...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Probing the early stages of solvation of cis-pinate dianions by water, acetonitrile, and methanol: a photoelectron spectroscopy and theoretical study
【24h】

Probing the early stages of solvation of cis-pinate dianions by water, acetonitrile, and methanol: a photoelectron spectroscopy and theoretical study

机译:探索水,乙腈和甲醇对顺式-羽状二酸酯的早期溶解:光电子能谱和理论研究

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

cis-Pinic acid is one of the most important oxidation products of alpha-pinene - a key monoterpene compound in biogenic emission processes. Molecular level understanding of its interaction with water in cluster formation is an important and necessary prerequisite for ascertaining its role in the aerosol formation processes. In this work, we studied the structures and energetics of the solvated clusters of cis-pinate (cis-PA(2-)), the doubly deprotonated dicarboxylate of cis-pinic acid, with H2O, CH3OH, and CH3CN by negative ion photoelectron spectroscopy and ab initio theoretical calculations. We found that cis-PA(2-) prefers being solvated alternately on the two -CO2- groups with increase of solvent coverage, a well-known solvation pattern that has been observed in microhydrated linear dicarboxylate dianion (DCn2-) clusters. Experiments and calculations further reveal an intriguing feature for the existence of the asymmetric type isomers for cis-PA(2-)((HO)-O-2)(2) and cis-PA(2-)(CH3OH)(2), in which both solvent molecules interact with only one of the -CO2- groups, a phenomenon that has not been observed in DCn2- water clusters and exhibits that the subtle effect of the rigid four-membered carbon ring brought on the cis-PA(2-) solvation. The dominant interactions between cis-PA(2-) and solvent molecules form bidentate O- center dot center dot center dot H-O H-bonds for H2O, O- center dot center dot center dot H-C and O- center dot center dot center dot H-C H-bonds for CH3OH, and tridentate O- center dot center dot center dot H-C H-bonds for CH3CN. The formation of inter-solvent H-bonds between H2O and CH3CN is found to be favorable in mixed solvent clusters, different from that between H2O and CH3OH. These findings have important implications for understanding the mechanism of cluster growth and the formation of atmospheric organic aerosols, as well as for rationalizing the nature of structure-function relationship of proteins containing carboxylate groups in various solvent environments.
机译:顺式吡啶酸是α-pine烯的最重要的氧化产物之一,α-pine烯是生物排放过程中的关键单萜化合物。分子水平了解其与水在团簇形成中的相互作用是确定其在气溶胶形成过程中的作用的重要且必要的先决条件。在这项工作中,我们通过负离子光电子能谱研究了H2O,CH3OH和CH3CN的顺式松酸酯(cis-PA(2-)),顺式松酸双去质子化的二羧酸二盐的溶剂化簇的结构和能级以及从头算起的理论计算。我们发现,随着溶剂覆盖率的增加,顺式-PA(2-)倾向于在两个-CO2-基团上交替溶剂化,这是在微水合线性二羧酸双阴离子(DCn2-)簇中观察到的众所周知的溶剂化模式。实验和计算进一步揭示了cis-PA(2-)((HO)-O-2)(2)和cis-PA(2-)(CH3OH)(2)不对称型异构体的存在的有趣特征。 ,其中两个溶剂分子仅与一个-CO2-基团相互作用,这种现象在DCn2-水团簇中未观察到,并且表现出刚性四元碳环的微妙作用带给了顺式PA( 2)溶剂化。顺式PA(2-)与溶剂分子之间的主要相互作用形成了H2O,O-中心点中心点HC和O-中心点中心点HC的双齿O-中心点中心点中心点HO H键CH3OH的H键和CH3CN的三齿O型中心点中心点中心点HC H键。发现在H2O和CH3CN之间的溶剂间氢键的形成在混合溶剂簇中是有利的,这与在H2O和CH3OH之间的形成不同。这些发现对于理解簇生长和大气有机气溶胶形成的机理,以及使各种溶剂环境中含羧酸根基团的蛋白质的结构-功能关系的性质合理化具有重要意义。

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