Huang Qingqun, Ahmad Ali, Jamil Muhammad Kamran, Luo Ricai, Azeem Muhammad
School of Mathematics and Physics, Hechi University, Yizhou, Guangxi 456300, China.
College of Computer Science & Information Technology, Jazan University, Jazan, Saudi Arabia.
Math Biosci Eng. 2022 Aug 23;19(12):12303-12315. doi: 10.3934/mbe.2022573.
Manufacturing relatively inexpensive items in every area of engineering and science is the major focus of exploration resultant the world's contemporary economic setback. Making small-sized items that are inexpensive and lightweight while providing high quality is critical in today's and tomorrow's worlds. Nanotechnology has a significant role to play in this situation. Nano-objects or, in general, nanomaterials are especially preferred; nanotubes, especially those comprised of carbon, are one of the most popular types of nanostructures, and they are applied in a variety of chemical, biological and technical applications. This notion prompted us to investigate their many physical and chemical characteristics. We utilized topological descriptors to evaluate diverse nanotube structures such as armchair carbon and semi-capped nanotubes by using vertex-edge based indices to characterize distinct chemical structures via numerical quantitative analysis. Furthermore, we examined uncapped and semi-capped armchair carbon nanotubes and achieved adequate comparative findings.
在工程和科学的各个领域制造相对廉价的物品是探索的主要重点,这是世界当代经济挫折的结果。制造既廉价又轻便同时又能提供高质量的小型物品在当今和未来世界都至关重要。纳米技术在这种情况下可以发挥重要作用。纳米物体或者一般来说纳米材料尤其受到青睐;纳米管,特别是由碳构成的纳米管,是最受欢迎的纳米结构类型之一,并且它们被应用于各种化学、生物和技术应用中。这一概念促使我们研究它们的许多物理和化学特性。我们利用拓扑描述符,通过基于顶点 - 边的指数来评估各种纳米管结构,如扶手椅型碳纳米管和半封闭纳米管,以便通过数值定量分析来表征不同的化学结构。此外,我们研究了无帽和半帽扶手椅型碳纳米管,并取得了充分的比较结果。