Department of Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology, 2-12-1 H57 Ohokayama, Meguro-ku, Tokyo 152-8551, Japan.
J Phys Chem A. 2011 Jun 23;115(24):6347-56. doi: 10.1021/jp112151d. Epub 2011 May 16.
Rotational motion of a nitroxide radical, peroxylamine disulfonate (PADS), dissolved in room temperature ionic liquids (RTILs) was studied by analyzing electron paramagnetic resonance spectra of PADS in various RTILs. We determined physical properties of PADS such as the hyperfine coupling constant (A), the temperature dependence of anisotropic rotational correlation times (τ(∥) and τ(⊥)), and rotational anisotropy (N). We observed that the A values remain unchanged for various RTILs, which indicates negligible interaction between the N-O PADS group and the cation of RTIL. Large N values suggest strong interaction of the negative sulfonyl parts of PADS with the cations of RTILs. Most of the τ(∥), τ(⊥), and (τ(∥)τ(⊥))(1/2) values are within the range calculated on the basis of a hydrodynamic theory with stick and slip boundary conditions. It was deduced that this theory could not adequately explain the measured results in some RTILs with smaller BF(4) and PF(6) anions.
通过分析溶解在室温离子液体(RTILs)中的氮氧自由基过氧胺二磺酸盐(PADS)的电子顺磁共振谱,研究了 PADS 在各种 RTILs 中的旋转运动。我们确定了 PADS 的物理性质,如超精细耦合常数(A)、各向异性旋转相关时间(τ(∥)和 τ(⊥))和旋转各向异性(N)的温度依赖性。我们观察到,对于各种 RTILs,A 值保持不变,这表明 N-O PADS 基团与 RTIL 的阳离子之间几乎没有相互作用。大的 N 值表明 PADS 的负磺酰部分与 RTILs 的阳离子之间存在强烈的相互作用。大多数 τ(∥)、τ(⊥)和(τ(∥)τ(⊥))(1/2)值都在基于粘滑边界条件的流体力学理论计算范围内。推断出,在一些 BF(4)和 PF(6)阴离子较小的 RTILs 中,该理论不能充分解释测量结果。