Agra R, Trizac E, Bocquet L
Laboratoire de Physique Théorique, Université de Paris XI, Bâtiment 210, 91405, Orsay Cédex, France.
Eur Phys J E Soft Matter. 2004 Dec;15(4):345-57. doi: 10.1140/epje/i2004-10052-x. Epub 2004 Nov 29.
The electrostatic potential of a highly charged disc (clay platelet) in an electrolyte is investigated in detail. The corresponding non-linear Poisson-Boltzmann (PB) equation is solved numerically, and we show that the far-field behaviour (relevant for colloidal interactions in dilute suspensions) is exactly that obtained within linearized PB theory, with the surface boundary condition of a uniform potential. The latter linear problem is solved by a new semi-analytical procedure and both the potential amplitude (quantified by an effective charge) and potential anisotropy coincide closely within PB and linearized PB, provided the disc bare charge is high enough. This anisotropy remains at all scales; it is encoded in a function that may vary over several orders of magnitude depending on the azimuthal angle under which the disc is seen. The results allow to construct a pair potential for discs interaction, that is strongly orientation dependent.
详细研究了电解质中高电荷圆盘(粘土薄片)的静电势。对相应的非线性泊松-玻尔兹曼(PB)方程进行了数值求解,结果表明,远场行为(与稀悬浮液中的胶体相互作用相关)与线性化PB理论所得到的完全一致,其表面边界条件为均匀电势。后一个线性问题通过一种新的半解析方法求解,只要圆盘裸电荷足够高,电势振幅(由有效电荷量化)和电势各向异性在PB理论和线性化PB理论中都非常接近。这种各向异性在所有尺度上都存在;它被编码在一个函数中,该函数可能会根据观察圆盘的方位角在几个数量级上变化。这些结果有助于构建圆盘相互作用的对势,该对势强烈依赖于取向。