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Conducting linear chains of sulphur inside carbon nanotubes

机译:碳纳米管内部的硫线性导电链

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摘要

Despite extensive research for more than 200 years, the experimental isolation of monatomic sulphur chains, which are believed to exhibit a conducting character, has eluded scientists. Here we report the synthesis of a previously unobserved composite material of elemental sulphur, consisting of monatomic chains stabilized in the constraining volume of a carbon nanotube. This one-dimensional phase is confirmed by high-resolution transmission electron microscopy and synchrotron X-ray diffraction. Interestingly, these one-dimensional sulphur chains exhibit long domain sizes of up to 160 nm and high thermal stability (~800 K). Synchrotron X-ray diffraction shows a sharp structural transition of the one-dimensional sulphur occurring at ~450–650 K. Our observations, and corresponding electronic structure and quantum transport calculations, indicate the conducting character of the one-dimensional sulphur chains under ambient pressure. This is in stark contrast to bulk sulphur that needs ultrahigh pressures exceeding ~90 GPa to become metallic.
机译:尽管进行了200多年的广泛研究,科学家们仍无法通过实验分离出单原子的硫链,这些单链的硫链据信具有导电特性。在这里,我们报告了以前未观察到的元素硫的复合材料的合成,该材料由稳定在碳纳米管约束体积中的单原子链组成。该一维相通过高分辨率透射电子显微镜和同步加速器X射线衍射确定。有趣的是,这些一维硫链表现出长达160 ofnm的长畴尺寸和高热稳定性(〜800 K)。同步加速器X射线衍射表明,一维硫在〜450-650 occurringK处发生了急剧的结构转变,我们的观察以及相应的电子结构和量子输运计算表明一维硫链在环境压力下的导电特性。这与散装硫形成鲜明对比,散装硫需要超过90 GPa的超高压才能变成金属。

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