Nanocluster Laboratory, Institute of Molecular Science, Shanxi University, Taiyuan 030006, China.
Phys Chem Chem Phys. 2018 Jun 6;20(22):15330-15334. doi: 10.1039/c8cp01078a.
Recent joint experimental and theoretical investigations have shown that seashell-like C2 B28 is the smallest neutral borospherene reported to date, while seashell-like Cs B29- (1-) as a minor isomer competes with its quasi-planar counterparts in B29- cluster beams. Extensive global minimum searches and first-principles theory calculations performed in this work indicate that with two valence electrons detached from B29-, the B29+ monocation favors a seashell-like Cs B29+ (1+) much different from Cs B29- (1-) in geometry which is overwhelmingly the global minimum of the system with three B7 heptagonal holes in the front, on the back, and at the bottom, respectively, unveiling an interesting charge-induced structural transition from Cs B29- (1-) to Cs B29+ (1+). Detailed bonding analyses show that with one less σ bond than B29- (1-), Cs B29+ (1+) also possesses nine delocalized π-bonds over its σ-skeleton on the cage surface with a σ + π double delocalization bonding pattern and follows the 2(n + 1)2 electron counting rule for 3D spherical aromaticity (n = 2). B29+ (1+) is therefore the smallest borospherene monocation reported to date which is π-isovalent with the smallest neutral borospherene C2 B28. The IR, Raman, and UV-vis spectra of B29+ (1+) are computationally simulated to facilitate its spectroscopic characterization.
最近的联合实验和理论研究表明,贝壳状的 C2 B28 是迄今为止报道的最小中性硼烯,而贝壳状的 Cs B29-(1-)作为次要异构体与其准平面异构体在 B29-团簇束中竞争。本工作进行了广泛的全局最小搜索和第一性原理理论计算,表明从 B29-中脱离两个价电子后,B29+单价阳离子有利于形成一种贝壳状的 Cs B29+(1+),其几何形状与 Cs B29-(1-)截然不同,后者在前面、后面和底部分别有三个 B7 七边形孔,是该体系的全局最小能态,揭示了有趣的电荷诱导结构转变,从 Cs B29-(1-)到 Cs B29+(1+)。详细的键分析表明,与 Cs B29-(1-)相比,少一个 σ 键,Cs B29+(1+)在笼表面的 σ 骨架上也具有九个离域的 π 键,具有 σ + π 双重离域键合模式,并遵循 3D 球形芳香性的 2(n + 1)2 电子计数规则(n = 2)。因此,B29+(1+)是迄今为止报道的最小硼烯单价阳离子,与最小中性硼烯 C2 B28 具有π等电子性。计算模拟了 B29+(1+)的红外、拉曼和紫外可见光谱,以促进其光谱特性的研究。