Wang Yan, Zheng Guishan, Morokuma Keiji, Geletii Yurii V, Hill Craig L, Musaev Djamaladdin G
Cherry L. Emerson Center for Scientific Computation and Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.
J Phys Chem B. 2006 Mar 23;110(11):5230-7. doi: 10.1021/jp0571978.
The roles of chemical composition (X, M and M(FW)) of di-transition-metal-substituted gamma-Keggin polytungstates and polymolybdates, (X(n)(+)O(4))M(2)(OH)(2)(M(FW))(10)O(32), on the geometry, electronic structure, and magnetic properties of these species have been investigated at the density functional level. It was shown that the change of the heteroatom X via Al(III)-Si(IV)-P(V)-S(VI) slightly stabilizes the broken-symmetry (BS) state over the high-spin (HS) state, increases the antiferromagnetic coupling constant, J, of these species, and lowers the energies of their highest-occupied molecular orbitals (HOMOs) and lowest-unoccupied molecular orbitals (LUMOs). The change of the redox-active center M from Mn to Fe slightly increases the M-(XO(4)) interaction, J-coupling constant, and energy gap between the HS and BS states. Meanwhile, the LUMOs are stabilized, indicating the stronger oxidant character of (X(n)(+)O(4))M(2)(OH)(2)W(10)O(32) for M = Fe than Mn. It was shown that the change of addenda atom M(FW) from W to Mo makes (a) the geometry of Keggin "cage" slightly smaller, (b) the interaction of redox-active centers (Fe) with the central XO(4)-unit slightly stronger, and (c) the J-coupling constant, as well as the energy gap DeltaE(BS-HS), slightly larger.
在密度泛函理论水平上,研究了二过渡金属取代的γ-凯吉型多钨酸盐和多钼酸盐(X(n)(+)O(4))M(2)(OH)(2)(M(FW))(10)O(32)的化学成分(X、M和M(FW))对这些化合物的几何结构、电子结构和磁性能的影响。结果表明,杂原子X从Al(III)到Si(IV)、P(V)、S(VI)的变化,使破缺对称(BS)态相对于高自旋(HS)态略有稳定,增加了这些化合物的反铁磁耦合常数J,并降低了它们的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能量。氧化还原活性中心M从Mn变为Fe,略微增加了M-(XO(4))相互作用、J耦合常数以及HS和BS态之间的能隙。同时,LUMO得到稳定,这表明对于M = Fe的(X(n)(+)O(4))M(2)(OH)(2)W(10)O(32)比M = Mn具有更强的氧化剂特性。结果表明,加成原子M(FW)从W变为Mo,使得(a)凯吉型“笼”的几何结构略小,(b)氧化还原活性中心(Fe)与中心XO(4)单元的相互作用略强,以及(c)J耦合常数以及能隙ΔE(BS-HS)略大。