Journal of Inorganic Materials, Volume. 34, Issue 2, 159(2019)
λ/4-λ/2 Double-layer Broadband Antireflective Coatings with Superhydrophilicity and Photocatalysis
[1] GALEOTTI FRANCESCO, TIMO GIANLUCA, TRESPIDI FRANCO. Broadband and crack-free antireflection coatings by self-assembled moth eye patterns[D]. ACS Applied Materials & Interfaces, 6, 5827-5834(2014).
[2] HSU JYUN-JHENG, KUO WEN-KAI, NIEN CHIH-KAI. Moth-eye-inspired biophotonic surfaces with antireflective and hydrophobic characteristics[D]. ACS Applied Materials & Interfaces, 8, 32021-32030(2016).
[3] CHOU YEN-YU, LEE KUAN-TAO, LEE YEEU-CHANG. Fabrication of hierarchical anti-reflective structures using polystyrene sphere lithography on an as-cut p-Si substrate[D]. Applied Surface Science, 377, 81-85(2016).
[4] DIEDENHOFEN SILKE-L, GRZELA GRZEGORZ, HAVERKAMP ERIK. Broadband and omnidirectional anti-reflection layer for III/V multi-junction solar cells[D]. Solar Energy Materials and Solar Cells, 101, 308-314(2012).
[5] SOUTHWELL W H. Gradient-index antireflection coatings[D]. Optics Letters, 8, 584-586(1983).
[6] LI DE-ZENG, WAN DONG-YUN, ZHU XIAO-LONG. Broadband antireflection TiO2-SiO2 stack coatings with refractive- index-grade structure and their applications to Cu(In, Ga)Se2 solar cells[D]. Solar Energy Materials and Solar Cells, 130, 505-512(2014).
[7] LI YUAN-YANG, LÜ HAI-BING, YE LONG-QIANG. Preparation of porous silica films in a binary template system for double-layer broadband antireflective coatings[D]. RSC Advances, 5, 20365-20370(2015).
[8] CUI XINMIN, SUN JING-HUA, ZHANG CE. A broadband antireflective coating based on a double-layer system containing mesoporous silica and nanoporous silica[D]. Journal of Materials Chemistry C, 3, 7187-7194(2015).
[9] LI XIAO-GUANG, ZHANG QING-HUA, ZOU LI-PING. An abrasion-resistant and broadband antireflective silica coating by block copolymer assisted Sol-Gel method[D]. Langmuir, 30, 10481-10486(2014).
[10] SHEN JUN, WANG XIAO-DONG. Sol-Gel derived durable antireflective coating for solar glass[D]. Journal of Sol-Gel Science and Technology, 53, 322-327(2009).
[11] BEAURAIN L AURENCE, PRENÉ PHILIPPE, PRIOTTON JEAN-JACQUES. Preparation of a Sol-Gel broadband antireflective and scratch-resistant coating for amplifier blastshields of the French laser LIL.[D]. Journal of Sol-Gel Science and Technology, 19, 533-537(2000).
[12] , H ANGUS.. Thin-film Optical Filters, 4nd ed[M], 129(2001).
[13] , BURGHOORN MARIEKE, BUSKENS PASCAL. Antireflective coatings for glass and transparent polymers[D]. Langmuir, 32, 6781-6793(2016).
[14] FAUSTINI MARCO, NICOLE LIONEL. Hydrophobic, antireflective, self-cleaning, and antifogging Sol-Gel coatings: an example of multifunctional nanostructured materials for photovoltaic cells[D]. Chemistry of Materials, 22, 4406-4413(2010).
[15] HE JUN-HUI, YAO LIN. Facile dip-coating approach to fabrication of mechanically robust hybrid thin films with high transmittance and durable superhydrophilicity[D]. Journal of Materials Chemistry A, 2, 6994-7003(2014).
[16] SONG CHANG-CHUN, YE LONG-QIANG, ZHANG YU-LU. A simple Sol-Gel method to prepare superhydrophilic silica coatings[D]. Materials Letters, 188, 316-318(2017).
[17] WENZEL ROBERT-N. Surface roughness and contact angle[D]. The Journal of Physical and Colloid Chemistry, 53, 1466-1467(1949).
[18] , EBERT J, PANNHORST H. Scatter losses of broadband interference coatings.[D]. Applied Optics, 18, 818-822(1979).
Get Citation
Copy Citation Text
Yuan-Yang LI, Bo JIANG, [in Chinese], [in Chinese]. λ/4-λ/2 Double-layer Broadband Antireflective Coatings with Superhydrophilicity and Photocatalysis[J]. Journal of Inorganic Materials, 2019, 34(2): 159
Category: Research Articles
Received: Mar. 15, 2018
Accepted: --
Published Online: Sep. 24, 2021
The Author Email: