二烷基锡中超分子链的有限顶点可分辨性

IF 1.8 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR Main Group Metal Chemistry Pub Date : 2022-01-01 DOI:10.1515/mgmc-2022-0027
Xiu-Yu Zhang, Muhammad Tanzeel Ali Kanwal, Muhammad Azeem, M. Jamil, Muzammil Mukhtar
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引用次数: 6

摘要

摘要对于哺乳动物来说,缬氨酸是一种糖原,是一种必需的氨基酸。一种由20个氨基酸、亚水杨基和l-缬氨酸组成的蛋白质构成羧酸盐配体,它是手性席夫的碱基。在大规模的研究中,与配体的配合物被用来帮助研究工作。为了从所有节点中定位特定节点的确切位置,通过选择特定子集以特定方式开发整个节点集,该子集被称为解析/定位集。本研究有助于研究N-亚水杨基-缬氨酸在二烷基锡中超分子链化学配合物的尺度。我们考虑了2,3,4和(Cλ)的配合物({C}_{\lambda}^{\ast})链,并证明了解析集的成员高度依赖于顶点的数量。
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Finite vertex-based resolvability of supramolecular chain in dialkyltin
Abstract For mammals, l-valine, which is a glycogen, is an essential amino acid. A protein made of 20 amino acids, salicylidene and l-valine make the carboxylate ligand which is the base of chiral Schiff. On a large scale, complexes with the ligand are utilized to help in the research work. To locate the exact location of a specific node from all the nodes, the entire node set is developed in a specific manner by choosing a particular subset and this subset is known as the resolving/locating set. This study contributed to the metric dimension of chemical complexes of supramolecular chain in dialkyltin from N-salicylidene-l-valine. We considered the complexes of 2,3,4 and ( C λ ⁎ ) ({C}_{\lambda }^{\ast }) chains and proved that the members of resolving sets are highly dependent on the number of vertices.
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来源期刊
Main Group Metal Chemistry
Main Group Metal Chemistry CHEMISTRY, INORGANIC & NUCLEAR-CHEMISTRY, ORGANIC
CiteScore
4.10
自引率
27.80%
发文量
21
审稿时长
4 weeks
期刊介绍: This journal is committed to the publication of short communications, original research, and review articles within the field of main group metal and semi-metal chemistry, Main Group Metal Chemistry is an open-access, peer-reviewed journal that publishes in ongoing way. Papers addressing the theoretical, spectroscopic, mechanistic and synthetic aspects of inorganic, coordination and organometallic main group metal and semi-metal compounds, including zinc, cadmium and mercury are welcome. The journal also publishes studies relating to environmental aspects of these metals, their toxicology, release pathways and fate. Articles on the applications of main group metal chemistry, including in the fields of polymer chemistry, agriculture, electronics and catalysis, are also accepted.
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