-1)Mn-2(CH3COO)(2)](2+)的Mn(II / III)络合物比相应的Mn(II / III)具有更高的活性)配合物[(L-1)Mn-2(CH3COO)(2)](+)。在二甲基甲酰胺(dmf)溶液中,对于具有(L-1)和(L-2)的Mn(II)配合物,都需要一个诱导期(至少30分钟)才能剧烈释放氧气,但是,有些双核Mn-2(II / III)和Mn-2(III / III)配合物在dmf中显示出高的过氧化氢酶样功能。对于光系统II的S-2-状态中的锰簇表现出高的过氧化氢酶样功能而不是在S-1状态中的作用可忽略不计的事实,后一个事实可以给出合理的解释。基于这些事实,可以得出结论,控制双核Mn(IE)络合物的过氧化氢酶样功能的最重要因素应该是Mn(II)离子的可氧化性,使其具有更高的氧化态,以及在金属中的异常行为。 dmf溶液是基于dmf分子可能通过与Mn(II)-过氧化物加合物相互作用而导致过氧化氢离子活化而导致Mn(II)离子氧化的假设来解释的。 (C)1997 Elsevier Science Ltd. [参考:28]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号