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具有 90 个顶点的类富勒烯纳米球的结构和性质。

Structures and properties of spherical 90-vertex fullerene-like nanoballs.

机构信息

Institut für Anorganische Chemie der Universität Regensburg, 93040 Regensburg, Germany.

出版信息

Chemistry. 2010 Feb 15;16(7):2092-107. doi: 10.1002/chem.200902554.

DOI:10.1002/chem.200902554
PMID:20077539
Abstract

By applying the proper stoichiometry of 1:2 to [Cp(R)Fe(eta(5)-P(5))] and CuX (X=Cl, Br) and dilution conditions in mixtures of CH(3)CN and solvents like CH(2)Cl(2), 1,2-Cl(2)C(6)H(4), toluene, and THF, nine spherical giant molecules having the simplified general formula [Cp(R)Fe(eta(5)-P(5))]@[{Cp(R)Fe(eta(5)-P(5))}(12){CuX}(25)(CH(3)CN)(10)] (Cp(R)=eta(5)-C(5)Me(5) (Cp*); eta(5)-C(5)Me(4)Et (Cp(Et)); X=Cl, Br) have been synthesized and structurally characterized. The products consist of 90-vertex frameworks consisting of non-carbon atoms and forming fullerene-like structural motifs. Besides the mostly neutral products, some charged derivatives have been isolated. These spherical giant molecules show an outer diameter of 2.24 (X=Cl) to 2.26 nm (X=Br) and have inner cavities of 1.28 (X=Cl) and 1.20 nm (X=Br) in size. In most instances the inner voids of these nanoballs encapsulate one molecule of [Cp*Fe(eta(5)-P(5))], which reveals preferred orientations of pi-pi stacking between the cyclo-P(5) rings of the guest and those of the host molecules. Moreover, pi-pi and sigma-pi interactions are also found in the packing motifs of the balls in the crystal lattice. Electrochemical investigations of these soluble molecules reveal one irreversible multi-electron oxidation at E(p)=0.615 V and two reduction steps (-1.10 and -2.0 V), the first of which corresponds to about 12 electrons. Density functional calculations reveal that during oxidation and reduction the electrons are withdrawn or added to the surface of the spherical nanomolecules, and no Cu(2+) species are involved.

摘要

通过将适当的化学计量比 1:2 应用于 [Cp(R)Fe(eta(5)-P(5))] 和 CuX(X=Cl,Br),并在 CH(3)CN 和 CH(2)Cl(2)、1,2-Cl(2)C(6)H(4)、甲苯和 THF 等溶剂的混合物中进行稀释条件,合成并结构表征了九个具有简化通式 [Cp(R)Fe(eta(5)-P(5))]@[{Cp(R)Fe(eta(5)-P(5))}(12){CuX}(25)(CH(3)CN)(10)] 的球形巨分子(Cp(R)=eta(5)-C(5)Me(5) (Cp*);eta(5)-C(5)Me(4)Et (Cp(Et));X=Cl,Br)。这些产物由非碳原子组成的 90 个顶点框架组成,形成富勒烯样结构基元。除了主要的中性产物外,还分离出了一些带电衍生物。这些球形巨分子的外径为 2.24(X=Cl)至 2.26nm(X=Br),内径为 1.28(X=Cl)和 1.20nm(X=Br)。在大多数情况下,这些纳米球的内腔封装了一个 [Cp*Fe(eta(5)-P(5))] 分子,这揭示了客体的环-P(5)环与主体分子之间的 pi-pi 堆积的优先取向。此外,在晶体晶格中纳米球的堆积图案中还发现了 pi-pi 和 sigma-pi 相互作用。这些可溶性分子的电化学研究表明,在 E(p)=0.615V 处存在一个不可逆的多电子氧化,以及两个还原步骤(-1.10 和-2.0V),其中第一个步骤对应约 12 个电子。密度泛函计算表明,在氧化和还原过程中,电子被从球形纳米分子的表面抽出或添加,并且不涉及 Cu(2+) 物种。

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