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Published in: Journal of Sol-Gel Science and Technology 1/2018

14-09-2018 | Original Paper: Sol-gel and hybrid materials for optical, photonic and optoelectronic applications

Fabrication of UV-curable silicone coating with high transmittance and laser-induced damage threshold for high-power laser system

Authors: Xue-Ran Deng, Wei Yang, Qing-Hua Zhang, Hao-Hao Hui, Yao-Wei Wei, Jian Wang, Qiao Xu, Xiang-Yang Lei, Jin-Ju Chen, Ji-Liang Zhu

Published in: Journal of Sol-Gel Science and Technology | Issue 1/2018

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Abstract

Third harmonic generating (THG) element is an important component for high-power laser system and its incident side is in need of high transmittance and laser-induced damage threshold (LIDT) at specified wavelengths (1064 nm and 532 nm) to meet the demand of laser-driven inertial confinement fusion. An UV-curable organic–inorganic hybrid silicone coating was fabricated for this THG element and its relevant properties have been investigated. Si–O–Si backbone structure in combination with characteristics from a mixture of tripropyleneglycoldiacrylate (TPGDA) as a reactive diluent and Darocur 1173 (HMPP) as a photoinitiator provided qualified adhesion, hardness, transmittance, and laser damage resistance for the UV-cured coating. Based on this design, THG element with both high transmittance and LIDT at specified wavelengths was successfully achieved after the solidification of coatings by means of UV irradiation, which provides an alternate option to cure coatings upon the temperature-sensitive substrates (like potassium dideuterium phosphate (DKDP), ammonium dihydrogen phosphate (ADP), and so on) without heating, and meanwhile greatly reduces the time consumption of curing process.

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Metadata
Title
Fabrication of UV-curable silicone coating with high transmittance and laser-induced damage threshold for high-power laser system
Authors
Xue-Ran Deng
Wei Yang
Qing-Hua Zhang
Hao-Hao Hui
Yao-Wei Wei
Jian Wang
Qiao Xu
Xiang-Yang Lei
Jin-Ju Chen
Ji-Liang Zhu
Publication date
14-09-2018
Publisher
Springer US
Published in
Journal of Sol-Gel Science and Technology / Issue 1/2018
Print ISSN: 0928-0707
Electronic ISSN: 1573-4846
DOI
https://doi.org/10.1007/s10971-018-4807-7

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