首页> 外文期刊>Chemistry Select >Theoretical Investigation of the Mechanism,Performance and Kinetic Experimental Phenomena on Bronsted Acidic Ionic Liquids Catalyzed Dehydration of Sorbitol to Isosorbide
【24h】

Theoretical Investigation of the Mechanism,Performance and Kinetic Experimental Phenomena on Bronsted Acidic Ionic Liquids Catalyzed Dehydration of Sorbitol to Isosorbide

机译:对布隆酸性离子液体的机制,性能和动力学实验现象的理论研究

获取原文
获取原文并翻译 | 示例
           

摘要

The dehydration of sorbitol to isosorbide catalyzed by Bronsted acidic ionic liquids(BILs)have been investigated in detail by performing density functional theory(DFT)calculations.It is found that the double dehydration processes involve an intrinsically consistent molecular mechanism: protonation followed by cyclization,and that throughout most of elementary steps,the sulfonic group in the cation of BIL functions as a Bronsted acid/base catalyst,and the anion participates in the reaction as a nucleophile.For 1-propylsulfonic acid-3-methylimidazolium trifluoromethanesulfonate([C3SO3Hmim]CF3SO3)-catalyzed reaction,the calculated free energy barrier of the first dehydration step is higher than that of the second dehydration step,rationalizes well the experimentally observed kinetics that the latter has a larger rate constant than the former.In addition,the association energy of [C3SO3Hmim]CF3SO3 with sorbitol is larger than that with either 1,4-sorbitan or isosorbide,which is consistent with observed association equilibrium constants.BIL carrying a methyl group at the C2 position of imidazolium ring,[C3SO3Hdmim]CF3SO3,shows much better catalytic performance than other tested BILs.The effectiveness of the catalytic system is attributed to the widely distribution of hydrogen-bonding interactions in transition states and the superior nucleophilicity of the CF3SO3 anion.
机译:The dehydration of sorbitol to isosorbide catalyzed by Bronsted acidic ionic liquids(BILs)have been investigated in detail by performing density functional theory(DFT)calculations.It is found that the double dehydration processes involve an intrinsically consistent molecular mechanism: protonation followed by cyclization,在整个基本步骤中,bil阳离子中的硫基团充当bronsted Acid/碱催化剂,而阴离子则作为亲核试剂参与反应。对于1-丙基磺酸-3-甲基咪唑咪唑三甲基咪唑,三甲基甲酸甲酸甲酸酯([C3SO3HMIM]) CF3SO3) - 催化反应,第一个脱水步骤的计算出的自由能屏障高于第二个脱水步骤的反应,很好地使实验观察到的动力学合理地,后者具有比以前的速率更大的速率常数。带有山梨糖醇的[C3SO3HMIM] CF3SO3大于1,4-核糖或异氧化氢的[CF3SO3与观察到的缔合平衡常数。在咪唑环的C2位置携带甲基的BIL [C3SO3HDMIM] CF3SO3显示出比其他经过测试的BIL更好的催化性能。过渡态中的相互作用和CF3SO3阴离子的上核性。

著录项

相似文献

  • 外文文献
  • 中文文献
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