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两亲性胶体颗粒的雅努斯平衡。

Janus balance of amphiphilic colloidal particles.

作者信息

Jiang Shan, Granick Steve

机构信息

Department of Materials Science and Engineering, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Chem Phys. 2007 Oct 28;127(16):161102. doi: 10.1063/1.2803420.

Abstract

We introduce the notion of "Janus balance" (J), defined as the dimensionless ratio of work to transfer an amphiphilic colloidal particle (a "Janus particle") from the oil-water interface into the oil phase, normalized by the work needed to move it into the water phase. The J value can be calculated simply from the interfacial contact angle and the geometry of Janus particles, without the need to know the interfacial energy. It is demonstrated that Janus particles of the same chemical composition but different geometries will have the highest adsorption energy when J = 1. Even for particles of homogeneous chemical makeup, the Janus balance concept can be applied when considering the contact angle hysteresis in desorbing the particle from equilibrium into the water or oil phase. The Janus balance concept may enable predictions of how a Janus particle behaves with respect to efficiency and function as a solid surfactant, as the Janus balance of solid surfactants is the analog of the classical hydrophile-lipophile balance of small surfactant molecules.

摘要

我们引入了“两面神平衡”(J)的概念,它被定义为将两亲性胶体颗粒(“两面神颗粒”)从油水界面转移到油相所需功与将其转移到水相所需功的无量纲比值。J值可以仅根据界面接触角和两面神颗粒的几何形状来计算,而无需知道界面能。结果表明,具有相同化学成分但不同几何形状的两面神颗粒在J = 1时将具有最高的吸附能。即使对于化学成分均匀的颗粒,在考虑将颗粒从平衡状态解吸到水相或油相时的接触角滞后现象时,也可以应用两面神平衡概念。由于固体表面活性剂的两面神平衡类似于小表面活性剂分子的经典亲水亲油平衡,因此两面神平衡概念可能有助于预测两面神颗粒作为固体表面活性剂在效率和功能方面的行为。

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