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Antireflective Surfaces: A High‐Transmission, Multiple Antireflective Surface Inspired from Bilayer 3D Ultrafine Hierarchical Structures in Butterfly Wing Scales (Small 6/2016)
Small ( IF 13.0 ) Pub Date : 2016-02-05 , DOI: 10.1002/smll.201670026 Zhiwu Han 1 , Zhengzhi Mu 1 , Bo Li 1 , Shichao Niu 1 , Junqiu Zhang 1 , Luquan Ren 1
Small ( IF 13.0 ) Pub Date : 2016-02-05 , DOI: 10.1002/smll.201670026 Zhiwu Han 1 , Zhengzhi Mu 1 , Bo Li 1 , Shichao Niu 1 , Junqiu Zhang 1 , Luquan Ren 1
Affiliation
A highly transmissive, multiple antireflective surface inspired by bilayer 3D ultrafine hierarchical structures in butterfly wing scales is fabricated on a glass substrate using a facile wet‐chemical biomimetic fabrication method. On page 713, S. Niu and co‐workers describe how the biomimetic antireflective surface exhibits not only excellent antireflective properties but also high transmission, which can also significantly reduce reflection without losing transparency. These findings offer a new path for generating nanostructured antireflectors with high‐transmission properties.
中文翻译:
防反射表面:从蝴蝶翼秤中的双层3D超细分层结构启发而来的高透射率,多重防反射表面(小6/2016)
使用简便的湿化学仿生制造方法,在玻璃基板上制造了高透射率,多重抗反射表面,该表面受蝴蝶翼鳞片的双层3D超细分层结构启发。S. Niu和他的同事们在第713页中描述了仿生抗反射表面不仅具有出色的抗反射特性,而且还具有很高的透射率,这也可以显着降低反射率而又不损失透明度。这些发现为生产具有高透射特性的纳米结构减反射镜提供了一条新途径。
更新日期:2016-02-05
中文翻译:
防反射表面:从蝴蝶翼秤中的双层3D超细分层结构启发而来的高透射率,多重防反射表面(小6/2016)
使用简便的湿化学仿生制造方法,在玻璃基板上制造了高透射率,多重抗反射表面,该表面受蝴蝶翼鳞片的双层3D超细分层结构启发。S. Niu和他的同事们在第713页中描述了仿生抗反射表面不仅具有出色的抗反射特性,而且还具有很高的透射率,这也可以显着降低反射率而又不损失透明度。这些发现为生产具有高透射特性的纳米结构减反射镜提供了一条新途径。