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结构对一系列钌单核亚硝酰配合物光致变色响应的影响。

Structural influence on the photochromic response of a series of ruthenium mononitrosyl complexes.

机构信息

Laboratoire de Chimie de Coordination, CNRS, 205 Route de Narbonne, F-31077 Toulouse, France.

出版信息

Inorg Chem. 2012 Jul 16;51(14):7492-501. doi: 10.1021/ic202702r. Epub 2012 Jul 3.

Abstract

In mononitrosyl complexes of transition metals two long-lived metastable states corresponding to linkage isomers of the nitrosyl ligand can be induced by irradiation with appropriate wavelengths. Upon irradiation, the N-bound nitrosyl ligand (ground state, GS) turns into two different conformations: isonitrosyl O bound for the metastable state 1 (MS1) and a side-on nitrosyl conformation for the metastable state 2 (MS2). Structural and spectroscopic investigations on RuCl(NO)py(4)(2)·1/2H(2)O (py = pyridine) reveal a nearly 100% conversion from GS to MS1. In order to identify the factors which lead to this outstanding photochromic response we study in this work the influence of counteranions, trans ligands to the NO and equatorial ligands on the conversion efficiency: [RuX(NO)py(4)]Y(2)·nH(2)O (X = Cl and Y = PF(6)(-) (1), BF(4)(-) (2), Br(-)(3), Cl(-) (4); X = Br and Y = PF(6)(-) (5), BF(4)(-) (6), Br(-)(7)) and RuCl(NO)bpy(2)(2) (8), RuCl(2)(NO)tpy (9), and Ru(H(2)O)(NO)bpy(2)(3) (10) (bpy = 2,2'-bipyridine; tpy = 2,2':6',2"-terpyridine). Structural and infrared spectroscopic investigations show that the shorter the distance between the counterion and the NO ligand the higher the population of the photoinduced metastable linkage isomers. DFT calculations have been performed to confirm the influence of the counterions. Additionally, we found that the lower the donating character of the ligand trans to NO the higher the photoconversion yield.

摘要

在过渡金属的单亚硝酰配合物中,通过适当波长的辐照可以诱导两种与亚硝酰配体的连接异构体对应的长寿命亚稳态。辐照后,N 键合的亚硝酰配体(基态,GS)转变成两种不同的构象:亚硝酰氧键合的亚稳态 1(MS1)和侧式亚硝酰构象的亚稳态 2(MS2)。RuCl(NO)py(4)(2)·1/2H(2)O(py = 吡啶)的结构和光谱研究表明,GS 几乎 100%转化为 MS1。为了确定导致这种出色光致变色响应的因素,我们在这项工作中研究了抗衡阴离子、NO 的反式配体和赤道配体对转化率的影响:[RuX(NO)py(4)]Y(2)·nH(2)O(X = Cl 和 Y = PF(6)(-)(1)、BF(4)(-)(2)、Br(-)(3)、Cl(-)(4);X = Br 和 Y = PF(6)(-)(5)、BF(4)(-)(6)、Br(-)(7))和RuCl(NO)bpy(2)(2)(8)、RuCl(2)(NO)tpy(9)和Ru(H(2)O)(NO)bpy(2)(3)(10)(bpy = 2,2'-联吡啶;tpy = 2,2':6',2"-三联吡啶)。结构和红外光谱研究表明,抗衡离子与 NO 配体之间的距离越短,光诱导亚稳态连接异构体的含量越高。进行了 DFT 计算以确认抗衡离子的影响。此外,我们发现反式配体与 NO 的供电子性质越低,光转化率越高。

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