材料科学
皮克林乳液
聚合物
乳状液
多孔性
桥接(联网)
纳米颗粒
化学工程
分子
纳米技术
复合材料
有机化学
化学
计算机网络
计算机科学
工程类
作者
Baiheng Wu,Chenjing Yang,Xin Qi,Linlin Kong,Max Eggersdorfer,Jian Ruan,Peng Zhao,Jianzhen Shan,Kai Liu,Dong Chen,David A. Weitz,Xiang Gao
标识
DOI:10.1002/adma.202102362
摘要
Abstract Properties of emulsions highly depend on the interdroplet interactions and, thus, engineering interdroplet interactions at molecular scale are essential to achieve desired emulsion systems. Here, attractive Pickering emulsion gels (APEGs) are designed and prepared by bridging neighboring particle‐stabilized droplets via telechelic polymers. In the APEGs, each telechelic molecule with two amino end groups can simultaneously bind to two carboxyl functionalized nanoparticles in two neighboring droplets, forming a bridged network. The APEG systems show typical shear‐thinning behaviors and their viscoelastic properties are tunable by temperature, pH, and molecular weight of the telechelic polymers, making them ideal for direct 3D printing. The APEGs can be photopolymerized to prepare APEG‐templated porous materials and their microstructures can be tailored to optimize their performances, making the APEG systems promising for a wide range of applications.
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