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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Correlating pore size and shape to local disorder in microporous carbon: A combined small angle neutron and X-ray scattering study
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Correlating pore size and shape to local disorder in microporous carbon: A combined small angle neutron and X-ray scattering study

机译:将孔径和形状与微孔碳中的局部疾病相关联:组合的小角度中子和X射线散射研究

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We present a model free analysis of the structure of a microporous carbon (Kynol fiber cloth) with neutrons (SANS) and X-rays (SAXS). SANS with contrast matching is used to analyze the accessible pores. It is shown that the SAXS-and the SANS-intensities agree after correction of the SANS specific background. Moreover, we analyze the scattering contribution due to the finite size and the bending of the carbon sheets. This contribution that scales with q(-2) at high q-values (q: magnitude of scattering vector) is subtracted and the remaining intensity that exhibits a q(-4) final slope gives the specific inner surface (1090 m(2)/g) and the porosity (29%) with excellent precision. The spatial distribution of the pores is analyzed in terms of the chord length distribution g(r). This distribution has its maximum below 1 nm and a finite intercept g(0) that indicates pores with sharp edges. The analysis gives furthermore the number and weight-average chord length. Finally, a parameter characterizing the degree of disorder of the carbonaceous structure introduced by Ruland was determined. Its value (25%) indicates a rather disordered structure that is visualized in terms of a detailed model. The entire analysis shows the power of small-angle scattering for a detailed analysis of microporous structures. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:我们对中子(SAN)和X射线(SAXS)的微孔碳(kynol纤维布)的结构进行了一种自由分析。采用对比度匹配的SANS用于分析可接近的毛孔。结果表明,萨克斯和SAN强度在校正SANS特定背景后同意。此外,我们通过有限尺寸和碳板的弯曲来分析散射贡献。在高Q值(Q:散射矢量)下用Q(2)缩放的这种贡献是减去呈现AQ(-4)最终斜率的剩余强度给出特定内表面(1090m(2)/ g)和孔隙率(29%)具有优异的精度。在弦长分布G(R)方面分析了孔的空间分布。该分布的最大值低于1nm,并且有限拦截g(0)表示具有尖锐边缘的孔隙。该分析还提供了数量和重量平均弦长。最后,测定了由Ruland引入的碳质结构紊乱程度的参数。它的值(25%)表示在详细模型方面可视化的相当无序的结构。整个分析显示了小角度散射的功率,用于微孔结构的详细分析。 (c)2017作者。 elsevier有限公司出版

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