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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 >A high-pressure iron K-edge X-ray absorption spectral study of the spin-state crossover in {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}I-2 and {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)
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A high-pressure iron K-edge X-ray absorption spectral study of the spin-state crossover in {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}I-2 and {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)

机译:高压铁K边缘X射线吸收光谱研究{Fe [HC(3,5-(CH3)(2)pz)(3)](2)} I-2和{Fe [HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)

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The room temperature iron K-edge X-ray absorption near edge structure spectra of {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}I-2 and {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2) have been measured between ambient and 88 and 94 kbar, respectively, in an opposed diamond anvil cell. The iron(II) in {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}I-2 undergoes the expected gradual spin-state crossover from the high-spin state to the low-spin state with increasing pressure. In contrast, the iron(II) in {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2) remains high-spin between ambient and 78 kbar and is only transformed to the low-spin state at an applied pressure of between 78 and 94 kbar. No visible change is observed in the preedge peak in the spectra of {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}I-2 with increasing pressure, whereas the preedge peak in the spectra of {Fe[HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2) changes as expected for a high-spin to low-spin crossover with increasing pressure. The difference in the spin-state crossover behavior of these two complexes is likely related to the unusual behavior of {Fe[HC(3,5-(CH3)(2)PZ)(3)](2)}(BF4)(2) upon cooling. [References: 25]
机译:{Fe [HC(3,5-(CH3)(2)pz)(3)](2)} I-2和{Fe [HC(在相对的金刚石砧盒中,分别在环境温度和88 kbar与94 kbar之间测量了3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)。 {Fe [HC(3,5-(CH3)(2)pz)(3)](2)} I-2中的铁(II)经历了从高自旋态到高自旋态的预期逐步自旋态交叉低自旋状态,压力增加。相反,{Fe [HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)中的铁(II)在环境和78 kbar之间保持高自旋。仅在78 kbar至94 kbar的施加压力下,油压才会转变为低转速状态。在{Fe [HC(3,5-(CH3)(2)pz)(3)](2)} I-2的光谱中,随着压力的增加,在峰前没有观察到可见变化,而在{Fe [HC(3,5-(CH3)(2)pz)(3)](2)}(BF4)(2)的光谱随压力的增加从高旋转到低旋转交叉变化。这两个配合物的自旋态交叉行为的差异可能与{Fe [HC(3,5-(CH3)(2)PZ)(3)](2)}(BF4)( 2)冷却后。 [参考:25]

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