Atefi Farzad, McMurtrie John C, Turner Peter, Duriska Martin, Arnold Dennis P
Synthesis and Molecular Recognition Program, School of Physical and Chemical Sciences, Queensland University of Technology, GPO Box 2434, Brisbane 4001, Australia.
Inorg Chem. 2006 Aug 7;45(16):6479-89. doi: 10.1021/ic060372u.
A series of porphyrins substituted in one or two meso positions by diphenylphosphine oxide groups has been prepared by the palladium-catalyzed reaction of diphenylphosphine or its oxide with the corresponding bromoporphyrins. Compounds {MDPP-[P(O)Ph2]n} (M = H2, Ni, Zn; H2DPP = 5,15-diphenylporphyrin; n = 1, 2) were isolated in yields of 60-95%. The reaction is believed to proceed via the conventional oxidative addition, phosphination, and reductive elimination steps, as the stoichiometric reaction of eta(1)-palladio(II) porphyrin [PdBr(H2DPP)(dppe)] (H2DPP = 5,15-diphenylporphyrin; dppe = 1,2-bis(diphenylphosphino)ethane) with diphenylphosphine oxide also results in the desired mono-porphyrinylphosphine oxide [H2DPP-P(O)Ph2]. Attempts to isolate the tertiary phosphines failed due to their extreme air-sensitivity. Variable-temperature 1H NMR studies of [H2DPP-P(O)Ph2] revealed an intrinsic lack of symmetry, while fluorescence spectroscopy showed that the phosphine oxide group does not behave as a "heavy atom" quencher. The electron-withdrawing effect of the phosphine oxide group was confirmed by voltammetry. The ligands were characterized by multinuclear NMR and UV-visible spectroscopy, as well as mass spectrometry. Single-crystal X-ray crystallography showed that the bis(phosphine oxide) nickel(II) complex {[NiDPP-[P(O)Ph2]2} is monomeric in the solid state, with a ruffled porphyrin core and the two P=O fragments on the same side of the average plane of the molecule. On the other hand, the corresponding zinc(II) complex formed infinite chains through coordination of one Ph2PO substituent to the neighboring zinc porphyrin through an almost linear P=O...Zn unit, leaving the other Ph2PO group facing into a parallel channel filled with disordered water molecules. These new phosphine oxides are attractive ligands for supramolecular porphyrin chemistry.
通过二苯基膦或其氧化物与相应的溴卟啉的钯催化反应,制备了一系列在一个或两个中位被二苯基氧化膦基团取代的卟啉。化合物{MDPP-[P(O)Ph2]n}(M = H2、Ni、Zn;H2DPP = 5,15-二苯基卟啉;n = 1, 2)的分离产率为60 - 95%。据信该反应通过传统的氧化加成、膦化和还原消除步骤进行,因为η(1)-钯(II)卟啉[PdBr(H2DPP)(dppe)](H2DPP = 5,15-二苯基卟啉;dppe = 1,2-双(二苯基膦基)乙烷)与二苯基氧化膦的化学计量反应也能得到所需的单卟啉基氧化膦[H2DPP-P(O)Ph2]。由于叔膦对空气极度敏感,分离它们的尝试失败了。对[H2DPP-P(O)Ph2]的变温1H NMR研究表明其本质上缺乏对称性,而荧光光谱显示氧化膦基团并不表现为“重原子”猝灭剂。氧化膦基团的吸电子效应通过伏安法得到证实。这些配体通过多核NMR、紫外-可见光谱以及质谱进行了表征。单晶X射线晶体学表明双(氧化膦)镍(II)配合物{[NiDPP-[P(O)Ph2]2}在固态下为单体,具有褶皱的卟啉核心,且两个P=O片段位于分子平均平面的同一侧。另一方面,相应的锌(II)配合物通过一个Ph2PO取代基通过近乎线性的P=O...Zn单元与相邻的锌卟啉配位形成无限链,使另一个Ph2PO基团朝向充满无序水分子的平行通道。这些新型氧化膦是超分子卟啉化学中具有吸引力的配体。