Literature DB >> 27442422

Active Antifogging Property of Monolayer SiO2 Film with Bioinspired Multiscale Hierarchical Pagoda Structures.

Zhiwu Han1, Zhengzhi Mu1, Bo Li1, Ze Wang1, Junqiu Zhang1, Shichao Niu1, Luquan Ren1.   

Abstract

Antifogging surfaces with hydrophilic or even superhydrophilic wetting behavior have received significant attention due to their ability to reduce light scattering by film-like condensation. However, a major challenge remains in achieving high-speed antifogging performance and revealing the hydrophilic-based antifogging mechanism of glass or other transparent materials under aggressive fogging conditions. Herein, with inspiration from the fog-free property of the typical Morpho menelaus terrestris butterfly (Butler, 1866) wing scales, a monolayer SiO2 film with multiscale hierarchical pagoda structures (MHPSs) based on glass substrate was designed and fabricated using an optimized biotemplate-assisted wet chemical method without any post-treatments. The biomimetic monolayer film (BMF) composed of nanoscale SiO2 3D networks displayed excellent antifogging properties, which is superior to that of the glass substrate itself. The MHPS-based BMF even kept high transmittance (∼95%) under aggressive fog conditions, and it almost instantaneously recovered to a fog-free state (<5 s). Moreover, the underlying active antifogging strategy gathering initial fog capture and final antifog together was revealed. The fogdrops spontaneously adhered on the BMF surface and rapidly spread along the MHPSs in an anisotropic way, which made the fogdrops evaporate instantaneously to attain an initial fog-free state, leading to an efficient active antifogging performance. These properties mainly benefit from the synergistic effect of both hydrophilic chemical compositions (nanoscale SiO2) and physical structures (biomimetic MHPSs) of the BMF. High-speed active antifogging performance of the glass materials enabled the retention of a high transmittance property even in humid conditions, heralding reliable optical performance in outdoor practical applications, especially in aggressive foggy environments. More importantly, the investigations in this work offer a promising way to handily design and fabricate quasi-textured surfaces with multiscale hierarchical structures that possess high-performance physicochemical properties.

Entities:  

Keywords:  active antifogging property; biotemplate fabrication; butterfly wings; monolayer SiO2 film; multiscale hierarchical structures

Year:  2016        PMID: 27442422     DOI: 10.1021/acsnano.6b03884

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  3 in total

1.  Reversible Wettability between Underwater Superoleophobicity and Superhydrophobicity of Stainless Steel Mesh for Efficient Oil-Water Separation.

Authors:  Jiaqi Wang; Jinkai Xu; Guangjun Chen; Zhongxu Lian; Huadong Yu
Journal:  ACS Omega       Date:  2020-12-17

2.  Bio-inspired antifogging PDMS coupled micro-pillared superhydrophobic arrays and SiO2 coatings.

Authors:  Zhiwu Han; Xiaoming Feng; Zhibin Jiao; Ze Wang; Junqiu Zhang; Jie Zhao; Shichao Niu; Luquan Ren
Journal:  RSC Adv       Date:  2018-07-25       Impact factor: 3.361

Review 3.  Femtosecond Laser Processing Technology for Anti-Reflection Surfaces of Hard Materials.

Authors:  Xiaofan Xie; Yunfei Li; Gong Wang; Zhenxu Bai; Yu Yu; Yulei Wang; Yu Ding; Zhiwei Lu
Journal:  Micromachines (Basel)       Date:  2022-07-08       Impact factor: 3.523

  3 in total

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