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首页> 外文期刊>Journal of Porphyrins and Phthalocyanines >Solvent-dependent rotational phenomena in μ-nitrido-[2,3,9,10,16,17,23,24-octa(n-pentoxy)phthalocyaninato]diiron complex
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Solvent-dependent rotational phenomena in μ-nitrido-[2,3,9,10,16,17,23,24-octa(n-pentoxy)phthalocyaninato]diiron complex

机译:μ-nitrido-[2,3,9,10,16,17,23,24-八(正戊氧基)邻苯二甲腈基]二铁配合物的溶剂依赖性旋转现象

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The syntheses and spectroscopic properties of new μ-nitrido-[2,3,9,10,16,17,23,24-octa(n-pentoxy)phthalocyaninato]diiron complexes in Fe(IV)Fe(IV) and Fe(+3.5)Fe(+3.5) oxidation states are reported. UV-vis spectra of both dimers demonstrate a strong solvatochromic behavior. UV-vis and 1H NMR data reveal the presence of two different forms for both oxidation states in apolar and polar solvents. Fe K-edge X-ray absorption near-edge structures (XANES) spectra of two Fe(IV)Fe(IV) forms also show a significant difference: pre-edge feature in toluene is shifted to higher energy compared to that in tetrahydrofuran. The difference of properties between two forms is explained by solvent-dependent mutual orientation of two phthalocyanine rings. A strong sharp Q-band in UV-vis spectrum at 642 nm and small splitting of aromatic protons (0.18 ppm) in 1H NMR spectrum observed in apolar solvents (toluene, benzene, cyclohexane) imply that the green form is in moresymmetric D4d configuration. In turn, a broad multipreaked Q-band and relatively high splitting of aromatic protons (0.56 ppm) observed in THF and CH2Cl2 for the blue form are in agreement with less symmetric D4 conformation. The Fe(μ-N)Fe structure is relatively rigid showing no free rotation at room temperature in NMR time scale. Tuning of the structure of N-bridged diiron macrocyclic complexes by introduction of substituents and modification of electronic properties of the complexes via conformation changes might be useful for optimization of their catalytic properties as well as for their potential application in sensors.
机译:Fe(IV)Fe(IV)和Fe(IV)中新的μ-nitrido-[2,3,9,10,16,17,23,24-八(正戊氧基)邻苯二甲酞菁]二铁配合物的合成及光谱性质报告了+3.5)Fe(+3.5)氧化态。两个二聚体的紫外-可见光谱显示出很强的溶剂变色行为。 UV-vis和1H NMR数据揭示了非极性和极性溶剂中两种氧化态的两种不同形式的存在。两种Fe(IV)Fe(IV)形式的Fe K边缘X射线吸收近边缘结构(XANES)光谱也显示出显着差异:与四氢呋喃相比,甲苯中的前边缘特征转移到了更高的能量。两种形式之间性质的差异是通过两个酞菁环的溶剂依赖性相互取向来解释的。在非极性溶剂(甲苯,苯,环己烷)中观察到的642 nm的UV-vis光谱中强烈的清晰Q带和1H NMR光谱中的芳族质子(0.18 ppm)的小裂痕表明绿色形式的D4d构型更对称。反过来,在蓝色形式的THF和CH2Cl2中观察到的宽复峰Q带和相对较高的芳族质子分裂度(0.56 ppm)与较低的D4构象一致。 Fe(μ-N)Fe结构是相对刚性的,在NMR时间范围内在室温下没有自由旋转。通过引入取代基来调节N-桥联二铁大环配合物的结构,以及通过构象变化来改变配合物的电子性能,可能对优化其催化性能以及在传感器中的潜在应用很有用。

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