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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >LIESST EFFECT STUDIES OF IRON(II) SPIN-CROSSOVER COMPLEXES WITH PHOSPHINE LIGANDS - RELAXATION KINETICS AND EFFECTS OF SOLVENT MOLECULES
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LIESST EFFECT STUDIES OF IRON(II) SPIN-CROSSOVER COMPLEXES WITH PHOSPHINE LIGANDS - RELAXATION KINETICS AND EFFECTS OF SOLVENT MOLECULES

机译:铁(II)自旋交联配合物与膦配位基团的最小作用研究-弛豫动力学和溶剂分子作用

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Fe-57 Mossbauer data are presented to show that polycrystalline samples of [Fe(dppen)(2)X-2]. 2S, where dppen is cis-1,2-bis(diphenylphosphino)ethylene and X- is Cl- or Br- and S is CHCl3 or CH2Cl2, exhibit the light-induced excited spin state trapping (LIESST) effect. If the sample is kept at 10 K, Ar ion laser light converts the whole sample from the thermally stable low-spin (LS) form to the metastable high-spin (HS) form, while light of lambda > 695 nm converts some of the metastable HS to the stable LS form. The relaxation rate was monitored in the 28-70 K range following the LIESST effect at 10 K. The plots of the fraction of HS complex (gamma(HS)) vs time can be fitted reasonably well to a single exponential for the four complexes. The relaxation data were also analyzed with a model for cooperative (gamma(HS)-dependent decay) relaxation. It is found that complex 1 shows less cooperativity than the other three complexes. Furthermore, the HS --> LS relaxation times observed in the similar to 28-70 K range for these four complexes are relatively long compared with those for FeN6 complexes under similar conditions. The relaxation kinetics of [Fe(dppen)(2)Cl-2]. nCHCl(3) (1) appears to be affected by the amount (n) of solvent molecules in the crystal lattice. Variable-temperature magnetic susceptibility data show that only when each complex has fully two solvent molecules does the conversion from HS at high temperatures to LS at low temperatures go to completion. The results of the X-ray structures of [Fe(dppen)(2)Br-2]. 2CHCl(3) (3) at 149 and 193 K are given, i.e., below and above the LS to HS (T-1/2 = 175 K) conversion. At both temperatures, complex 3 has the monoclinic space group P2(1)/c, which at 149 K has a unit cell with a = 11.494(16) Angstrom, b = 12.895(14) Angstrom, c = 17.49(2) Angstrom, and Z = 2. Refinement of the 149 K data set with 3434 observed [F-0 > 4 sigma(F-0)] reflections gave R = 0.0816 and R-w = 0.1014. There is a large increase in the average Fe-P bond length of 0.27 Angstrom from 149 to 193 K, whereas the Fe-Br bonds only increase by 0.033 Angstrom. The relatively large change in Fe-P bond lengths must be largely responsible for the slow rate of tunneling from the metastable HS state to the stable LS state. [References: 40]
机译:呈现Fe-57 Mossbauer数据以显示[Fe(dppen)(2)X-2]的多晶样品。图2S中,dppen是顺式1,2-双(二苯基膦基)乙烯,X-是Cl-或Br-,S是CHCl3或CH2Cl2,显示出光诱导的激发自旋俘获(LIESST)效应。如果样品保持在10 K,则Ar离子激光会将整个样品从热稳定的低自旋(LS)形式转换为亚稳的高自旋(HS)形式,而λ> 695 nm的光会将某些亚稳态HS为稳定的LS形式。在10 K处的LIESST效应后,在28-70 K范围内监测了弛豫率。HS络合物的分数(γ(HS))与时间的关系图可以很好地拟合为四个络合物的单个指数。还使用协作(依赖于伽马(HS)的衰减)松弛模型分析了松弛数据。发现配合物1显示出比其他三种配合物更低的协同性。此外,与在类似条件下的FeN6配合物相比,这四种配合物在类似于28-70 K范围内观察到的HS-> LS弛豫时间相对较长。 [Fe(dppen)(2)Cl-2]的弛豫动力学。 nCHCl(3)(1)似乎受晶格中溶剂分子数量(n)的影响。可变温度磁化率数据表明,只有当每个配合物都具有完全两个溶剂分子时,才可以完成从高温HS到低温LS的转化。 [Fe(dppen)(2)Br-2]的X射线结构结果。给出了149和193 K的2CHCl(3)(3),即在LS到HS(T-1 / 2 = 175 K)转化率以下和之上。在这两个温度下,复合物3的单斜空间群P2(1)/ c在149 K时具有a = 11.494(16)埃,b = 12.895(14)埃,c = 17.49(2)埃的晶胞,Z =2。使用3434个观察到的[F-0> 4 sigma(F-0)]反射改进149 K数据集,得到R = 0.0816和Rw = 0.1014。从149 K到193 K,平均Fe-P键长度增加了0.27埃,而Fe-Br键仅增加了0.033埃。 Fe-P键长度的相对较大变化必须在很大程度上负责从亚稳态HS态到稳定LS态隧穿的缓慢速率。 [参考:40]

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