首页> 外文期刊>Phosphorus, Sulfur, and Silicon and the Related Elements >Structural relationships and theoretical study of electron transfer properties of 1,3,2-dithiazolyl radicals with fullerenes in nanostructure [1,3,2-DTA(s)]@C_n supramolecular complexes
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Structural relationships and theoretical study of electron transfer properties of 1,3,2-dithiazolyl radicals with fullerenes in nanostructure [1,3,2-DTA(s)]@C_n supramolecular complexes

机译:[1,3,2-DTA(s)] @ C_n超分子复合物中1,3,2-二噻唑基与富勒烯的结构关系和电子转移性质的理论研究

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摘要

Various empty carbon fullerenes with different carbon atoms have been obtained and investigated. The dithiazolyl radicals have shown important electron-transfer properties. Topological indices are digital values that are assigned based on chemical composition. These values are purported to correlate chemical structures with various chemical and physical properties. They have been successfully used to construct effective and useful mathematical methods to establish clear relationships between structural data and the physical properties of these materials. In this study, the number of carbon atoms in the fullerenes was used as an index to establish a relationship between the structures of 2,3-naphthalene-1,3,2-dithiazolyl (NDTA), 2,3-quinoxaline-1,3,2- dithiazolyl (QDTA), and 1,2,5-thiazolo[3,4-b]-1,3,2-dithiazolo[3,4-b]pyridazin- 2-yl (TDP-DTA), radicals, 1-3 as molecular conductor radicals and fullerenes Cn (n = 60, 70, 76, 82, and 86), which create [1,3,2-DTA(s)]@Cn, A-1 to A-5 (NDTA]@Cn), B-1 to B-5 ([QDTA]@Cn), and C-1 to C-5 ([TDP-DTA]@Cn). The relationship between the number of carbon atoms and the free energies of electron transfer (Get(1) to Get(4)) are assessed using the Rehm-Weller equation for A-1 to A-5, B1 to B-5, and C-1 to C-5 supramolecular [1,3,2-DTA(s)]@Cn complexes. Calculations are presented for the four reduction potentials (Red.E1 to Red.E4) of fullerenes Cn. The results were used to calculate the four free energies of electron transfer (Get(1) to Get(4)) of supramolecular complexes A-1 to A-18, B-1 to B-18, and C-1 to C-18 (5-60) for fullerenes C60 to C300.
机译:已经获得并研究了具有不同碳原子的各种空碳富勒烯。二噻唑基自由基已显示出重要的电子转移性质。拓扑指数是根据化学成分分配的数字值。据称这些值使化学结构与各种化学和物理性质相关。它们已成功用于构建有效和有用的数学方法,以建立结构数据与这些材料的物理特性之间的明确关系。在这项研究中,富勒烯中的碳原子数被用作建立2,3-萘-1,3,2-二噻唑基(NDTA),2,3-喹喔啉-1, 3,2-二噻唑基(QDTA)和1,2,5-噻唑并[3,4-b] -1,3,2-二噻唑并[3,4-b]哒嗪-2-基(TDP-DTA),原子分子基团1-3和分子基Cn(n = 60、70、76、82和86),它们会生成[1,3,2-DTA(s)] @ Cn,A-1至A- 5(NDTA] @ Cn,B-1至B-5([QDTA] @Cn)和C-1至C-5([TDP-DTA] @Cn)。使用A-1至A-5,B1至B-5和A-1至A-5的Rehm-Weller方程评估碳原子数与电子转移自由能(Get(1)至Get(4))之间的关系。 C-1至C-5超分子[1,3,2-DTA(s)] @ Cn配合物。给出了富勒烯Cn的四个还原电位(Red.E1至Red.E4)的计算结果。结果用于计算超分子配合物A-1至A-18,B-1至B-18和C-1至C-的电子转移的四个自由能(Get(1)至Get(4))富勒烯C60至C300为18(5-60)。

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