Department of Chemistry, University of Bath, Claverton Down, Bath, UK BA2 7AY.
Dalton Trans. 2012 Jan 7;41(1):90-7. doi: 10.1039/c1dt11379h. Epub 2011 Oct 20.
Single crystal photocrystallographic experiments and solid state Raman spectroscopy have been used to determine the low temperature, metastable structures of the nickel(ii) nitrito complexes [Ni(aep)(2)(η(1)-ONO)(2)] 1#O (aep = 1-(2-aminoethyl)piperidine), [Ni(aem)(2)(η(1)-ONO)(2)] 2#O (aem = 1-(2-aminoethyl)morpholine), and [Ni(aepy)(2)(η(1)-ONO)(2)] 3#O (aepy = 1-(2-aminoethyl)pyrrolidine and where the #O denotes the oxygen-bound nitrito metastable molecule). These linkage isomers of the equivalent nitro complexes [Ni(aep)(2)(η(1)-NO(2))(2)] 1, [Ni(aem)(2)(η(1)-NO(2))(2)] 2 and [Ni(aepy)(2)(η(1)-NO(2))(2)] 3 are formed by LED irradiation at temperatures below 120 K. The behavior of the three complexes upon irradiation is generally similar, but some subtle differences have been observed. From the crystallographic studies all three complexes 1-3 exhibit the endo-nitrito linkage isomer upon irradiation, however, for 3# (a crystal structure that contains components of both 3 and 3#O) an exo-nitrito isomer is also observed. Under conditions of 90-100 K, with blue light, the conversion percentages to the nitrito isomers, 1#O, 2#O and 3#O were 16%, 22% and 30%, respectively. At temperatures below 110 K all three nitrito isomers were stable for over four hours but while 2#O and 3#O could be detected at temperatures down to 30 K, at temperatures below 60 K the metastable structure 1#O appeared to be quenched and only the nitro isomer 1 was identified in the crystal. The solid state Raman spectra for 1#, 2# and 3# confirmed the photocrystallographic results with the nitrito isomers being identified from the O-N-O deformation vibrations.
单晶光结晶实验和固态拉曼光谱已被用于确定镍(ii)亚硝酰配合物[Ni(aep)(2)(η(1)-ONO)(2)]1#O(aep=1-(2-氨基乙基)哌啶)、[Ni(aem)(2)(η(1)-ONO)(2)]2#O(aem=1-(2-氨基乙基)吗啉)和[Ni(aepy)(2)(η(1)-ONO)(2)]3#O(aepy=1-(2-氨基乙基)吡咯烷,其中#O 表示氧结合的亚硝酰不稳定分子)的低温亚稳结构。这些等价的硝基配合物[Ni(aep)(2)(η(1)-NO(2))(2)]1、[Ni(aem)(2)(η(1)-NO(2))(2)]2 和[Ni(aepy)(2)(η(1)-NO(2))(2)]3 的连接异构体是通过在低于 120 K 的温度下用 LED 照射形成的。三种配合物在照射下的行为通常相似,但观察到一些细微的差异。从晶体学研究来看,所有三种配合物 1-3 在照射后都表现出内硝酰异构体,但对于 3#(一种晶体结构包含 3 和 3#O 的成分)也观察到外硝酰异构体。在 90-100 K 温度下用蓝光照射时,硝酰异构体 1#O、2#O 和 3#O 的转化率分别为 16%、22%和 30%。在低于 110 K 的温度下,三种亚硝酰异构体在四个多小时内都是稳定的,但当温度降至 30 K 以下时,2#O 和 3#O 可以被检测到,而当温度低于 60 K 时,亚稳结构 1#O 似乎被猝灭,只有硝基异构体 1 在晶体中被识别。1#、2#和 3#的固态拉曼光谱证实了光结晶结果,通过亚硝酰异构体的 O-N-O 变形振动来识别。