Suppr超能文献

三核和六核 Ni-Mn 配合物的 NO 供体不对称配体:合成、结构、磁性和催化氧化酶活性。

Tri- and hexa-nuclear Ni-Mn complexes of a NO donor unsymmetrical ligand: synthesis, structures, magnetic properties and catalytic oxidase activities.

机构信息

Department of Chemistry, University College of Science, University of Calcutta, 92, A. P. C. Road, Kolkata 700009, India.

School of Chemistry, The University of Reading, P.O. Box 224, Whiteknights, Reading RG6 6AD, UK.

出版信息

Dalton Trans. 2018 Oct 9;47(39):13957-13971. doi: 10.1039/c8dt02962h.

Abstract

A new mononuclear Ni(ii) complex, [NiL] (1) of an unsymmetrically dicondensed N2O2 donor ligand, H2L (where H2L = N-α-methylsalicylidene-N'-salicylidene-1,3-propanediamine), has been synthesized. Complex 1, on reaction with Mn(ii) in the presence of different co-anions, yielded three heterometallic NiII-MnII complexes, [(NiL)2Mn(NCS)2]·CH3CN (2), (NiL)2Mn(N3)(H2O)·H2O (3) and {(NiL)2Mn(H2O)}2(μ1,3-N3)3 (4). Single crystal structural analyses show that complexes 2 and 3 contain similar bent trinuclear NiII2MnII structures, with the difference that in complex 2 two SCN- ions and in 3, one N3- and one H2O molecule are coordinated to the Mn(ii) centre. Complex 4 possesses a hexanuclear structure, in which two trinuclear NiII2MnII units are connected via a single μ1,3-azido bridge. Variable temperature dc molar magnetic susceptibility measurements reveal that the two Mn(ii) centres in complex 4 are antiferromagnetically coupled with an exchange coupling constant (J) of -3.73 cm-1. Among the three heterometallic complexes, only 3 and 4 show bio-mimetic catalytic oxidase activities. For catecholase like activity, the turnover numbers (Kcat) of complexes 3 and 4 are 984 and 2081 h-1, respectively, whereas for phenoxazinone synthase-like activity, the turnover numbers of complexes 3 and 4 are 6351 and 10 545 h-1, respectively. The high catalytic oxidase activities of complexes 3 and 4 in contrast to the inactivity of complex 2 are attributed to the coordination of a water molecule to the Mn(ii) centre in the former structures, which facilitates the binding of the substrate with the catalyst. Mass spectral analyses suggest the probable formation of a complex-substrate intermediate in these catalytic reactions and cyclic voltammetry measurements show that Ni(ii) is reducible to Ni(i).

摘要

一种新的单核 Ni(ii)配合物NiL,其中 H2L(H2L=N-α-甲基水杨醛亚胺-N'-水杨醛亚胺-1,3-丙二胺)是一种不对称双缩合的 N2O2 供体配体,已被合成。该配合物 1 与 Mn(ii)在不同共阴离子存在下反应,生成三种异金属 NiII-MnII 配合物,[(NiL)2Mn(NCS)2]·CH3CN(2)、(NiL)2Mn(N3)(H2O)·H2O(3)和{(NiL)2Mn(H2O)}2(μ1,3-N3)3(4)。单晶结构分析表明,配合物 2 和 3 均含有类似的弯曲三核 NiII2MnII 结构,不同之处在于配合物 2 中有两个 SCN-离子,而在配合物 3 中有一个 N3-和一个 H2O 分子与 Mn(ii)中心配位。配合物 4 具有六核结构,其中两个三核 NiII2MnII 单元通过单个 μ1,3-叠氮桥连接。变温直流磁导率测量表明,配合物 4 中的两个 Mn(ii)中心是反铁磁耦合的,其交换耦合常数(J)为-3.73 cm-1。在这三种异金属配合物中,只有 3 和 4 具有类生物酶氧化酶活性。对于儿茶酚氧化酶样活性,配合物 3 和 4 的周转数(Kcat)分别为 984 和 2081 h-1,而对于吩嗪酮合酶样活性,配合物 3 和 4 的周转数分别为 6351 和 10545 h-1。配合物 3 和 4 的高催化氧化酶活性与配合物 2 的无活性形成对比,这归因于水分子与 Mn(ii)中心的配位,这有利于底物与催化剂的结合。质谱分析表明这些催化反应中可能形成了配合物-底物中间产物,循环伏安法测量表明 Ni(ii)可还原为 Ni(i)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验