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Magical Mathematical Formulas for Nanoboxes

机译:纳米氧化剂的神奇数学公式

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Hollow nanostructures are at the forefront of many scientific endeavors. These consist of nanoboxes, nanocages, nanoframes, and nanotubes. We examine the mathematics of atomic coordination in nanoboxes. Such structures consist of a hollow box with n shells and t outer layers. The magical formulas we derive depend on both n and t . We find that nanoboxes with t ?=?2 ?or ?3, or walls with only a few layers generally have bulk coordinated atoms. The benefits of low-coordination in nanostructures is shown to only occur when the wall thickness is much thinner than normally synthesized. The case where t ?=?1 is unique, and has distinct magic formulas. Such low-coordinated nanoboxes are of interest for a myriad variety of applications, including batteries, fuel cells, plasmonic, catalytic and biomedical uses. Given these formulas, it is possible to determine the surface dispersion of the nanoboxes. We expect these formulas to be useful in understanding how the atomic coordination varies with n and t within a nanobox.
机译:空心纳米结构是许多科学努力的最前沿。这些包括纳米氧化纳症,纳米病毒,纳米罩和纳米管。我们检查纳米氧化症中的原子协调数学。这种结构由带有N壳和T外层的空心盒组成。我们派生的神奇公式取决于N和T。我们发现具有T的纳米氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧轭=?3,或者墙体,只有几层的壁通常具有块状配位原子。显示纳米结构中低协调的益处仅在壁厚比通常合成的较薄较薄时发生。 t?=?1是独一无二的,并且具有不同的魔法公式。这种低协调的纳米氧促氧化物对于无数的各种应用感兴趣,包括电池,燃料电池,等离子体,催化和生物医学用途。鉴于这些公式,可以确定纳米氧化氧皂糖的表面分散体。我们希望这些公式在理解原子协调如何在纳米曲轴内的N和T时变化。

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