印刷扭曲薄膜具有近红外带隙和量身定制的手术特征
Botyo Dimitrov1, Daria Bukharina1, Valeriia Poliukhova1
1School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, United States.
概括
研究人员3D打印了纤维素纳米晶片,具有可调节的圆极化和近红外反射. 这些新的光学超材料为先进的光子和热管理应用提供了潜力.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术 纳米技术
- 光学是什么?光学是什么?光学是什么?
背景情况:
- 纤维素纳米晶体 (CNC) 具有独特的光学特性.
- 制造具有可调节光学响应的有序纳米结构仍然具有挑战性.
研究的目的:
- 开发可3D打印的纤维素纳米晶片,具有预编程的圆极化和近红外反射.
- 探索异型布拉格堆和连续螺旋膜之间的过渡.
主要方法:
- 基于叶片的3D打印纤维素纳米晶片.
- 通过改变打印方向来制造扭曲螺旋和异型布拉格.
- 光学表征包括循环二极化和反射光谱学.
- 计算模拟以了解结构与属性之间的关系.
主要成果:
- 实现了具有可调光学性能的高度透明和清晰的薄膜.
- 在Achiral Bragg堆中证明了近红外反射率 (1.3-1.4μm).
- 在扭曲的螺旋膜中观察到并发的左手和右手圆极化,延伸到近红外区域.
- 识别了印刷薄膜作为具有双螺旋性的光学元材料.
结论:
- 3D打印的纤维素纳米晶片可以作为具有双螺旋性的光学元材料.
- 这些材料弥合了传统的性阴性材料和性布拉格堆之间的差距.
- 在循环偏振敏感光子学,热管理和能源应用中具有大规模应用的潜力.
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