杰纳斯
结构着色
材料科学
乳状液
纳米技术
光子晶体
微流控
蚀刻(微加工)
光子学
嵌入
光电子学
化学工程
计算机科学
图层(电子)
工程类
人工智能
作者
Qikai Wang,Can Zhou,Yifan Zheng,Heyang Pang,Sicong Li,Yuandu Hu,Qiuhong Cui
标识
DOI:10.1021/acs.cgd.3c01441
摘要
Janus photonic crystal microspheres (PhCMs), capable of exhibiting multiple structural colors, hold immense promise in practical applications. However, devising a simple and efficient approach for fabricating highly stable Janus PhCMs with multiple stop band gaps. In this report, we propose a straightforward and controllable strategy to assemble dual-stop bandgap Janus PhCMs. A T-shaped microfluidic chip was employed to synthesize single-emulsion resin-based PhCMs (ETPTA@SiO2; PEGPA@SiO2) with an opal structure. Through a series of processes involving partial embedding within a PS protection membrane, selective HF etching, and PS membrane removal, the partial opal structure was transformed into an inverse-opal structure, resulting in an integration of both opal and inverse-opal structures on single-emulsion PhCMs. These Janus PhCMs with anisotropic structures exhibit both red and green structural color. To achieve the controllable design of Janus PhCM, diverse preparation methods have been developed during the embedding process of the PS film. Meanwhile, we propose the devise manipulation techniques for removing PS films from single-emulsion resin-based PhCMs with varying surface hardness, which greatly improves the applicability of our strategy. Our findings pave the way for the straightforward and controllable construction of Janus PhCMs, expanding their potential for future applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI