4.7 Article

Structural Influence on the Photochromic Response of a Series of Ruthenium Mononitrosyl Complexes

Journal

INORGANIC CHEMISTRY
Volume 51, Issue 14, Pages 7492-7501

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic202702r

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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)](PF6)(2)center dot 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 center dot nH(2)O (X = Cl and Y = PF6- (1), BF4- (2), Br-(3), Cl- (4); X = Br and Y = PF6- (5), BF4- (6), Br-(7)) and [RuCl(NO)bpy(2)](PF6)(2) (8), [RuCl2(NO)tpy](PF6) (9), and [Ru(H2O)(NO)bpy(2)]PF6)(3) (10) (bpy = 2,2'-bipyridine; tpy = 2,2':6',2 ''-terpyridine). Structural and infrared spectroscopic investigations show that 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.

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