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采用均匀嵌入策略无模板制备折射率可调聚硅氧烷涂层:在高功率激光系统中的应用

Template-Free Fabrication of Refractive Index Tunable Polysiloxane Coating Using Homogeneous Embedding Strategy: Application in High-Power Laser System.

作者信息

Deng Xue-Ran, Lei Xiang-Yang, Yang Wei, Hui Hao-Hao, Wang Tian-Yu, Chen Jin-Ju, Zhu Ji-Liang, Zhang Qing-Hua

机构信息

Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang 621900, China.

School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 610054, China.

出版信息

Nanomaterials (Basel). 2020 Feb 22;10(2):381. doi: 10.3390/nano10020381.

Abstract

A refractive index (RI) tunable polysiloxane coating was fabricated based on the cross-linked network structure embedded with mesoporous silica nanoparticles (MSNs), in which the MSNs were utilized to modulate the RI as well as to support the interior structure of the polysiloxane coating. The Si-O-Si inorganic backbone structure in combination with characteristics from the photopolymerization of active bonds produced the main cross-linked network structure, and controllable embedding of MSNs constructed the network-sphere structure. This approach eliminated the high-temperature post-treatment that was needed to remove the template, which ensures the safe application for temperature-sensitive laser crystal substrates and avoids coating structure collapse. In addition, degradation of the resulting coating can be minimized due to the similar chemical formation between MSN and polysiloxane coating. Hereby, a polysiloxane coating with expected spectral and laser damage-resistant properties can be obtained. This will facilitate the fabrication and application of a laser component with both high-transmission and high-flux capability for a high-power laser system.

摘要

基于嵌入介孔二氧化硅纳米粒子(MSNs)的交联网络结构制备了一种折射率(RI)可调的聚硅氧烷涂层,其中MSNs用于调节折射率并支撑聚硅氧烷涂层的内部结构。Si-O-Si无机主链结构与活性键光聚合的特性相结合产生了主要的交联网络结构,MSNs的可控嵌入构建了网络-球体结构。这种方法消除了去除模板所需的高温后处理,确保了对温度敏感的激光晶体衬底的安全应用,并避免了涂层结构坍塌。此外,由于MSN和聚硅氧烷涂层之间相似的化学组成,所得涂层的降解可以最小化。由此,可以获得具有预期光谱和抗激光损伤性能的聚硅氧烷涂层。这将有助于制造和应用具有高透射率和高通量能力的激光组件,用于高功率激光系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa1e/7075301/4e1dd4c4bd84/nanomaterials-10-00381-g001.jpg

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