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Characterization of fullerenes and fullerene derivatives by small-angle neutron scattering and transmission measurements

机译:小角度中子散射和透射测量表征富勒烯和富勒烯衍生物

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Small-angle neutron scattering (SANS) has been shown to be an appropriate technique for the structural characterization of fullerenes in solvents with strong SANS contrast (3.g., CS_2). The dimensions of C_(60), C_(70), and C_(84) moieties derived from neutron scattering via standard Guinier analysis are typically approx 8% higher than calculated from the atomic coordinates. However, when the SANS data are fitted to an appropriate model form factor, there is good agreement between the measured and calculated values and the results are independent of the fullerene concentration within the experimental errors. Deuterated solvents (e.g., toluene-d_8) have a high scattering length density (SLD), which is close to that of C_(60), C_(70), and C_(84), so there is virtually no SANS contrast with the solvent and these particles are practically "invisible" in such media. Conversely, the negative scattering length of hydrogen lowers the SLD, giving strong contrast with toluene-d_8 and SANS may therefore be used to study the size and shapes of buckyballs modified with H~1-containing materials. These may also be studied via neutron transmission measurements and this paper describes complementary studies of cyclohexane-substituted fullerenes.
机译:小角度中子散射(SANS)已被证明是在具有强SANS对比的溶剂(3.g. CS_2)中富勒烯的结构表征的合适技术。通过标准的Guinier分析从中子散射得出的C_(60),C_(70)和C_(84)部分的尺寸通常比从原子坐标计算的高约8%。但是,当SANS数据适合适当的模型尺寸时,测量值和计算值之间会有很好的一致性,并且结果与实验误差内的富勒烯浓度无关。氘代溶剂(例如甲苯-d_8)具有很高的散射长度密度(SLD),与C_(60),C_(70)和C_(84)的散射长度密度相近,因此,与溶剂和这些颗粒在这种介质中实际上是“不可见的”。相反,氢的负散射长度降低了SLD,与甲苯-d_8形成强烈对比,因此SANS可用于研究用含H-1的材料改性的布基球的尺寸和形状。这些也可以通过中子传输测量来研究,本文描述了环己烷取代的富勒烯的补充研究。

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