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Designing novel Sn-Bi Si-C and Ge-C nanostructures using simple theoretical chemical similarities

机译:使用简单的理论化学相似性设计新颖的Sn-BiSi-C和Ge-C纳米结构

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摘要

A framework of simple, transparent and powerful concepts is presented which is based on isoelectronic (or isovalent) principles, analogies, regularities and similarities. These analogies could be considered as conceptual extensions of the periodical table of the elements, assuming that two atoms or molecules having the same number of valence electrons would be expected to have similar or homologous properties. In addition, such similar moieties should be able, in principle, to replace each other in more complex structures and nanocomposites. This is only partly true and only occurs under certain conditions which are investigated and reviewed here. When successful, these concepts are very powerful and transparent, leading to a large variety of nanomaterials based on Si and other group 14 elements, similar to well known and well studied analogous materials based on boron and carbon. Such nanomaterias designed in silico include, among many others, Si-C, Sn-Bi, Si-C and Ge-C clusters, rings, nanowheels, nanorodes, nanocages and multidecker sandwiches, as well as silicon planar rings and fullerenes similar to the analogous sp2 bonding carbon structures. It is shown that this pedagogically simple and transparent framework can lead to an endless variety of novel and functional nanomaterials with important potential applications in nanotechnology, nanomedicine and nanobiology. Some of the so called predicted structures have been already synthesized, not necessarily with the same rational and motivation. Finally, it is anticipated that such powerful and transparent rules and analogies, in addition to their predictive power, could also lead to far-reaching interpretations and a deeper understanding of already known results and information.
机译:提出了一个简单,透明且功能强大的概念框架,该框架基于等电子(或等价)原理,类比,规律性和相似性。假设两个具有相同价电子数量的原子或分子具有相似或同源的性质,则可以将这些类比视为元素周期表的概念扩展。另外,这些相似的部分原则上应该能够在更复杂的结构和纳米复合物中彼此取代。这仅部分正确,并且仅在某些条件下发生,此处对此进行了调查和审查。成功实现这些概念后,它们将变得非常有力且透明,从而产生了多种基于硅和其他第14组元素的纳米材料,类似于基于硼和碳的众所周知且经过研究的类似材料。这种在计算机上设计的纳米材料包括Si-C,Sn-Bi,Si-C和Ge-C团簇,环,纳米轮,纳米棒,纳米笼和多层三明治,以及与硅类似的硅平面环和富勒烯。类似于sp 2 键的碳结构。研究表明,这种教学上简单而透明的框架可以导致无穷无尽的新型和功能性纳米材料,在纳米技术,纳米医学和纳米生物学中具有重要的潜在应用。某些所谓的预测结构已经合成,不一定具有相同的理性和动机。最后,可以预见的是,这些强大而透明的规则和类比,除了具有预测能力外,还可能导致影响深远的解释以及对已知结果和信息的更深刻理解。

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