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Characterization of Surface Electrostatic Potentials of some (5,5) and (n,1) Carbon and Boron/Nitrogen Model Nanotubes

机译:某些(5,5)和(n,1)碳和硼/氮模型纳米管的表面静电势的表征

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To help understand and predict nanotube interactions, the electrostatic potentials on both the outer and the inner surfaces of 10 single-walled model systems have been computed at the Hartree-Fock STO-5G//STO-3G level. All structures were optimized computationally. Both carbon and boronitrogen tubes were studied, including the open and closed (5,5) and the open (6,1), (7,1), and (8,1), plus fullerene for comparison. Hydrogen atoms were introduced at the ends of the open tubes, to satisfy the unfulfilled valencies. The surface potentials were characterized in terms of both site-specific and global properties: positive and negative extrema and average values, average deviation, positive and negative variances and electrostatic balane. The all-carbon systems, the closed (5,5) and fullerene, are very weakly positive on most of the outer and all of the inner surfaces, the later potentials being somewhat stronger. In contrast, the open carbon tubes with charge-donating hydrogens at the ends are slightly negative on the outer lateral surfaces and somewhat less so on the inner, except for the narrowest, the (6,1), which is positive inside. The boronitrogen tubes have much stronger and more variable surface potentials than do the carbon; there are characteristic patterns of positive and negative sites on the outer lateral surfaces, while the inner ones are markedly positive. A general feature of all of the systems studied, both carbon and boronitrogen, is that stronger potentials are associated with regions of higher curvature.
机译:为了帮助理解和预测纳米管相互作用,已经在Hartree-Fock STO-5G // STO-3G级别上计算了10个单壁模型系统的内外表面上的静电势。所有结构都在计算上进行了优化。研究了碳管和硼/氮管,包括开式和闭式(5,5)和开式(6,1),(7,1)和(8,1),以及富勒烯进行比较。将氢原子引入开口管的末端,以满足未实现的化合价。表面电势的特征在于位点特异性和全局特性:正负极值和平均值,平均偏差,正负方差和静电气。全碳体系,封闭的(5,5)和富勒烯,在大多数外表面和所有内表面上都具有非常弱的正性,后期的电势稍强。相比之下,末端带有供体氢的开放式碳管在外侧表面上略微为负,而在内侧则略微为负,除了最窄的(6,1)内侧为正。硼/氮管的表面电势比碳管强得多,并且变化多。在外侧表面上有正负部位的特征性图案,而内侧则显着为正。所研究的所有系统(碳和硼/氮)的总体特征是,较高的电势与较高曲率的区域相关。

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