Department of Mathematical Sciences, Karakoram International University Gilgit-Baltistan, Gilgit, 15100, Pakistan.
Department of Mathematics, University of Sialkot, Sialkot, 51310, Pakistan.
J Mol Model. 2022 Jul 5;28(8):211. doi: 10.1007/s00894-022-05201-z.
In the past few years, two-dimensional (2D) layered nanomaterials have greatly attracted the scientific community. Among 2D nanomaterials, the porphyrin-based Naphtalenic nanosheets have been the subject of intense research due to their utilization in photo-dynamic therapy and nanodevices. New technologies based on nanomaterials or Naphtalenic nanosheet are advantageous in overcoming the problems in conventional drug delivery like poor solubility, toxicity and poor release pattern of drugs. In chemical network theory, various molecular descriptors are used to predict the chemical properties of molecules; these molecular descriptors are found to be very useful for Quantitative Structure-Activity/ Quantitative Structure-Property (QSAR/QSPR) relationship analysis in materials engineering, chemical and pharmaceutical industries. Researchers have computed the molecular descriptors for various nanostructures; however, despite intense research, the topology of nanostructures is not yet well understood. Specially, to our knowledge, the computation of topological indices for the line graph of subdivision graph of H-Naphtalenic nanosheet has not been discussed so far, which may open new perspectives for a more accurate and reliable topological characterization of this nanosheet.In this article, we employed some important degree-based topological indices to study the chemical structure of Naphtalenic nanosheet as a chemical network for QSAR/QSPR analysis. We have computed these degree-based topological indices for the line graph of subdivision graph of H-Naphtalenic nanosheet and derived formulas for them. Based on the derived formulas, numerical results are obtained and the physical and chemical properties of the under study nanosheet are investigated.
在过去的几年中,二维(2D)层状纳米材料极大地吸引了科学界的关注。在 2D 纳米材料中,基于卟啉的萘纳米片由于在光动力疗法和纳米器件中的应用而成为研究的热点。基于纳米材料或萘纳米片的新技术在克服传统药物输送中的问题方面具有优势,例如药物的溶解度差、毒性和释放模式差。在化学网络理论中,使用各种分子描述符来预测分子的化学性质;这些分子描述符在材料工程、化学和制药工业中的定量结构-活性/定量结构-性质(QSAR/QSPR)关系分析中非常有用。研究人员已经计算了各种纳米结构的分子描述符;然而,尽管进行了深入的研究,但纳米结构的拓扑结构仍未得到很好的理解。特别是,据我们所知,迄今为止,尚未讨论 H-萘纳米片分划图的线图的拓扑指数的计算,这可能为更准确和可靠地对这种纳米片进行拓扑特征化开辟新的视角。在本文中,我们采用了一些重要的基于度的拓扑指数来研究 Naphtalenic 纳米片的化学结构作为 QSAR/QSPR 分析的化学网络。我们已经计算了 H-萘纳米片分划图的线图的这些基于度的拓扑指数,并推导出了它们的公式。基于推导出的公式,我们得到了数值结果,并研究了所研究的纳米片的物理和化学性质。