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首页> 外文期刊>Inorganica Chimica Acta >Electronic structure of [Ga-2(tren)(2)(CA(sq,cat))](BPh4)(2)(BF4): An EPR, ENDOR, and density functional study
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Electronic structure of [Ga-2(tren)(2)(CA(sq,cat))](BPh4)(2)(BF4): An EPR, ENDOR, and density functional study

机译:[Ga-2(tren)(2)(CA(sq,cat))](BPh4)(2)(BF4)的电子结构:EPR,ENDOR和密度泛函研究

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摘要

The bimetallic [M1M2(tren)(2)(CA(n))](m+) series, where M = Ga-III or Cr-III and CA is the chloranilate ligand which can take on diamagnetic (CA(cat,cat))(4) or paramagnetic (CA(sq,cat))(3) forms, comprises an electronically diverse series of compounds ranging from the closed-shell [Ga-2(tren)(2)(CA(cat,cat))](2+) to the S = 5/2 ground state of [Cr-2(tren)(2)(CA(sq,cat))](3+). This report deals with the interpretation of the EPR and ENDOR spectra of [Ga-2(tren)(2)(CA(sq,cat))](BPh4)(2)(BF4) (2) and the related derivative [Ga-2(tren)(2)(DHBQ)](BPh4)(2)(BF4) (2a) (where DHBQ is the fully deprotonated trianionic form of 2,5-dihydroxy-1,4-benzoquinone) in an effort to further characterize the electronic structure of this radical species. The X-band (similar to 9.5 GHz) EPR spectrum of complex 2 acquired in a butyronitrile/propionitrile glass at 4 K reveals a rhombic g-tensor with g(xx) = 2.0100, g(yy) = 2.0097, and g(zz) = 2.0060 with hyperfine interactions due to spin delocalization onto the two Ga nuclei (a(xx) = 4.902 G, a(yy) = 4.124 G, a(zz) = 3.167 G); the origin of the hyperfine coupling was confirmed by analysis of the room temperature spectra of complexes 2 and 2a. The low-temperature spectrum of complex 2 also indicates the presence of a triplet electronic state characterized by a g-value of 2.009 and axial zero-field splitting of D = 150 G (0.012 cm (1)) as determined from measurements carried out at both X- and W-band (similar to 95 GHz) frequencies. This triplet state is believed to arise due to a weak intermolecular Heisenberg exchange interaction between two aggregating complexes. ENDOR measurements on complex 2a at 20 K allowed for a determination of the magnitude of hyperfine coupling to the protons associated with the radical bridge as well as providing a rare example of an ENDOR signal arising from coupling to a gallium nucleus. Finally, these results were combined with literature data on the free semiquinone form of the bridging ligand in order to assess the extent to which density functional theory can predict unpaired spin density distribution in a complex molecule of this type. Although differences between theory and experiment were noted, DFT was able to provide a reasonably accurate picture of the electronic structure of this system as well as provide insight into the spin polarization mechanism(s) responsible for the observed hyperfine interactions.
机译:双金属[M1M2(tren)(2)(CA(n))](m +)系列,其中M = Ga-III或Cr-III,CA是可发生反磁性的氯苯甲酸酯配体(CA(cat,cat) )(4)或顺磁性(CA(sq,cat))(3)形式,包括一系列电子形式多样的化合物,范围从闭壳[Ga-2(tren)(2)(CA(cat,cat)) ](2+)变为[Cr-2(tren)(2)(CA(sq,cat))](3+)的S = 5/2基态。本报告涉及对[Ga-2(tren)(2)(CA(sq,cat))](BPh4)(2)(BF4)(2)及其相关衍生物[Ga]的EPR和ENDOR光谱的解释-2(tren)(2)(DHBQ)](BPh4)(2)(BF4)(2a)(其中DHBQ是2,5-二羟基-1,4-苯醌的完全去质子化的三阴离子形式),以努力进一步表征了该自由基物种的电子结构。在4 K下在丁腈/丙腈玻璃中获得的复合物2的X波段EPR谱显示g(xx)= 2.0100,g(yy)= 2.0097和g(zz )= 2.0060,由于自旋离域到两个Ga核上而具有超精细相互作用(a(xx)= 4.902 G,a(yy)= 4.124 G,a(zz)= 3.167 G);通过分析配合物2和2a的室温光谱可以确定超精细偶联的起源。配合物2的低温光谱还表明存在三重态电子态,其特征是g值为2.009,轴向零场分裂D = 150 G(0.012 cm(1)),这是根据在X和W波段(类似于95 GHz)频率。该三重态被认为是由于两个聚集复合物之间的弱分子间海森堡交换相互作用而产生的。在20 K下对复合物2a进行ENDOR测量,可以确定与自由基桥相关联的质子的超精细耦合的幅度,并提供了一个罕见的因与镓核耦合而产生的ENDOR信号的例子。最后,将这些结果与关于桥联配体的游离半醌形式的文献数据相结合,以评估密度泛函理论可以预测这种类型复杂分子中不成对的自旋密度分布的程度。尽管注意到了理论和实验之间的差异,但DFT能够提供该系统电子结构的合理准确图片,并提供了对负责观察到的超精细相互作用的自旋极化机制的深入了解。

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