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首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis and reactivity of para-substituted benzoylmethyltellurium(II and IV) compounds: observation of intermolecular C-H-O hydrogen bonding in the crystal structure of (p-MeOC6H4COCH2)(2)TeBr2
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Synthesis and reactivity of para-substituted benzoylmethyltellurium(II and IV) compounds: observation of intermolecular C-H-O hydrogen bonding in the crystal structure of (p-MeOC6H4COCH2)(2)TeBr2

机译:对取代的苯甲酰基甲基碲(II和IV)化合物的合成和反应性:(p-MeOC6H4COCH2)(2)TeBr2晶体结构中分子间C-H-O氢键的观察

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摘要

Bis(p-substituted benzoylmethyl)tellurium dibromides, (p-YC6H4COCH2)(2)TeBr2, (Y = H (1a), Me (1b), MeO (1c)) can be prepared either by direct insertion of elemental Te across C-Rf-Br bonds (where C-RF refers to alpha-carbon of a functionalized organic moiety) or by the oxidative addition of bromine to (p-YC6H4COCH2)(2)Te (Y = H (2a), Me (2b), MeO (2c)). Bis(p-substituted benzoylmethyl)tellurium dichlorides, (p-YC6H4COCH2)(2)TeCl2 (Y = H (3a), Me (3b), MeO (3c)), are prepared by the reaction of the bis(p-substituted benzoylmethyl)tellurides 2a-c with SO2Cl2, whereas the corresponding diiodides (p-YC6H4COCH2)(2)TeI2 (Y = H (4a), Me (4b), MeO (4c)) can be obtained by the metathetical reaction of 1a-c with KI, or alternatively, by the oxidative addition of iodine to 2a-c. The reaction of 2a-c with allyl bromide affords the diorganotellurium dibromides 1a-c, rather than the expected triorganotelluronium bromides. Compounds 1-4 were characterized by elemental analyses, IR spectroscopy, H-1, C-13 and Te-125 NMR spectroscopy (solution and solid-state) and in case of 1c also by X-ray crystallography. (p-MeOC6H4COCH2)(2)TeBr2 (1c) provides, a rare example, among organotellurium compounds, of a supramolecular architecture, where C-H-O hydrogen bonds appear to be the non-covalent intermolecular associative force that dominates the crystal packing. (C) 2003 Elsevier B.V. All rights reserved. [References: 30]
机译:双(对位取代的苯甲酰基甲基)二溴化碲(p-YC6H4COCH2)(2)TeBr2,(Y = H(1a),Me(1b),MeO(1c))可以通过在整个C上直接插入Te来制备-Rf-Br键(其中C-RF表示官能化有机部分的α-碳)或通过将溴氧化加成到(p-YC6H4COCH2)(2)Te(Y = H(2a),Me(2b) ,MeO(2c))。双(对位取代的苯甲酰基甲基)二氯化碲,(p-YC6H4COCH2)(2)TeCl2(Y = H(3a),Me(3b),MeO(3c)),是通过双(对位取代的)反应制备的苯甲酰基甲基)碲化物2a-c与SO2Cl2,而相应的二碘化物(p-YC6H4COCH2)(2)TeI2(Y = H(4a),Me(4b),MeO(4c))可以通过1a- c与KI或通过将碘氧化加成至2a-c中来实现。 2a-c与烯丙基溴的反应提供了二有机二溴化溴化物1a-c,而不是预期的三有机碲化溴化物。通过元素分析,IR光谱,H-1,C-13和Te-125 NMR光谱(溶液和固态)表征化合物1-4,在1c的情况下,还通过X射线晶体学表征。 (p-MeOC6H4COCH2)(2)TeBr2(1c)在有机碲化合物中提供了一个超分子结构的罕见例子,其中C-H-O氢键似乎是控制晶体堆积的非共价分子间缔合力。 (C)2003 Elsevier B.V.保留所有权利。 [参考:30]

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