显示MLCT现象的第一过渡系列金属离子顺磁性大环配合物的NMR、ESR、NQR和IR研究:DFT应用。第三部分:。三(2,2 -联吡啶)配合物

M. Sehgal, A. Aggarwal, Sunaina Singh
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引用次数: 1

摘要

应用ADF.2012.01中实现的DFT对[L3M] 2+ {M=V(II), Ni(II)}和[L3Cr] 3+ (L=2,2-联吡啶)三种大环顺磁六配位配合物的四种光谱技术进行了结构研究。预优化后,利用ESR/EPR/EFG/ZFS程序中的TZP或TZ2P基集,采用单点、LDA、默认、相对论、自旋轨道、ZORA、无限制、无、共线、Nosym运行软件,得到ESR参数:g11、g22、g33、giso、a11、a22、a33、Aten。更多ESR参数(gn。在新的ADF输入中用标量命令替换Spin Orbit得到了Aten, ZFS)和NQR参数{, q11, q22, q33, NQCC}。然后,使用“核磁共振程序”,使用相同的基集,使用单点、默认、无、共线、Nosym,保留不受限制的命令空白,运行软件,获得组分σ值中的屏蔽常数(σ m、σ 13c、σ 17o)、化学位移(δ m、δ 13c、δ 17o)、2个抗磁、4个顺磁和4个自旋轨道贡献项。该软件还得到了配合物(3n-6)基振带正模的红外频率。5个参数:σ、δ、g.n、aten、NQCC;4个参数σ、δ、g.Aten和1 H的3个参数σ、δ、g.Aten在空间上印证了3个配合物中30个碳原子为5种不同类型,24个氢原子为4种不同类型,6个氮原子为相同类型。该研究具有重要意义,因为我们可以通过核磁共振证实MLCT现象;计算了4个核磁共振、ESR和NQR参数:H^,Ehf,不对称系数(),拉普拉斯方程;对177个波段的振动对称性和红外活度进行了分类,并计算了配合物的一些热参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NMR, ESR, NQR and IR Studies of Paramagnetic Macrocyclic Complexes of 1st Transition Series Metal Ions Exhibiting MLCT Phenomenon: A DFT Application. Part: III. Tris (2, 2- bipyridine) Complexes
DFT implemented in ADF.2012.01 was applied to study the structures of three macrocyclic paramagnetic hexa coordinate complexes: [L3M] 2+ {M=V(II), Ni(II)}, and [L3Cr] 3+ (L=2,2  -bipyridine) by four spectral techniques. After their pre-optimization, the software was run by using Single Point, LDA, Default, Relativity, Spin Orbit, ZORA, Unrestricted, None, Collinear, Nosym using TZP or TZ2P Basis sets in ESR/EPR/EFG/ZFS Program to obtain ESR parameters: g11, g22, g33, giso, a11, a22, a33, Aten. More ESR parameters (gn. Aten, ZFS) and NQR parameters {, q11, q22, q33, NQCC} were obtained by replacing Spin Orbit by scalar command in a new ADF Input. The software was, then, run using the “NMR Program” with Single Point, Default, None, Collinear, Nosym using the same Basis sets leaving unrestricted command blank to obtain Shielding Constants (σM, σ 13 C, σ 17 O), Chemical Shifts (δM, δ 13 C, δ 17 O), two diamagnetic, four paramagnetic and four spin orbit contributing terms in σ values of the constituents. The software was also run to obtain IR frequencies of normal modes of the (3n-6) fundamental vibration bands of the complexes. Five parameters: σ, δ, g.Aten, , NQCC of 14 N; four parameters: σ, δ, g.Aten,  of 13 C and three parameters: σ, δ, g.Aten, of 1 H corroborated to infer that the 30 Carbons were of 5 different types, the 24 Hydrogens were of 4 different types but the 6 Nitrogens were of the same type spatially in the three studied complexes. This study was important because we could confirm MLCT phenomenon by NMR; calculated four more NMR, ESR and NQR parameters: H^, Ehf, Asymmetric coefficient (), Laplace equation; classified the 177 bands into their vibration symmetries and IR activities and calculated some thermal parameters of the complexes.
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