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质子离子液体中的氘核四极耦合常数和重取向相关时间

Deuteron quadrupole coupling constants and reorientational correlation times in protic ionic liquids.

作者信息

Strauch Matthias, Bonsa Anne-Marie, Golub Benjamin, Overbeck Viviane, Michalik Dirk, Paschek Dietmar, Ludwig Ralf

机构信息

Universität Rostock, Institut für Chemie, Abteilung für Physikalische Chemie, Dr.-Lorenz-Weg 1, 18059 Rostock, Germany.

出版信息

Phys Chem Chem Phys. 2016 Jul 21;18(27):17788-94. doi: 10.1039/c6cp01462c. Epub 2016 Apr 12.

Abstract

We describe a method for the accurate determination of deuteron quadrupole coupling constants χD for N-D bonds in triethylammonium-based protic ionic liquids (PILs). This approach was first introduced by Wendt and Farrar for O-D bonds in molecular liquids, and is based on the linear relationship between the deuteron quadrupole coupling constants χD, and the proton chemical shifts δ(1)H, as obtained from DFT calculated properties in differently sized clusters of the compounds. Thus the measurement of δ(1)H provides an accurate estimate for χD, which can then be used for deriving reorientational correlation-times τND, by means of NMR deuteron quadrupole relaxation time measurements. The method is applied to pure PILs including differently strong interacting anions. The obtained χD values vary between 152 and 204 kHz, depending on the cation-anion interaction strength, intensified by H-bonding. We find that considering dispersion corrections in the DFT-calculations leads to only slightly decreasing χD values. The determined reorientational correlation times indicate that the extreme narrowing condition is fulfilled for these PILs. The τc values along with the measured viscosities provide an estimate for the volume/size of the clusters present in solution. In addition, the correlation times τc, and the H-bonded aggregates were also characterized by molecular dynamics (MD) simulations.

摘要

我们描述了一种用于准确测定三乙铵基质子离子液体(PILs)中N-D键的氘核四极耦合常数χD的方法。这种方法最初是由温特和法拉尔针对分子液体中的O-D键引入的,它基于氘核四极耦合常数χD与质子化学位移δ(1)H之间的线性关系,这些关系是从化合物不同大小簇的密度泛函理论(DFT)计算性质中获得的。因此,δ(1)H的测量为χD提供了准确的估计值,然后可通过核磁共振氘核四极弛豫时间测量来用于推导重取向相关时间τND。该方法应用于包括不同强相互作用阴离子的纯PILs。根据阳离子-阴离子相互作用强度,通过氢键增强,获得的χD值在152至204 kHz之间变化。我们发现,在DFT计算中考虑色散校正只会导致χD值略有下降。所确定的重取向相关时间表明这些PILs满足极端窄化条件。τc值与测得的粘度一起为溶液中存在的簇的体积/大小提供了估计。此外,相关时间τc和氢键聚集物也通过分子动力学(MD)模拟进行了表征。

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