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原子锑影响的碳链团簇的结构和稳定性。

Structures and Stabilities of Carbon Chain Clusters Influenced by Atomic Antimony.

机构信息

School of Pharmaceutical and Chemical Engineering, Taizhou University, Taizhou 318000, China.

Department of Chemistry, Tongji University, Shanghai 200092, China.

出版信息

Molecules. 2023 Jan 31;28(3):1358. doi: 10.3390/molecules28031358.

Abstract

The C-C bond lengths of the linear magnetic neutral CSb, CSb cations and CSb anions are within 1.255-1.336 Å, which is typical for cumulene structures with moderately strong double-bonds. In this report, we found that the adiabatic ionization energy () of CSb decreased with . When comparing the relationship of CSb with that of pure C, we found that the latter exhibited a stair-step pattern ( ≥ 6), but the relationship of CSb chains took the shape of a flat curve. The s of CSb were lower than those of corresponding pure carbon chains. Different from pure carbon chains, the adiabatic electron affinity of CSb does not exhibit a parity effect. There is an even-odd alternation for the incremental binding energies of the open chain CSb (for = 1-16) and CSb ( = 1-10, when > 10, the incremental binding energies of odd () chain of CSb are larger than adjacent clusters). The difference in the incremental binding energies between the even and odd chains of both CSb and pure C diminishes with the increase in . The incremental binding energies for CSb anions do not exhibit a parity effect. For carbon chain clusters, the most favorable binding site of atomic antimony is the terminal carbon of the carbon cluster because the terminal carbon with a large spin density bonds in an unsaturated way. The C-Sb bond is a double bond with Wiberg bond index (WBI) between 1.41 and 2.13, which is obviously stronger for a carbon chain cluster with odd-number carbon atoms. The WBI of all C-C bonds was determined to be between 1.63 and 2.01, indicating the cumulene character of the carbon chain. Generally, the alteration of WBI and, in particular, the carbon chain cluster is consistent with the bond length alteration. However, the shorter C-C distance did not indicate a larger WBI. Rather than relying on the empirical comparison of bond distance, the WBI is a meaningful quantitative indicator for predicting the bonding strength in the carbon chain.

摘要

线性磁中性 CSb、CSb 阳离子和 CSb 阴离子的 C-C 键长在 1.255-1.336 Å 之间,这是具有中等强度双键的累积烯结构的典型特征。在本报告中,我们发现 CSb 的绝热电离能()随着的增加而降低。当比较 CSb 与纯 C 的关系时,我们发现后者呈现阶梯式模式(≥6),而 CSb 链的关系则呈平坦曲线。CSb 的 s 值低于相应的纯碳链。与纯碳链不同,CSb 的绝热电子亲合能没有表现出奇偶效应。对于开链 CSb(=1-16)和 CSb(=1-10,当>10 时,CSb 奇数()链的增量结合能大于相邻簇),其增量结合能呈现奇偶交替。CSb 和纯 C 的偶数和奇数链之间的增量结合能差异随着的增加而减小。CSb 阴离子的增量结合能没有表现出奇偶效应。对于碳链簇,原子锑最有利的结合位点是碳簇的末端碳,因为具有较大自旋密度的末端碳以不饱和方式键合。C-Sb 键是一个双键,Wiberg 键指数(WBI)在 1.41 和 2.13 之间,对于具有奇数个碳原子的碳链簇来说,这个键明显更强。所有 C-C 键的 WBI 被确定为 1.63 到 2.01 之间,这表明了碳链的累积烯特征。一般来说,WBI 的变化,特别是碳链簇的变化,与键长的变化一致。然而,较短的 C-C 距离并不表示更大的 WBI。WBI 不是依赖于对键距的经验比较,而是一个有意义的定量指标,用于预测碳链中的键合强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ea6/9921706/88b3d22b2a6e/molecules-28-01358-g001.jpg

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