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Fullerene-like structure of activated carbons

机译:活性炭的富勒烯状结构

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The structure of the commercial activated carbons AX21 and BP71 has been studied using the high-energy X-ray diffraction and molecular dynamics techniques. The di (Traction measurements were carried up to a maximum value of the scattering vector K_(max)= 24 A~(-1). The obtained diffraction data have been converted to a real space representation in the form of the radial distribution function. Structural models containing 2 and 4 graphene layers, approximately 16-20 A in size, were computer generated and then relaxed using the reactive empirical bond order potential for carbon-carbon interactions and the Lcnnard-Jones potential with parameters for inter-layer interactions. The molecular dynamics simulations were performed at 300 K to account for the thermal oscillations. For such models the intensity and radial distribution functions were computed. The correctness of the models was verified by comparison of the simulations with the experimental data both in real and reciprocal space. The effects of hydrogen, saturating dangling bonds of edge atoms, the presence of non-six membered rings and the sp3 defects on the resulting structure were investigated.
机译:使用高能X射线衍射和分子动力学技术研究了商用活性炭AX21和BP71的结构。进行衍射测量,直至散射矢量K_(max)= 24 A〜(-1)的最大值,并将获得的衍射数据转换为径向分布函数形式的实空间表示。由计算机生成包含2个和4个石墨烯层的结构模型,大小约为16-20 A,然后使用碳-碳相互作用的反应性经验键序势和具有层间相互作用参数的Lcnnard-Jones势进行松弛。在300 K下进行了分子动力学模拟以解决热振荡问题,为此模型计算了强度和径向分布函数,并通过将模拟与真实空间和倒数空间中的实验数据进行比较,验证了模型的正确性。氢,边缘原子的饱和悬挂键,非六元环的存在以及sp3缺陷对所得结构的影响为调查。

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