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Novel superacidic ionic liquid catalysts for arene functionalization.

机译:用于芳烃官能化的新型超酸性离子液体催化剂。

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There is a continuing interest in the subject of arene carbonylation, especially in strong acids and environmentally-benign alternatives are sought to HF/BF3 and to AlCl3 as conversion agents. Ionic liquids offer a powerful solvent for useful conversion agents such as aluminum chloride. The IL's permit AlCl3 to be used at lower HCl partial pressures than with other solvents. The superior reactivity demonstrated by acidic, chloroaluminate IL's is probably due to their enhanced solvation power for HCl and CO. Addition of HCl gas increased reactivity of the system by forming Bronsted acids, and toluene carbonylation is a Bronsted demanding reaction. It was found that reaction is stoichiometric in Al species and only intrinsically acidic IL's are active for toluene carbonylation, therefore it was possible to correlate observed conversion with predicted amounts of Lewis + Bronsted acids. Molecular modeling provided information about the different species present in these IL's and predicted 1H NMR, and 27Al NMR spectrum. Predictions suggested that three types of HCI species are present; and these predictions were confirmed using data of 13C-labeled acetone and its 13C-NMR spectra. These data showed that only one of the three types of HCl in the IL were super acidic. Reactivity towards arene formylation can be tuned by adjusting the ligands R and R' in the organic cation and by changing the anion. This reactivity tuning can be exploited in a process where high acidity is required for the conversion of substrate but where separation of product from IL is facilitated by low acidity.
机译:在芳烃羰基化的主题中,特别是在强酸中,一直存在着持续的兴趣,并且寻求HF / BF 3和AlCl 3作为转化剂的对环境有益的替代物。离子液体为有用的转化剂(例如氯化铝)提供了强大的溶剂。 IL允许AlCl3在比其他溶剂更低的HCl分压下使用。酸性氯铝酸盐IL表现出的优异反应性可能是由于它们增强的HCl和CO溶剂化能力。加入HCl气体通过形成布朗斯台德酸提高了系统的反应性,而甲苯羰基化是布朗斯台德需要的反应。已经发现,在Al物种中反应是化学计量的,并且仅固有酸性IL对甲苯羰基化具有活性,因此可以将观察到的转化率与预测量的路易斯+布朗斯台德酸相关。分子建模提供了有关这些IL中存在的不同物质以及预测的1H NMR和27Al NMR光谱的信息。预测表明存在三种类型的HCl。这些预言由13C标记的丙酮数据及其13C-NMR光谱证实。这些数据表明,IL中三种HCl中只有一种是超酸性的。可以通过调节有机阳离子中的配体R和R'并通过改变阴离子来调节对芳烃甲酰化的反应性。这种反应性调节可用于需要高酸度以转化底物但通过低酸度促进产物与IL分离的过程中。

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