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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Linear trimer analogues of calixarene as chiral coordinating ligands: X-ray crystallographic and NMR spectroscopic characterization of chiral and achiral trisphenolates complexed to titanium(IV) and aluminum(III)
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Linear trimer analogues of calixarene as chiral coordinating ligands: X-ray crystallographic and NMR spectroscopic characterization of chiral and achiral trisphenolates complexed to titanium(IV) and aluminum(III)

机译:杯芳烃的线性三聚体类似物作为手性配位体:与钛(IV)和铝(III)络合的手性和非手性三酚的X射线晶体学和NMR光谱表征

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Achiral and chiral linear trisphenol analogues of calixarene (HOArCH2Ar'(OH)C(R)HArOH, Ar = 4,6-di-tert-butylphenyl; Ar' = 4-tert-butylphenyl; R = H (achiral), Me (chiral)) were prepared in anticipation of their adoption of a chiral conformation upon coordination to Lewis acidic metal centers. The trisphenols react with I equiv of Ti(OR')(4) (R' = i-Pr or t-Bu) to yield complexes with molecular formula Ti-2(OArCH2Ar'(O)C(R)HArO)(2)(OR')(2) (R = H, Me; R' = i-Pr or t-Bu). An X-ray crystal structure of the titanium complex of the achiral trisphenol (R = H; R' = t-Bu) reveals that the trisphenolate ligand adopts an unsymmetrical (and therefore chiral) conformation, with eta(2)-coordination to one metal center and eta(1)-coordination to the second metal center. The chiral trisphenol, which contains a stereogenic center (indicated as C in the shorthand notation used above), coordinates titanium in an analogous fashion to produce only one diastereomer (out of four possible); therefore, the configuration of the stereogenic center controls the conformation adopted by the bound ligand. The reaction of achiral trisphenol with AlMe3 produces a compound with molecular formula Al-2(OArCH2Ar'(O)CH2ArO)(2). H-1 NMR spectroscopy and X-ray crystallography reveal that the trisphenolate ligand adopts an asymmetric, C-2 conformation in this complex, where the central phenolate oxygen bridges the aluminum centers and the terminal phenolate oxygens each coordinate a separate aluminum center. Because these trisphenolate ligands adopt chiral conformations when coordinated to metal centers, they may be useful for developing diastereo- or enantioselective catalysts and reagents. [References: 83]
机译:杯芳烃的手性和手性线性三酚类似物(HOArCH2Ar'(OH)C(R)HArOH,Ar = 4,6-二叔丁基苯基; Ar'= 4-叔丁基苯基; R = H(非手性),Me( (手性))是在与路易斯酸性金属中心配合时预期采用手性构象而制备的。三酚与I当量的Ti(OR')(4)(R'= i-Pr或t-Bu)反应生成分子式为Ti-2(OArCH2Ar'(O)C(R)HArO)(2的配合物) )(OR')(2)(R = H,Me; R'= i-Pr或t-Bu)。非手性三酚(R = H; R'= t-Bu)钛配合物的X射线晶体结构表明,三酚盐配体采用不对称(因此是手性)构象,其中eta(2)配位为一个金属中心和与第二个金属中心的eta(1)坐标。手性三酚含有一个立体生成的中心(在上述速记符号中用C表示),以类似的方式配位钛,仅生成一种非对映异构体(四种可能)。因此,立体中心的构型控制了结合的配体所采用的构象。非手性三酚与AlMe3的反应生成分子式为Al-2(OArCH2Ar'(O)CH2ArO)(2)的化合物。 H-1 NMR光谱和X射线晶体学分析表明,三酚盐配体在该络合物中采用不对称的C-2构象,其中中心酚盐氧桥接铝中心,末端酚盐氧各自协调一个单独的铝中心。由于这些三酚盐配体在与金属中心配位时采用手性构象,因此可用于开发非对映或对映选择性的催化剂和试剂。 [参考:83]

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