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基于内酰胺的布朗斯特酸性离子液体的物理化学性质研究。

Investigation of physicochemical properties of lactam-based Brønsted acidic ionic liquids.

作者信息

Du Zhengyin, Li Zuopeng, Guo Shu, Zhang Juan, Zhu Laiying, Deng Youquan

机构信息

Centre for Green Chemistry and Catalysis, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, PRC.

出版信息

J Phys Chem B. 2005 Oct 20;109(41):19542-6. doi: 10.1021/jp0529669.

Abstract

Novel lactam-cation-based Brønsted acid ionic liquids (ILs) were prepared through a simple and atom-economic neutralization reaction between a lactam, such as caprolactam and butyrolactam, and a Brønsted acid, HX, where X is BF4-, CF3COO-, phCOO-, ClCH2COO-, NO3-, or H2PO4-. The density, viscosity, acidic scale, electrochemical window, temperature dependency of ionic conductivity, and thermal property of these ILs were measured and investigated in detail. The results show that protonated caprolactam tetrafluoroborate (CPBF) has a relatively strong acidity with -0.22 of Hammett acidic scale H0 and caprolactam trifluoroacetate (CPTFA) and pyrrolidonium trifluoroacetate (PYTFA) ILs possess very low viscosities, that is, 28 cP and 11 cP, respectively. An investigation of thermal property showed that a wide liquid range (up to -90 degrees C), moderate thermal stability (up to 249 degrees C for 10% of decomposition), and complex polymorphism were observed in these ILs. In comparison to imidazolium-cation-based ILs, the lactam-cation-based Brønsted acid ILs have a relatively lower cost, lower toxicity, and comparable ion conductivity and heat storage density (more than 200 MJ/m3). They have wide applicable perspectives for fuel cell devices, thermal transfer fluids, and acid-catalyzed reaction media and catalysts as replacements of conventional inorganic acids.

摘要

通过己内酰胺、丁内酰胺等内酰胺与布朗斯特酸HX(其中X为BF4-、CF3COO-、phCOO-、ClCH2COO-、NO3-或H2PO4-)之间简单且原子经济的中和反应,制备了新型基于内酰胺阳离子的布朗斯特酸性离子液体(ILs)。详细测量并研究了这些离子液体的密度、粘度、酸度标度、电化学窗口、离子电导率的温度依赖性以及热性能。结果表明,质子化己内酰胺四氟硼酸盐(CPBF)具有相对较强的酸度,哈米特酸度标度H0为-0.22,己内酰胺三氟乙酸盐(CPTFA)和吡咯烷鎓三氟乙酸盐(PYTFA)离子液体的粘度非常低,分别为28 cP和11 cP。热性能研究表明,这些离子液体具有较宽的液体范围(高达-90℃)、适度的热稳定性(10%分解时高达249℃)以及复杂的多晶型现象。与基于咪唑鎓阳离子的离子液体相比,基于内酰胺阳离子的布朗斯特酸性离子液体成本相对较低、毒性较小,且离子电导率和储热密度相当(超过200 MJ/m3)。作为传统无机酸的替代品,它们在燃料电池装置、热传递流体以及酸催化反应介质和催化剂方面具有广阔的应用前景。

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