节点文献

Raman investigation of hydration structure of iodide and iodate

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 刘喆赵洪亮郎鸿志王莹李占龙门志伟汪胜晗孙成林

【Author】 Zhe Liu;Hong-Liang Zhao;Hong-Zhi Lang;Ying Wang;Zhan-Long Li;Zhi-Wei Men;Sheng-Han Wang;Cheng-Lin Sun;Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), College of Physics, Jilin University;Coherent Light and Atomic and Molecular Spectroscopy Laboratory, College of Physics, Jilin University;College of Aviation Foundation, Aviation University of Air Force;

【通讯作者】 汪胜晗;孙成林;

【机构】 Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), College of Physics, Jilin UniversityCoherent Light and Atomic and Molecular Spectroscopy Laboratory, College of Physics, Jilin UniversityCollege of Aviation Foundation, Aviation University of Air Force

【摘要】 In the troposphere,the destruction of ozone and the formation of new particles are closely related to the iodine content,which mainly comes from iodide(I-) and iodate(IO3-) in the seawater.Therefore,understanding the interactions between I-,IO3-and water molecules plays a certain role in alleviating the destruction of the ozone layer.Raman spectroscopy is commonly used to obtain the information of the interaction between I-,IO3-and water molecules quickly and accurately.Herein,the effect of I-and IO3-on the change in Raman band characteristics of water is investigated to reflect the associated intermolecular interactions change.With the addition of the two ions,the Raman band corresponding to OH stretching vibration moves towards the high wavenumber,indicating the formation of hydration structure.The narrowing of the Raman band from OH stretching vibration under weak hydrogen bond agrees well with the hydrogen bond variation,while the abnormal broadening of the Raman band from OH stretching vibration under strong hydrogen bond indicates the formation of H-down structure.With the increase of ions concentration,the frequency shift of the Raman band from OH stretching vibration under both weak and strong hydrogen bonds becomes more apparent.Meanwhile,the frequency shift of I-is more obvious than that of IO3-,which indicates that I-is more likely to form the hydration structure with water than IO3-.These results contribute to analyzing the different interactions between I--water and IO3--water,then helping to prevent ozone depletion.

【Abstract】 In the troposphere,the destruction of ozone and the formation of new particles are closely related to the iodine content,which mainly comes from iodide(I-) and iodate(IO3-) in the seawater.Therefore,understanding the interactions between I-,IO3-and water molecules plays a certain role in alleviating the destruction of the ozone layer.Raman spectroscopy is commonly used to obtain the information of the interaction between I-,IO3-and water molecules quickly and accurately.Herein,the effect of I-and IO3-on the change in Raman band characteristics of water is investigated to reflect the associated intermolecular interactions change.With the addition of the two ions,the Raman band corresponding to OH stretching vibration moves towards the high wavenumber,indicating the formation of hydration structure.The narrowing of the Raman band from OH stretching vibration under weak hydrogen bond agrees well with the hydrogen bond variation,while the abnormal broadening of the Raman band from OH stretching vibration under strong hydrogen bond indicates the formation of H-down structure.With the increase of ions concentration,the frequency shift of the Raman band from OH stretching vibration under both weak and strong hydrogen bonds becomes more apparent.Meanwhile,the frequency shift of I-is more obvious than that of IO3-,which indicates that I-is more likely to form the hydration structure with water than IO3-.These results contribute to analyzing the different interactions between I--water and IO3--water,then helping to prevent ozone depletion.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11374123 and 12004132);Science and Technology Planning Project and Talent Project of Jilin Province,China (Grant Nos. 20170204076GX, 20180101006JC, 20180101238JC, 20190201260JC, 20200201179JC, 2019C0355-5,JJKH20200935KJ, and JJKH20200936KJ)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年04期
  • 【分类号】O641.3
  • 【下载频次】25
节点文献中: 

本文链接的文献网络图示:

本文的引文网络