首页> 外文期刊>Journal of Chemical Sciences >Excited state intramolecular charge transfer reaction in non-aqueous reverse micelles: Effects of solvent confinement and electrolyte concentration
【24h】

Excited state intramolecular charge transfer reaction in non-aqueous reverse micelles: Effects of solvent confinement and electrolyte concentration

机译:非水反胶团中的激发态分子内电荷转移反应:溶剂限制和电解质浓度的影响

获取原文
获取外文期刊封面目录资料

摘要

Steady state and time resolved fluorescence emission spectroscopy have been employed to investigate the effects of solvent confinement and electrolyte concentration on excited state intramolecular charge transfer (ICT) reaction in 4-(1-pyrrolidinyl) benzonitrile (P5C), 4-(1-piperidinyl) benzonitrile (P6C), and 4-(1-morpholenyl) benzonitrile (M6C) in AOT-heptane/acetonitrile and AOT-heptane/methanol reverse micelles. Dramatic confinement effects have been revealed via a huge reduction (factor ranging between 100 and 20) over bulk values of both equilibrium and reaction rate constants. A strong dependence on the size of the confinement (e?‘?e?‘?) of these quantities has also been observed. e?‘?e?‘? dependent average static dielectric constant, viscosity and solvation time-scale have been determined. Estimated dielectric constants for confined methanol and acetonitrile show a decrease from the respective bulk values by a factor of 3-5 and viscosities increased by a factor of 2 at the highest e?‘?e?‘? considered. Addition of electrolyte at e?‘?e?‘? = 5 for acetonitrile is found to produce a linear increase of confined solvent viscosity but leads to a non-monotonic electrolyte concentration dependence of average solvation time. Reaction rate constant is found to decrease linearly with electrolyte concentration for P5C and P6C but non-monotonically for M6C, the highest decrease for all the molecules being a?? 20% over the value in the absence of added electrolyte in the solvent pool. The observed huge reduction in reaction rate constant is attributed to the effects of decreased solution polarity, enhanced viscosity and slowed-down solvent reorganization of the solvent under confinement in these non-aqueous reverse micelles.
机译:稳态和时间分辨荧光发射光谱已用于研究溶剂限制和电解质浓度对4-(1-吡咯烷基)苯甲腈(P5C),4-(1-哌啶基)中的激发态分子内电荷转移(ICT)反应的影响)AOT /正庚烷/乙腈和AOT /正庚烷/甲醇反胶束中的苯甲腈(P6C)和4-(1-吗啉基)苄腈(M6C)。通过大大降低平衡系数和反应速率常数的体积值(系数在100到20之间),揭示了显着的限制作用。还观察到了对这些数量的约束大小(e?'?e?'?)的强烈依赖。 e?‘?e?’已经确定了依赖于平均静态介电常数,粘度和溶剂化时间尺度。在最高e?'?e?'?下,估计的密闭甲醇和乙腈的介电常数比各自的体积值降低3-5倍,而粘度则提高2倍。考虑过的。在e?'?e?'?处添加电解质对于乙腈而言,= 5会导致限制溶剂粘度线性增加,但会导致平均溶剂化时间与非单调电解质浓度有关。对于P5C和P6C,发现反应速率常数随电解质浓度线性降低,而对于M6C,反应速率常数非单调地降低,所有分子的最大降低是α?比溶剂池中不添加电解质时的值高20%。观察到的反应速率常数的大幅降低归因于这些非水反胶团中受限的溶液极性降低,粘度增加和溶剂重组减慢的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号