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DIAMOND MOLECULES FOUND IN PETROLEUM New Members of the H-Terminated Diamond Series

机译:在石油中发现的金刚石分子,H-终止的金刚石系列的新成员

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We recently reported [1,2] the discovery and isolation of new members of the hydrogen-terminated diamond series, ~1 to ~2 nm sized higher diamondoids from petroleum. Crystallographic studies [1,2] revealed a wealth of diamond molecules that are nanometer-sized rods, helices, discs, pyramids, etc. Highly rigid, well-defined, readily derivatizable structures make them valuable molecular building blocks for nanotechnology. We now produce certain higher diamondoids in gram quantities. Although more stable than graphite particles of comparable size, higher diamondoids are extraordinarily difficult to synthesize. Attempts to synthesize them were abandoned in the 1980's. We examined extracts of diamond-containing materials synthesized by CO2 laser-induced gas-phase synthesis [3] and commercial CVD in an attempt to detect diamantane to undecamantane. However, high-sensitivity GCMS detected no diamondoids in these materials.
机译:我们最近报道了[1,2]氢封端的金刚石系列的新成员的发现和分离,从石油中〜1至约2nm大小的含量。晶体研究[1,2]揭示了纳米尺寸棒,螺旋,圆盘,金字塔等的大量金刚石分子。高度刚性,定义,易于衍生的结构,使其成为纳米技术的有价值的分子构建块。我们现在在克批量中产生某些更高的菱形曲线。虽然比具有相当尺寸的石墨颗粒更稳定,但较高的样品晶体非常难以合成。在20世纪80年代被遗弃了综合他们的尝试。我们检查了CO2激光诱导的气相合成[3]和商业CVD合成的含金刚石材料的提取物,试图检测二酰胺丹丹丹的二氨酰胺。然而,高灵敏度GCMS在这些材料中检测到无序。

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