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线性乙炔碳的合成:“sp”杂化碳同素异形体。

Synthesis of Linear Acetylenic Carbon: The "sp" Carbon Allotrope.

出版信息

Science. 1995 Jan 20;267(5196):362-7. doi: 10.1126/science.267.5196.362.

Abstract

A carbon allotrope based on "sp" hybridization containing alternating triple and single bonds (an acetylenic or linear carbon allotrope) has been prepared. Studies of small (8 to 28 carbon atoms) acetylenic carbon model compounds show that such species are quite stable (130 degrees to 140 degrees C) provided that nonreactive terminal groups or end caps (such as tert-butyl or trifluoromethyl) are present to stabilize these molecules against further reactions. In the presence of end capping groups, laser-based synthetic techniques similar to those normally used to generate fullerenes, produce thermally stable acetylenic carbon species capped with trifluoromethyl or nitrile groups with chain lengths in excess of 300 carbon atoms. Under these conditions, only a negligible quantity of fullerenes is produced. Acetylenic carbon compounds are not particularly moisture or oxygen sensitive but are moderately light sensitive.

摘要

一种基于“sp”杂化的含交替三键和单键的碳同素异形体(炔烃或线性碳同素异形体)已被制备。对小(8 到 28 个碳原子)炔烃碳模型化合物的研究表明,只要存在非反应性末端基团或端盖(如叔丁基或三氟甲基)来稳定这些分子,防止进一步反应,这些物种就非常稳定(130 到 140 摄氏度)。在端盖基团的存在下,类似于通常用于生成富勒烯的基于激光的合成技术,产生了用三氟甲基或腈基封端的热稳定的炔烃碳物种,其链长超过 300 个碳原子。在这些条件下,只产生了微不足道的富勒烯。炔烃碳化合物不是特别对水分或氧气敏感,但对光有一定的敏感性。

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