Gao Feng-Wei, Xu Hong-Liang, Su Zhong-Min
Institute of Functional Material Chemistry, Department of Chemistry, Northeast Normal University, Changchun, 130024, China.
J Mol Model. 2016 Aug;22(8):174. doi: 10.1007/s00894-016-3040-y. Epub 2016 Jul 6.
Very recently, an unprecedented novel monometallic cluster of fullerenes entrapping a yttrium cyanide (YCN) cluster inside a popular C82 cage YCN@Cs(6)-C82 was synthesized and characterized. Inspired by this investigation, four non-IPR YCN@C1(17459)-C76, YCN@C2v(19138)-C76, YCN@C2(17646)-C76, and YCN@C1(17894)-C76 (1, 2, 3, and 4) containing a pair of adjacent pentagons are designed to explore the encapsulated molecular effect on their interaction energies and nonlinear optical properties. The interaction energy (E int) values of 1, 2, 3, and 4 are -481.35 (1), -477.91 (2), -482.04 (3), -482.69 (4) kcal mol(-1), respectively, which shows that the E int value of 4 is the largest. Furthermore, the electron-transfer is mainly from the YCN to C76 cage. When YCN is encapsulated into C76 cage, we can find that the α0 values of the four molecules are very close, ranging from 6.50 × 10(2) to 6.65 × 10(2) au. Significantly, the first hyperpolarizabilities are in relation to the encapsulated molecular: 1.63 × 10(3) (1) > 8.03 × 10(2) (2) > 7.76 × 10(2) (4) > 4.86 × 10(2) au (3), the results show that the βtot value of 1 is the largest. Besides this, the encapsulation of the YCN to C76 cage brings some distinctive changes in its UV-vis spectra along with its other electronic properties that might be used by the experimentalists to develop the potential nonlinear optical nanomaterials based on endohedral metallofullerenes.
最近,合成并表征了一种前所未有的新型单金属富勒烯簇,它在常见的C82笼YCN@Cs(6)-C82内部包裹着一个氰化钇(YCN)簇。受此研究启发,设计了四种含有一对相邻五边形的非IPR YCN@C1(17459)-C76、YCN@C2v(19138)-C76、YCN@C2(17646)-C76和YCN@C1(17894)-C76(1、2、3和4),以探索包封分子对其相互作用能和非线性光学性质的影响。1、2、3和4的相互作用能(E int)值分别为-481.35(1)、-477.91(2)、-482.04(3)、-482.69(4)kcal mol(-1),这表明4的E int值最大。此外,电子转移主要从YCN到C76笼。当YCN被包裹在C76笼中时,可以发现这四个分子的α0值非常接近,范围从6.50×10(2)到6.65×10(2) au。值得注意的是,第一超极化率与包封分子有关:1.63×10(3)(1)>8.03×10(2)(2)>7.76×10(2)(4)>4.86×10(2) au(3),结果表明1的βtot值最大。除此之外,YCN包裹到C76笼中使其紫外可见光谱及其其他电子性质发生了一些显著变化,实验人员可能会利用这些变化来开发基于内嵌金属富勒烯的潜在非线性光学纳米材料。