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温度依赖型溶剂变色探针在离子液体及其(离子液体+水)混合物中的行为。

Temperature-dependent solvatochromic probe behavior within ionic liquids and (ionic liquid + water) mixtures.

机构信息

Department of Chemistry, Indian Institute of Technology, Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

J Phys Chem B. 2010 Jun 24;114(24):8118-25. doi: 10.1021/jp102217u.

Abstract

Spectroscopic responses of absorbance probes, betaine dye 33, N,N-diethyl-4-nitroaniline, and 4-nitroaniline, and fluorescence dipolarity probes, pyrene (Py) and pyrene-1-carboxaldehyde (PyCHO) within ionic liquids (ILs) 1-butyl-3-methylimidazolium hexafluorophosphate ([bmim][PF6]) and 1-butyl-3-methylimidazolium tetrafluoroborate ([bmim][BF4]), and aqueous mixtures of [bmim][BF4] are used to assess the changes in important physicochemical properties with temperature in the range 10-90 degrees C. ETN obtained from betaine dye 33, indicating dipolarity/polarizability and/or hydrogen bond donating (HBD) acidity, decreases linearly with increasing temperature within the two ILs. Changes in Kamlet-Taft parameters dipolarity/polarizability (pi*), HBD acidity (alpha), and HB accepting (HBA) basicity (beta) with temperature show interesting trends. While pi* and alpha decrease linearly with increasing temperature within the two ILs, beta appears to be independent of the temperature. Similar to ETNand pi*, the first-to-third band intensity ratio of probe Py also decreases linearly with increasing temperature within the ILs. The lowest energy fluorescence maxima of PyCHO, though it decreases significantly within water as the temperature is increased from 10 to 90 degrees C, it does not change within the two ILs investigated. The temperature dependence of the dipolarity/polarizability as manifested via betaine dye 33 behavior is found to be more within the aqueous mixtures of [bmim][BF4] as compared to that within neat [bmim][BF4] or neat water. The sensitivity of pi* toward temperature increases as IL is added to water and that of alpha decreases. The temperature dependent Py behavior shows no clear-cut trend within aqueous mixtures of [bmim][BF4]; insensitivity of the PyCHO response toward temperature change is reasserted within aqueous IL mixtures. All-in-all, the temperature-dependent behavior of solvatochromic probes within [bmim][PF6], [bmim][BF4], and aqueous mixtures of [bmim][BF4] is found to depend on the identity of the probe.

摘要

吸光探针、甜菜碱染料 33、N,N-二乙基-4-硝基苯胺和 4-硝基苯胺以及荧光偶极探针芘(Py)和芘-1-甲醛(PyCHO)在离子液体(ILs)1-丁基-3-甲基咪唑六氟磷酸盐([bmim][PF6])和 1-丁基-3-甲基咪唑四氟硼酸盐([bmim][BF4])以及[bmim][BF4]的水混合物中的光谱响应用于评估在 10-90°C 温度范围内重要物理化学性质的变化。从甜菜碱染料 33 获得的 ETN,表明偶极/极化率和/或氢键供体(HBD)酸度,在两种 ILs 中随温度线性降低。随温度变化的 Kamlet-Taft 参数偶极/极化率(pi*)、HBD 酸度(alpha)和 HB 接受(HBA)碱性(beta)显示出有趣的趋势。虽然在两种 ILs 中 pi和 alpha 随温度线性降低,但 beta 似乎与温度无关。与 ETN 和 pi类似,探针 Py 的第一至第三带强度比也随温度在 ILs 中线性降低。尽管 PyCHO 的最低能量荧光最大值在水中随着温度从 10°C 升高到 90°C 显著降低,但在研究的两种 IL 中没有变化。通过甜菜碱染料 33 行为表现出的偶极/极化率的温度依赖性在[bmim][BF4]的水混合物中比在纯[bmim][BF4]或纯水中更为明显。向水中添加 IL 会增加 pi*对温度的敏感性,而降低 alpha 的敏感性。在[bmim][BF4]的水混合物中,Py 的温度依赖性行为没有明显的趋势;在水相 IL 混合物中,PyCHO 响应对温度变化的不敏感性得到再次证实。总的来说,在[bmim][PF6]、[bmim][BF4]和[bmim][BF4]的水混合物中,溶剂化探针的温度依赖性行为取决于探针的特性。

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