Department of Physics, Center of Advanced Studies in Physics, Panjab University, Chandigarh, India 160014.
Nanoscale. 2011 Jan;3(1):217-24. doi: 10.1039/c0nr00475h. Epub 2010 Oct 27.
The magnetic properties of 3d transition metals (TM) encapsulated inside smaller fullerenes ranging from C20 to C36 have been investigated using spin polarized density functional theory. The TM impurities stabilize asymmetrically at an off-center position for n≥28. The total magnetic moment (MM) of TM@Cn complexes are largely contributed by TMs and a small amount of MM of 0.12-0.50 μB is induced on the cage carbon atoms. The 3d TM atoms interact with C atoms of C20 and C28 cage ferromagnetically (FM) except for Ni@C28 which shows antiferromagnetic (AFM) interaction. The magnetic interactions change from FM to AFM in C32 cage for Ti, V, Cr and Mn. The MM gets quenched in Ni@Cn for n≥32. The total MM of Mn@Cn does not show any change although the nature of magnetic interactions changes from FM to AFM at n=32. Ti and V are the only TMs which show positive cohesive energy in all fullerenes considered. The smallest fullerene which can encapsulate all 3d TM are Cn for n≥32, consistent with available experimental and theoretical results.
使用自旋极化密度泛函理论研究了 3d 过渡金属(TM)封装在从 C20 到 C36 的较小富勒烯内的磁性。TM 杂质在 n≥28 时稳定地处于非中心位置。TM@Cn 配合物的总磁矩(MM)主要由 TM 贡献,而笼碳原子上诱导出少量的 MM 为 0.12-0.50 μB。除 Ni@C28 外,3d TM 原子与 C20 和 C28 笼的 C 原子呈铁磁(FM)相互作用,Ni@C28 表现出反铁磁(AFM)相互作用。对于 Ti、V、Cr 和 Mn,C32 笼中的磁相互作用从 FM 变为 AFM。对于 Ni@Cn(n≥32),MM 被猝灭。尽管 Mn@Cn 的磁相互作用从 FM 变为 AFM,但 MM 没有任何变化。在考虑的所有富勒烯中,Ti 和 V 是唯一显示正结合能的 TM。可以封装所有 3d TM 的最小富勒烯是 Cn(n≥32),与现有的实验和理论结果一致。