共查询到20条相似文献,搜索用时 15 毫秒
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Florian Geyer Yuta Asaumi Doris Vollmer Hans‐Jürgen Butt Yoshinobu Nakamura Syuji Fujii 《Advanced functional materials》2019,29(25)
A new type of armored droplet, a so‐called polyhedral liquid marble, is introduced in this work. These armored liquid marbles consist of liquid droplets stabilized by hydrophobic hexagonal plates made of poly(ethylene terephthalate), which adsorb to the liquid–air interface. Depending on the specific combination of plate size and droplet diameter, the plates self‐assemble into highly ordered hexagonally arranged domains. Even tetrahedral‐, pentahedral‐, and cube‐shaped liquid marbles composed of only 4 to 6 plates are demonstrated. During evaporation of the internal liquid, due to the high adsorption energy of the plates at the liquid–air interface, the overall surface area stays constant, resulting in strongly deformed polyhedral liquid marbles. In line with this, highly asymmetric polyhedral liquid marbles and letters are obtained due to the strong interfacial jamming exerted by the rigid hexagonal plates. This is particularly pronounced for larger plate sizes, leading to liquid marbles with unusually sharp edges (for example, rectangular edges). The polyhedral liquid marbles exhibit various stimuli‐responsive behaviors simultaneously being exposed to water, ammonia, or tetrahydrofuran vapors. Air‐driven polyhedral liquid marbles floating on water can reach velocities of several centimeters per second. 相似文献
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Christian Ohm Eva‐Kristina Fleischmann Isabelle Kraus Christophe Serra Rudolf Zentel 《Advanced functional materials》2010,20(24):4210-4210
In this article new results on the preparation of monodisperse particles from a liquid crystalline elastomer in a microfluidic setup are presnted. For this, droplets from a liquid crystalline monomer are prepared in a microfluidic device and polymerized while they are flowing inside a microtube. The particles obtained by this method possess an internal orientation, which gives them actuating properties. When they are heated into the isotropic phase of the liquid crystalline material they show a reversible change in shape whereby they change their length in one direction by almost 100%. It is shown how the variation of experimental parameters during their synthesis impacts the properties of these micro‐actuators. Influence over their primal shape, the strength of their shape changing properties, their size, and their mechanical properties is demontrated. From the systematic variation of experimental parameters a deep understanding of the complex processes taking place in a flowing droplet of a liquid crystalline material is obtainted. Additionally NMR analysis and swelling experiments on these actuating materials are provided. 相似文献
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Smart Hydrogels: Poly(N‐isopropylacrylamide)‐Clay Nanocomposite Hydrogels with Responsive Bending Property as Temperature‐Controlled Manipulators (Adv. Funct. Mater. 20/2015) 下载免费PDF全文
Chen Yao Zhuang Liu Chao Yang Wei Wang Xiao‐Jie Ju Rui Xie Liang‐Yin Chu 《Advanced functional materials》2015,25(20):3104-3104
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Hydrogels: From Membrane to Skin: Aqueous Permeation Control Through Light‐Responsive Amphiphilic Polymer Co‐Networks (Adv. Funct. Mater. 33/2014) 下载免费PDF全文
Katrin Schöller Sabrina Küpfer Lukas Baumann Patrick M. Hoyer Damien de Courten René M. Rossi Aliaksei Vetushka Martin Wolf Nico Bruns Lukas J. Scherer 《Advanced functional materials》2014,24(33):5308-5308