Department of Chemistry and Center for Theoretical and Computational Chemistry, University of Tromsø, N-9037 Tromsø, Norway.
Inorg Chem. 2010 Mar 15;49(6):2701-5. doi: 10.1021/ic901860x.
Using density functional theory (OLYP/STO-TZP) calculations, we have investigated the electronic structure of [Mn(5,5-tropocoronand)(NO)], a rare paramagnetic {MNO}(6) complex. Experimental methods, including magnetic susceptibility measurements and high-field electron paramagnetic resonance spectroscopy, have not provided an unambiguous spin state assignment for this complex. In other respects, however, the compound was fully characterized, including by means of single-crystal X-ray structure determination. The optimized S = 1 OLYP geometry reproduced all key aspects of the trigonal-bipyramidal molecular structure, including a short Mn-N(O) distance (approximately 1.7 A) and an essentially linear MnNO angle. In contrast, the S = 0 and S = 2 optimized structures disagreed with the crystal structure in critical respects. Moreover, three different exchange-correlation functionals (OLYP, B3LYP, and B3LYP*) indicated an S = 1 ground state by a clear margin of energy. An examination of the Kohn-Sham MOs of this state indicated a primarily d(xz)(2)d(yz)(2)d(xy)(1)d(x(2)-z(2))(1) electronic configuration, where the z axis is identified with the nearly linear MnNO axis. The d(y(2)) orbital is formally unoccupied in this state, interacting, as it does, head-on with two tropocoronand nitrogens lying along the y axis, the pseudo-3-fold axis of the trigonal bipyramid. The doubly occupied d(xz) and d(yz) orbitals are in actuality d(pi)(Fe)-pi*(NO)-based pi-bonding molecular orbitals, the alpha and beta "components" of which are significantly offset spatially. This offset results in excess minority spin density on the NO unit. Thus, the OLYP/TZP atomic spin populations are Mn, 2.85; N(O), -0.52; and O, -0.35.
使用密度泛函理论(OLYP/STO-TZP)计算,我们研究了[Mn(5,5-叔辛基冠醚)(NO)]的电子结构,这是一种罕见的顺磁{MNO}(6)配合物。实验方法,包括磁化率测量和高磁场电子顺磁共振波谱,并没有为这个配合物提供一个明确的自旋态分配。然而,在其他方面,该化合物已经被充分表征,包括单晶 X 射线结构测定。优化后的 S = 1 OLYP 几何形状再现了三角双锥分子结构的所有关键方面,包括短 Mn-N(O)距离(约 1.7 Å)和基本线性的 MnNO 角。相比之下,S = 0 和 S = 2 优化结构在关键方面与晶体结构不一致。此外,三种不同的交换相关泛函(OLYP、B3LYP 和 B3LYP*)通过明显的能量优势表明存在 S = 1 基态。对这个状态的 Kohn-Sham MOs 的研究表明,其主要的电子构型为 d(xz)(2)d(yz)(2)d(xy)(1)d(x(2)-z(2))(1),其中 z 轴与近乎线性的 MnNO 轴一致。在这个状态中,d(y(2))轨道是形式上未占据的,它与沿着 y 轴排列的两个叔辛基冠醚氮相互作用,y 轴是三角双锥的伪 3 重轴。双占据的 d(xz)和 d(yz)轨道实际上是基于 d(pi)(Fe)-pi*(NO)-的 pi 键合分子轨道,其 alpha 和 beta“分量”在空间上有很大的偏移。这种偏移导致 NO 单元上的少数自旋密度过剩。因此,OLYP/TZP 原子自旋布居为 Mn,2.85;N(O),-0.52;和 O,-0.35。