首页> 外文期刊>Journal of molecular modeling >Stabilization of gold nanowires inside nanoaggregates of cyclo[8]thiophene, cyclo[8]selenophene, and cyclo[8]tellurophene: A theoretical study
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Stabilization of gold nanowires inside nanoaggregates of cyclo[8]thiophene, cyclo[8]selenophene, and cyclo[8]tellurophene: A theoretical study

机译:环[8]噻吩,环[8]硒烯和环[8]碲二苯醚纳米聚集体内部金纳米线的稳定化:理论研究

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The stabilities and electronic properties of gold clusters containing up to six atoms trapped inside cyclo[8]thiophene (CS8), cyclo[8]selenophene (CSe8), and cyclo[8]tellurophene (CTe8) nanoaggregates have been studied using the M06 functional. The 6-31G(d) basis set was used for all atoms except Au and Te, for which the LANL2DZ(d,p) pseudopotential basis set was applied. Single-point energy calculations were performed with the 6-311G(d,p) basis set for all atoms except for Au and Te, for which the cc-TZVP-pp pseudopotential basis set was used. Among the three studied macrocycles, only CS8 and CSe8 were found to be capable of nanoaggregate formation. In the lowest-energy conformer of CTe8, the tellurophene fragments adopt an anti orientation, thus impeding a tubular arrangement of the macrocycles. The formation of gold clusters inside the CS8 and CSe8 nanoaggregates is a thermodynamically favorable process, and could represent a potentially useful method of stabilizing metal nanowires. The binding energy between the nanoaggregate and the gold cluster is always higher for selenium-containing complexes than for sulfur-containing ones because Se has a higher affinity than S for Au in such complexes. Interactions of the gold cluster with the nanoaggregate walls can change the geometry of the most stable isomer for the cluster. The relative energies of different isomers are rather similar, suggesting that they coexist. For nanoaggregates containing Au_ 6 clusters, the cluster geometry when it is inside a nanoaggregate is different from the geometry of the cluster when it is not inside the nanoaggregate, due to the geometric restrictions imposed by the nanoaggregate cavity. The reorganization energy needed to change the geometry leads to lower binding energies for these complexes compared to those of some smaller systems, although the formation of a complex between Au_6 and a nanoaggregate with six CS8 or CSe8 macrocycles is still thermodynamically viable.
机译:使用M06官能团研究了在环[8]噻吩(CS8),环[8]硒烯(CSe8)和环[8]碲二苯醚(CTe8)纳米聚集体中捕获的最多包含六个原子的金团簇的稳定性和电子性质。 。除Au和Te外,所有原子均使用6-31G(d)基集,并对其应用了LANL2DZ(d,p)伪电势基集。对于除Au和Te以外的所有原子,使用6-311G(d,p)基础集执行单点能量计算,为此使用了cc-TZVP-pp伪电势基础集。在三个研究的大环化合物中,仅CS8和CSe8被发现能够形成纳米聚集体。在CTe8的最低能量构象异构体中,碲二酚片段采用反方向,因此阻碍了大环的管状排列。 CS8和CSe8纳米聚集体内部金簇的形成是热力学上有利的过程,并且可能是稳定金属纳米线的潜在有用方法。含硒配合物的纳米聚集体与金团簇之间的结合能始终比含硫配合物的高,因为在这种配合物中,硒对金的亲和力高于硫。金团簇与纳米聚集体壁的相互作用可以改变该团簇最稳定的异构体的几何形状。不同异构体的相对能量相当相似,表明它们共存。对于包含Au-6团簇的纳米聚集体,由于纳米聚集体腔所施加的几何限制,当其位于纳米聚集体内部时,其簇的几何形状不同于当其不在纳米聚集体内部时的簇的几何形状。与一些较小的系统相比,改变几何形状所需的重组能导致这些配合物的结合能降低,尽管在Au_6和具有六个CS8或CSe8大环的纳米聚集体之间形成配合物在热力学上仍然可行。

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