Szefler Beata, Diudea Mircea V
J Nanosci Nanotechnol. 2017 Jan;17(1):323-28. doi: 10.1166/jnn.2017.10859.
Spongy structures are hollow-containing materials, encountered in natural or synthesized zeolites, spongy carbon, etc. The design and topological study of some hypothetical spongy nanostructures is presented in terms of map operations and genus calculation of their associated graphs, respectively. Among the discussed structures one remarks some novel spongy polyhedra that can evolve with 1-periodicity or radially, to provide multi-shell cages. Filling the space inside such complex nanostructures can be achieved by small fullerenes that self-arrange in aggregates with a well-defined geometry, of which energy trends to a minimal value. The way of space filling varies function of the dimension and shape of composing small fullerenes. An attempt of building and stability evaluating of several fullerene aggregates was made. The calculations were made at the HF, DFT and DFTB level of theory. The design of nanostructures was performed by our original software packages CVNET and Nano Studio.
海绵状结构是包含中空材料的结构,见于天然或合成沸石、海绵状碳等。分别根据地图操作及其相关图形的亏格计算,对一些假设的海绵状纳米结构进行了设计和拓扑研究。在讨论的结构中,可以看到一些新颖的海绵状多面体,它们可以以1周期性或径向方式演化,以提供多壳笼。通过在具有明确几何形状的聚集体中自排列的小富勒烯,可以实现对这种复杂纳米结构内部空间的填充,其能量趋向于最小值。空间填充方式随组成小富勒烯的尺寸和形状而变化。对几种富勒烯聚集体进行了构建和稳定性评估尝试。计算是在HF、DFT和DFTB理论水平上进行的。纳米结构的设计是通过我们原始的软件包CVNET和Nano Studio完成的。