Muthukumar K, Larsson J A
Tyndall National Institute, University College Cork, Lee Maltings, Prospect Row, Cork, Ireland.
J Phys Chem A. 2008 Feb 7;112(5):1071-5. doi: 10.1021/jp0759574. Epub 2008 Jan 16.
Ce has been found experimentally to be preferentially incorporated into the C82 isomer of C2v symmetry as have other lanthanoids in M@C82 (M = La, Pr, Nd, etc.). We have investigated the underlying reason for this preference by calculating structural and electronic properties of Ce@C82 using density functional theory. The ground-state structure of Ce@C82 is found to have the cerium atom attached to the six-membered ring on the C2 axis of the C82-C2v cage, and the encapsulated atom is found to perturb the carbon cage due to chemical bonding. We have found Ce to favor this C2v chemisorption site in C82 by 0.62 eV compared to other positions on the inside wall of the cage. The specific preference of the metal atom to this six-membered ring is explained through electronic structure analysis, which reveals strong hybridization between the d orbitals of cerium and the pi orbitals of the cage that is particularly favorable for this chemisorption site. We propose that this symmetry dictated interaction between the cage and the lanthanide d orbital plays a crucial role when C82 forms in the presence of Ce to produce Ce@C82 and is also more generally applicable for the formation of other lanthanoid M@C82 molecules. Our theoretical computations are the first to explain this well-established fact. Last, the vibrational spectrum of Ce@C82 has been simulated and analyzed to gain insight into the metal-cage vibrations.
实验发现,与M@C82(M = La、Pr、Nd等)中的其他镧系元素一样,铈优先掺入具有C2v对称性的C82异构体中。我们通过使用密度泛函理论计算Ce@C82的结构和电子性质,研究了这种偏好的潜在原因。发现Ce@C82的基态结构中,铈原子附着在C82 - C2v笼的C2轴上的六元环上,并且由于化学键合,被包裹的原子会扰乱碳笼。我们发现,与笼内壁上的其他位置相比,铈在C82中更倾向于这种C2v化学吸附位点0.62电子伏特。通过电子结构分析解释了金属原子对该六元环的特定偏好,该分析揭示了铈的d轨道与笼的π轨道之间的强杂化,这对该化学吸附位点特别有利。我们提出,当在铈存在下形成C82以产生Ce@C82时,这种由对称性决定的笼与镧系元素d轨道之间的相互作用起着关键作用,并且更普遍适用于其他镧系元素M@C82分子的形成。我们的理论计算首次解释了这一已确立的事实。最后,对Ce@C82的振动光谱进行了模拟和分析,以深入了解金属 - 笼振动。