光子晶体
材料科学
胶体晶体
制作
结构着色
光电子学
光子学
胶体
粒子(生态学)
嵌入
纳米技术
亚布朗维特
光子超材料
纳米结构
基质(化学分析)
振荡(细胞信号)
光学
自组装
体积分数
光学材料
粒度
剪切(地质)
可扩展性
折射率
光学镊子
液晶
量子点
作者
Feng Gao,Junjun Qiu,Tong An,Jiang Xinyu,Christian Schäfer,Nan Shi,Ge Wang,Xiuhong Li,Bin Zhu,Tan Sui,Wei You,Wei Yu,Tongxiang Fan,Qibin Zhao,Feng Gao,Junjun Qiu,Tong An,Jiang Xinyu,Christian Schäfer,Nan Shi
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-11-10
标识
DOI:10.1021/acsnano.5c10236
摘要
Colloidal particle-assembled photonic crystals offer sustainable alternatives to traditional structural color materials, but their commercial use is limited by low optical quality and slow fabrication. We demonstrate that embedding colloidal particles in suitable matrix materials and adjusting particle volume fraction can accelerate fabrication by 102-106 times while maintaining high optical performance. Using common materials such as glycerol and honey, we show that uniform photonic crystals with sharp 90% reflectance peaks can rapidly form under oscillatory shear induced by hand-flapping or roll-to-roll processing at meter-per-second speeds. A single shear oscillation within 0.05-0.5 s produces highly ordered structures that typically require thousands of oscillations. We analyze the mechanisms governing efficient photonic crystal assembly and outline practical principles for scalable production.
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