杰纳斯
化学
化学物理
纳米技术
气泡
自组装
杰纳斯粒子
散射
材料科学
光学
物理
机械
作者
Jie Gao,Dayin Sun,Zheng Li,Zeying Zhang,Zhiyuan Qu,Yun Yang,Fanyi Min,Wenkun Lv,Mengmeng Guo,Yilan Ye,Zhenzhong Yang,Yali Qiao,Yanlin Song
摘要
Constructing precisely oriented assemblies and exploring their orientation-dependent properties remain a challenge for Janus nanoparticles (JNPs) due to their asymmetric characteristics. Herein, we propose a bubble-driven instant quasi-1D interfacial strategy for the oriented assembly of JNP chains in a highly controllable manner. It is found that the rapid formation of templated bubbles can promote the interfacial orientation of JNPs kinetically, while the confined quasi-1D interface in the curved liquid bridge can constrain the disordered rotation of the particles, yielding well-oriented JNP chains in a long range. During the evaporation process, the interfacial orientation of the JNPs can be transferred to the assembled chains. By regulating the amphiphilicity of the JNPs, both heteraxial and coaxial JNP assemblies are obtained, which show different polarization dependences on light scattering, and the related colorimetric logic behaviors are demonstrated. This work demonstrates the great potential of patterned interfacial assembly with a manageable orientation and shows the broad prospect of asymmetric JNP assembly in constructing novel optoelectronic devices.
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