首页> 外文期刊>Journal of Coordination Chemistry >Light- induced cis/trans isomerization of cis-[ Pd( L- S, O) 2] and cis-[ Pt( L- S, O) 2] complexes of chelating N, N- dialkyl- N'- acylthioureas: key to the formation and isolation of trans isomers
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Light- induced cis/trans isomerization of cis-[ Pd( L- S, O) 2] and cis-[ Pt( L- S, O) 2] complexes of chelating N, N- dialkyl- N'- acylthioureas: key to the formation and isolation of trans isomers

机译:N-N-二烷基-N'-酰基硫脲螯合的顺式-[Pd(L- S,O)2]和顺式-[Pt(L- S,O)2]配合物的光诱导顺式/反式异构化:关键反式异构体的形成和分离

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Irradiation cis-[M(L-n-S,O)(2)] complexes (M=Pt-II, Pd-II) derived from N,N-dialkyl-N-benzoylthioureas (HLn) with various sources of intense visible polychromatic or monochromatic light with < 500nm leads to light-induced cistrans isomerization in organic solvents. In all cases, white light derived from several sources or monochromatic blue-violet laser 405nm light, efficiently results in substantial amounts of the trans isomer appearing in solution, as shown by H-1 NMR and/or reversed-phase HPLC separation in dilute solutions at room temperature. The extent and relative rates of cis/trans isomerization induced by in situ laser light ( = 405nm) of cis-[Pd(L-2-S,O)(2)] was directly monitored by H-1 NMR and Pt-195 NMR spectroscopy of selected cis-[Pt(L-S,O)(2)] compounds in chloroform-d; both with and without light irradiation allows the (Pt-195) chemical shifts cis/trans isomer pairs to be recorded. The cis/trans isomers appear to be in a photo-thermal equilibrium between the thermodynamically favored cis isomer and its trans counterpart. In the dark, the trans isomer reverts back to the cis complex in what is probably a thermal process. The light-induced cis/trans process is the key to preparing and isolating the rare trans complexes which cannot be prepared by conventional synthesis as confirmed by the first example of trans-[Pd(L-S,O)(2)] characterized by single-crystal X-ray diffraction, deliberately prepared after photo-induced isomerization in acetonitrile solution.
机译:来自N,N-二烷基-N-苯甲酰硫脲(HLn)的顺式[[M(LnS,O)(2)]配合物(M = Pt-II,Pd-II)的辐照,并带有多种强烈可见多色或单色光小于500nm的光导致有机溶剂中光诱导的顺反异构化。在所有情况下,源自多种光源的白光或单色蓝紫色激光405nm的光都会有效地导致大量反式异构体出现在溶液中,如稀溶液中的H-1 NMR和/或反相HPLC分离所示在室温下。通过H-1 NMR和Pt-195直接监测顺式[Pd(L-2-S,O)(2)]的原位激光(= 405nm)诱导的顺式/反式异构化的程度和相对速率氯仿-d中选定的顺式[[Pt(LS,O)(2)]化合物的NMR光谱;无论有无光照射,都可以记录(Pt-195)顺/反异构体对的化学位移。顺式/反式异构体似乎在热力学上有利的顺式异构体与其反式对应物之间处于光热平衡。在黑暗中,反式异构体可能通过热过程还原为顺式复合物。如第一个反式-[Pd(LS,O)(2)]的特征所证实的那样,光诱导的顺/反过程是制备和分离稀有反式配合物的关键,而稀有反式配合物无法通过常规合成方法制备,反式-[Pd(LS,O)(2)]的特征是单-在乙腈溶液中光诱导的异构化后故意制备的晶体X射线衍射。

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