Center for Soft Condensed Matter Physics and Interdisciplinary Research, Soochow University, Suzhou, 215006, China.
Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Angew Chem Int Ed Engl. 2016 Aug 16;55(34):9952-5. doi: 10.1002/anie.201604294. Epub 2016 Jul 13.
The dynamic manipulation of colloidal particle shape offers a novel design mechanism for the creation of advanced responsive materials. To this end, we introduce a versatile new strategy for shape control of anisotropic polymeric colloidal particles. The concept utilizes temperature-sensitive absorption of a suitable solvent from a binary mixture. Specifically, increasing the temperature in the vicinity of the demixing transition of a binary mixture causes more solvent to be absorbed into the polymeric colloidal particle, which, in turn, lowers the glass transition temperature of the polymer inside the particle, with a concomitant decrease in viscosity. The balance between the internal viscosity and surface tension of the particle is thus disrupted, and the anisotropic shape of the particle shifts to become more spherical. Subsequent rapid temperature quenching can halt the process, leaving the particle with an intermediate anisotropy. The resultant shape anisotropy control provides new routes for studies of the phase transitions of anisotropic colloids and enables the fabrication of unique particles for materials applications.
胶体粒子形状的动态操纵为先进响应材料的创造提供了一种新颖的设计机制。为此,我们引入了一种用于各向异性聚合物胶体粒子形状控制的通用新策略。该概念利用了从二元混合物中吸收合适溶剂的温度敏感性。具体来说,在二元混合物的分相转变附近升高温度会导致更多的溶剂被吸收到聚合物胶体粒子中,这反过来又会降低粒子内聚合物的玻璃化转变温度,同时降低粘度。因此,粒子内部粘度和表面张力之间的平衡被打破,粒子的各向异性形状转变为更球形。随后的快速温度淬火可以停止该过程,使粒子具有中间各向异性。所得的形状各向异性控制为各向异性胶体的相转变研究提供了新途径,并能够为材料应用制造独特的粒子。