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Dipolar Order in Molecular Fluids: II. Molecular Influence

机译:分子流体中的偶极级:II。分子影响

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The influence on the short-range packing in dipolar fluids by molecular shape and by additional higher order electrostatic moments has been investigated by molecular dynamic simulations. The dipole polarization was found to decrease as the particles were elongated parallel to the dipole and to increase for elongation perpendicular to the dipole, eventually forming a nematic order. The addition of a quadrupole lead to a reduction of the polarization, and the influence of an axial octupole was weaker and more complex. Both a decrease and an increase of the polarization is possible depending on the relative dipole-dipole and octupole-octupole interaction strengths and the relative direction of the symmetry axes of the moments. These observations were attributed to the different parity of a dipole and a quadrupole and the same parity of a dipole and an axial octupole under reflection. In addition, further insights into the formation of dipole polarization were obtained. Short polar and long equatorial radii and strong dipole-dipole interaction are particle properties that promote a fluid with a high dipole polarization.
机译:通过分子动力学模拟研究了分子形状和其他高阶静电矩对偶极流体中短程堆积的影响。发现当粒子平行于偶极子伸长时,偶极子极化减小,而垂直于偶极子的伸长率增加,最终形成向列序。四极杆的添加导致极化的减小,轴向八极杆的影响更弱且更复杂。根据相对偶极-偶极和八极-八极的相互作用强度以及力矩对称轴的相对方向,极化的减小和增大都是可能的。这些观察结果归因于在反射下偶极和四极的奇偶性以及偶极和轴向八极的奇偶性。另外,获得了对偶极极化形成的进一步了解。极短的赤道半径和较长的赤道半径以及强的偶极-偶极相互作用是促进具有高偶极极化的流体的粒子特性。

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