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Synthesis and Properties of 2,3-Diethynyl-1,3-Butadienes

机译:2,3-二乙炔基-1,3-丁二烯的合成与性质

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摘要

The first general preparative access to compounds of the 2,3-diethynyl-1,3-butadiene (DEBD) class is reported. The synthesis involves a one-pot, twofold Sonogashira-type, Pd-0-catalyzed coupling of two terminal alkynes and a carbonate derivative of a 2-butyne-1,4-diol. The synthesis is broad in scope and members of this structural family are kinetically stable enough to be handled using standard laboratory techniques at ambient temperature. They decompose primarily through heat-promoted cyclodimerizations, which are impeded by alkyl substitution and accelerated by aryl or alkenyl substitution. An iterative sequence of these unprecedented Sonogashira-type couplings generates a new type of expanded dendralene. A suitably substituted DEBD carrying two terminal alkyne groups undergoes Glaser-Eglinton cyclo-oligomerization to produce a new class of expanded radialenes, which are chiral due to restricted rotation about their 1,3-butadiene units. The structural features giving rise to atropisomerism in these compounds are distinct from those reported previously.
机译:报道了第一普通制备方法,对2,3-二乙炔基-1,3-丁二烯(Debd)级别的化合物进行了准备。合成涉及单锅,双重Sonoghashira型,两个末端醇酸酯的PD-0催化偶联和2-丁炔-1,4-二醇的碳酸酯衍生物。合成的范围广泛,该结构家族的成员是足够稳定的,在环境温度下使用标准实验室技术进行处理。它们主要通过热促进的环比,其分解,其被烷基取代阻抗并通过芳基或链烯基取代加速。这些前所未有的Sonogashira型联轴器的迭代序列产生了一种新型的扩展树突。携带两个末端炔基的适当取代的Debd经历了Glaser-Eglinton环寡核苷酸,以产生新的膨胀放射性,这是由于其1,3-丁二烯单位的限制旋转而导致的细胞。在这些化合物中产生的结构特征是不同于先前报道的那些化合物中的。

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