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Assessment of atomic partial charge schemes for polarisation and charge transfer effects in ionic liquids

机译:评估原子性部分电荷方案对离子液体中极化和电荷转移的影响

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In this work, we assess several popular atomic partial charge schemes with the view of accurately quantifying charge distribution, dipole moments and charge transfer in routinely used ionic liquids (ILs). We investigated a series of ion pairs of imidazolium-based ILs such as [C_((1-4)))mim]X (where X = CI, BF4 and NTf2) and ionic clusters of [NMe4][BF4], [C1mim][BF4] and [C1mim]CI that were composed of two, four and eight ion pairs. Assessed partial charge schemes include restrained electrostatic potentials (RESP) employing ChelpG, Connolly and Geodesic point selection algorithms, as well as density matrix partitioning schemes including Mulliken, Lowdin and Natural Population Analysis (NPA). The quality of charge distribution was analysed using the following criteria: (1) treatment of symmetry identical atoms, (2) invariance of charge in the imidazolium ring with increasing alkyl chain and (3) recalculation to dipole moments as a measure of electronic polarisation. The RESP schemes such as Connolly and Geodesic clearly outperform the ChelpG scheme as well as the density matrix-based schemes for these three criteria. Calculated partial charges reveal that dipole moments were best represented by the RESP schemes and confirmed the presence of charge transfer in ILs to a various degree. The degree of charge transfer was dependent on anions as well as cluster size. In the ion pairs, the chloride anion showed the largest charge transfer, followed by the NTf2 and BF4 anions. In ionic clusters the charge transfer was shown to gradually converge from two to eight ion pairs in the case of the [NMe4][BF4] and [C1mim][BF4] ILs to a value, close to that for corresponding ion pairs. In contrast, charge transfer in the [C1mim]CI clusters converges to a lower value, showing an unusually strong inter-ionic bond with the chloride anion. NPA charges were found to perform poorly, with near-unity charges being retained on the anions and cations in ion pairs and ionic clusters. Mulliken and Lowdin charges were shown to be highly basis set dependent and unpredictable with marked fluctuations in partial charges and therefore their use for ILs is particularly discouraged. Ability of the partial charge schemes to capture fluctuations in the dipole moment within the ionic clusters was also examined. The Connolly and Geodesic RESP schemes were found to slightly outperform ChelpG. Evidence to suggest that chloride-based ILs might be poor model systems for ILs is also presented.
机译:在这项工作中,我们评估了几种流行的原子部分电荷方案,以准确量化常规使用的离子液体(IL)中的电荷分布,偶极矩和电荷转移。我们研究了一系列基于咪唑鎓离子的离子对,例如[C _((1-4)))mim] X(其中X = CI,BF4和NTf2)和[NMe4] [BF4],[C1mim由两个,四个和八个离子对组成的] [BF4]和[Clmim] Cl。评估的部分电荷方案包括采用ChelpG,Connolly和测地点选择算法的抑制静电势(RESP),以及包括Mulliken,Lowdin和自然人口分析(NPA)在内的密度矩阵划分方案。使用以下标准分析电荷分布的质量:(1)处理对称的相同原子;(2)咪唑鎓环中的电荷随烷基链的增加而不变;(3)重新计算偶极矩作为电子极化的量度。对于这三个标准,诸如Connolly和Geodesic之类的RESP方案明显优于ChelpG方案以及基于密度矩阵的方案。计算得出的部分电荷表明,RESP方案最能代表偶极矩,并在各种程度上证实了IL中存在电荷转移。电荷转移的程度取决于阴离子以及簇的大小。在离子对中,氯化物阴离子显示出最大的电荷转移,其次是NTf2和BF4阴离子。在离子簇中,对于[NMe4] [BF4]和[C1mim] [BF4] ILs,电荷转移显示从2个离子对逐渐收敛到8个离子对,接近相应离子对的值。相反,[C1mim] Cl簇中的电荷转移收敛到一个较低的值,显示出与氯离子非常强的离子间键合。发现NPA电荷的性能较差,在离子对和离子簇中的阴离子和阳离子上保留了近统一的电荷。已显示Mulliken和Lowdin电荷高度依赖基集,并且由于局部电荷的显着波动而无法预测,因此特别不建议将其用于IL。还检查了部分电荷方案捕获离子簇内偶极矩波动的能力。发现Connolly和Geodesic RESP方案的性能略优于ChelpG。还提供了证据表明基于氯化物的离子液体可能是离子液体的较差的模型系统。

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