首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Spectroscopic, magnetochemical, and crystallographic study of cesium iron phosphate hexahydrate: Characterization of the electronic structure of the iron(II) hexa-aqua cation in a quasicubic environment
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Spectroscopic, magnetochemical, and crystallographic study of cesium iron phosphate hexahydrate: Characterization of the electronic structure of the iron(II) hexa-aqua cation in a quasicubic environment

机译:六水合磷酸铯铯的光谱,磁化学和晶体学研究:在准立方环境中表征六水合铁(II)阳离子的电子结构

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摘要

Spectroscopic, magnetochemical, and crystallographic data are presented for CsFe(H2O)(6)PO4, a member of a little-known isomorphous series of salts that facilitates the study of hexa-aqua ions in a quasicubic environment. Above 120 K, the deviations from cubic symmetry are minimal, as shown by the first example of an iron(II) Mossbauer spectrum that exhibits no measurable quadrupole splitting. Two crystallographically distinct [Fe(OH2)(6)](2+) complexes are identified from inelastic neutron-scattering (INS) experiments conducted between 2 and 15 K. The data are modeled with the ligand-field Hamiltonian, (H) over cap = lambda(L) over cap(S) over cap + beta B(k (L) over cap +2 (S) over cap)+Delta(tet){(L) over cap (2)(z)-(1/3)L(L+1)} + Delta(rhom) {(L) over cap (2)(x)-(L) over cap (2)(y)}, operating in the ground-term T-5(2g) (O-h) basis. An excellent reproduction of INS, Mossbauer, HF-EPR, and magnetochemical data are obtained in the 2 and 15 K temperature regimes with the following parameters: I) - 80 cm(-1); k = 0.8; site A Delta(tet) = 183 cm(-1), Delta(rhom) = 19 cm(-1); site B Delta(tet) = 181 cm(-1), Delta(rhom) = 12 cm(-1). The corresponding zero-field-splitting (ZFS) parameters of the conventional S = 2 spin Hamiltonian are as follows: site A D = 12.02 cm(-1), E = 2.123 cm(-1); site B D = 12.15 cm(-1), E = 1.37 cm(-1). A theoretical analysis of the variation of the energies of the low-lying states with respect to displacements along selected normal coordinates of the [Fe(OH2)(6)](2+), shows the zero-field splitting to be extremely sensitive to small structural perturbations of the complex. The expressions derived are discussed in the context of spin-Hamiltonian parameters reported for the [Fe(OH2)(6)](2+) cation in different crystalline environments.
机译:呈现了CsFe(H2O)(6)PO4的光谱,磁化学和晶体学数据,CsFe(H2O)(6)PO4是鲜为人知的同构盐系列的成员,该盐系列有助于在准石英环境中研究六水合离子。高于120 K时,立方对称性的偏差最小,如Mossbauer铁(II)光谱的第一个示例所示,该光谱没有可测量的四极分裂。从2至15 K的非弹性中子散射(INS)实验中鉴定出两种在晶体学上不同的[Fe(OH2)(6)](2+)络合物。用配体场哈密顿量(H)上限=上限的上限为lambda(L)+上限的上限为beta B(k(L)上限的上限为+ 2(S)上限)+ Delta(tet){(L)上限为(2)(z)-( 1/3)L(L + 1)} + Delta(rhom){(L)超过上限(2)(x)-(L)超过上限(2)(y)},在地面T- 5(2g)(哦)在2 K和15 K温度范围内,具有以下参数可获得INS,Mossbauer,HF-EPR和磁化学数据的出色再现:I)-80 cm(-1); k = 0.8;位置A Delta(tet)= 183 cm(-1),Delta(rhom)= 19 cm(-1); B点Delta(tet)= 181 cm(-1),Delta(rhom)= 12 cm(-1)。常规S = 2自旋哈密顿量的相应零场分裂(ZFS)参数如下:位置A D = 12.02 cm(-1),E = 2.123 cm(-1);位置B D = 12.15 cm(-1),E = 1.37 cm(-1)。对低洼状态的能量随沿[Fe(OH2)(6)](2+)的选定法向坐标的位移的变化的理论分析表明,零场分裂对复杂的小结构扰动。在自旋哈密顿参数的背景下讨论了导出的表达式,该参数针对不同晶体环境中的[Fe(OH2)(6)](2+)阳离子进行了报道。

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