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首页> 外文期刊>Angewandte Chemie >Pressure-Induced Polymerization of Acetylene: Structure-Directed Stereoselectivity and a Possible Route to Graphane
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Pressure-Induced Polymerization of Acetylene: Structure-Directed Stereoselectivity and a Possible Route to Graphane

机译:乙炔的压力诱导聚合:结构定向的立体选择性和可氧化物的可能途径

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摘要

Geometric isomerism in polyacetylene is a basic concept in chemistry textbooks. Polymerization to cis-isomer is kinetically preferred at low temperature, not only in the classic catalytic reaction in solution but also, unexpectedly, in the crystalline phase when it is driven by external pressure without a catalyst. Until now, no perfect reaction route has been proposed for this pressure-induced polymerization. Using in situ neutron diffraction and meta-dynamic simulation, we discovered that under high pressure, acetylene molecules react along a specific crystallographic direction that is perpendicular to those previously proposed. Following this route produces a pure cis-isomer and more surprisingly, predicts that graphane is the final product. Experimentally, polycyclic polymers with a layered structure were identified in the recovered product by solid-state nuclear magnetic resonance and neutron pair distribution functions, which indicates the possibility of synthesizing graphane under high pressure.
机译:聚乙炔的几何异构性是化学教科书中的基本概念。对顺式 - 异构体的聚合是在低温下的动力学上优选的,而不仅在溶液中的经典催化反应中,而且在不含催化剂的外部压力驱动时,在结晶相中也是出乎意料的。到目前为止,没有提出这种压力诱导的聚合的完美反应路线。使用原位中子衍射和元动态模拟,我们发现,在高压下,乙炔分子沿着垂直于先前提出的那些所提出的结晶方向反应。在此路线之后,产生纯CIS - 异构体,更令人惊讶地预测,Graphane是最终产品。通过实验,通过固态核磁共振和中子对分布功能在回收的产物中鉴定具有层状结构的多环聚合物,这表明在高压下合成石墨的可能性。

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