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高自旋和低自旋的中位乙炔基卟啉铁(III)的1H核磁共振研究。

1H NMR investigation of high-spin and low-spin iron(III) meso-ethynylporphyrins.

作者信息

Berlicka Anna, Latos-Grazyński Lechosław, Lis Tadeusz

机构信息

Department of Chemistry, University of Wrocław, 50 383 Wrocław, Poland.

出版信息

Inorg Chem. 2005 Jun 27;44(13):4522-33. doi: 10.1021/ic050158q.

Abstract

The 1H NMR spectra of iron(III) 5-ethynyl-10,15,20-tri(p-tolyl)porphyrin [(ETrTP)Fe(III)X(n)], iron(III) 5-(phenylethynyl)-10,15,20-tri(p-tolyl)porphyrin [(PETrTP)Fe(III)X(n)], iron(III) 5-(phenylbutadiynyl)-10,15,20-tri(p-tolyl)porphyrin [(PBTrTP)Fe(III)X(n)], iron(III) 5,10,15,20-tetra(phenylethynyl)porphyrin [(TPEP)Fe(III)X(n)], iron(III) 1,4-bis-[10,15,20-tri(p-tolyl)porphyrin-5-yl]-1,3-butadiyne {[(TrTP)Fe(III)X(n)]2 B}, and 5,10,15-triphenylporphyrin [(TrPP)Fe(III)X(n)] have been studied to elucidate the impact of meso-ethynyl substitution on the electronic structure and spin density distribution of high-spin (X = Cl-, n = 1) and low-spin (X = CN-, n = 2) derivatives. The meso substituents, i.e., ethynyl, phenylethynyl, and phenylbutadiynyl, provided insight into the efficiency of spin density delocalization along structural elements that are typically applied to transmit electronic effects along multipart polyporphyrinic systems. The positive spin density localized at the meso-carbon of high-spin iron(III) ethynylporphyrins is effectively delocalized along the ethyne or butadiyne fragment as illustrated by the comparison of isotropic shifts of C(meso)-H and -CC-H determined for (TrPP)Fe(III)Cl (-82.6 ppm, 293 K) and (ETrTP)Fe(III)Cl (-49.5 ppm, 298 K). The replacement of the ethynyl hydrogen by phenyl or phenylethynyl provided evidence for the pi spin density distribution around the introduced phenyl ring. An analysis of the isotropic shifts for the low-spin bis-cyanide iron(III) porphyrins series reveals the analogous mechanism of spin density transfer. Treatment of high-spin [(TrTP)Fe(III)Cl]2 B with a base resulted in formation of the cyclic [(TrTP)Fe(III)OFe(III)(TrTP)B]2 complex linked by two mu-oxo bridges. (TPEP)H2 has been characterized by X-ray crystallography as a porphyrin dication where two molecules of trifluoroacetic acid associate with two coordinated trifluoroacetate anions. The X-ray structure of bis-tetrahydrofuran 1,4-bis[10,15,20-tri(p-tolyl)porphyrinatozinc(II)-5-yl]-1,3-butadiyne complex {[(TrTP)Zn(II)(THF)]2 B} reveals two parallel, non-coplanar [(TrTP)Zn(THF)] subunits linked by the linear butadiyne moiety.

摘要

对铁(III)5-乙炔基-10,15,20-三(对甲苯基)卟啉[(ETrTP)Fe(III)X(n)]、铁(III)5-(苯乙炔基)-10,15,20-三(对甲苯基)卟啉[(PETrTP)Fe(III)X(n)]、铁(III)5-(苯基丁二炔基)-10,15,20-三(对甲苯基)卟啉[(PBTrTP)Fe(III)X(n)]、铁(III)5,10,15,20-四(苯乙炔基)卟啉[(TPEP)Fe(III)X(n)]、铁(III)1,4-双-[10,15,20-三(对甲苯基)卟啉-5-基]-1,3-丁二炔{[(TrTP)Fe(III)X(n)]2B}以及5,10,15-三苯基卟啉[(TrPP)Fe(III)X(n)]的1H NMR光谱进行了研究,以阐明中位乙炔基取代对高自旋(X = Cl-,n = 1)和低自旋(X = CN-,n = 2)衍生物的电子结构和自旋密度分布的影响。中位取代基,即乙炔基、苯乙炔基和苯基丁二炔基,为沿着通常用于在多部分多卟啉体系中传递电子效应的结构单元进行自旋密度离域的效率提供了见解。高自旋铁(III)乙炔基卟啉的中位碳上的正自旋密度沿着乙炔或丁二炔片段有效地离域,这通过比较(TrPP)Fe(III)Cl(-82.6 ppm,293 K)和(ETrTP)Fe(III)Cl(-49.5 ppm,298 K)的C(中位)-H和-CC-H的各向同性位移得到说明。用苯基或苯乙炔基取代乙炔基氢为引入的苯环周围的π自旋密度分布提供了证据。对低自旋双氰基铁(III)卟啉系列的各向同性位移分析揭示了自旋密度转移的类似机制。用碱处理高自旋[(TrTP)Fe(III)Cl]2B导致形成由两个μ-氧桥连接的环状[(TrTP)Fe(III)OFe(III)(TrTP)B]2配合物。(TPEP)H2已通过X射线晶体学表征为卟啉二价阳离子,其中两个三氟乙酸分子与两个配位的三氟乙酸根阴离子缔合。双四氢呋喃1,4-双[10,15,20-三(对甲苯基)卟啉锌(II)-5-基]-1,3-丁二炔配合物{[(TrTP)Zn(II)(THF)]2B}的X射线结构揭示了由线性丁二炔部分连接的两个平行、非共面的[(TrTP)Zn(THF)]亚基。

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