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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Sol-Gel Strategy for Self-Induced Fluorination and Dehydration of Silica with Extended Vacuum Ultraviolet Transmittance and Radiation Hardness
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Sol-Gel Strategy for Self-Induced Fluorination and Dehydration of Silica with Extended Vacuum Ultraviolet Transmittance and Radiation Hardness

机译:具有扩展的真空紫外线透射率和辐射硬度的二氧化硅自诱导氟化和脱水的Sol-Gel策略

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摘要

Fluorinated silica glasses with improved vacuum ultraviolet (VUV) transmittance have been synthesized following a sol-gel route starting from fluorinated allcoxide precursors. Matrix dehydration and fluorination have been investigated by Raman, IR, and refractive index measurements. The results show that, during the densification step, the residual hydroxyl and fluorine content can he controlled by governing the kinetic equilibrium between matrix collapse and fluorine evolution. This highlights the pivotal role of in situ reactions of fluorine-containing molecular precursors in the networking mechanism of a sol-gel material after thermal activation. Superior VUV transmittance and radiation hardness with respect to pure commercial silica and undoped sol-gel sihca have been confirmed by synchrotron light absorption measurements before and after X-ray exposure. These properties make the material very attractive for applications in VUV photolithography technologies and optical fibers, especially for use in environments with a high level of ionizing radiation, such as spacecrafts and nuclear power plants.
机译:按照溶胶-凝胶路线,从氟化的脲基氧化物前体开始合成了具有改善的真空紫外线(VUV)透射率的氟化石英玻璃。基质的脱水和氟化已通过拉曼,红外和折射率测量进行了研究。结果表明,在致密化步骤中,残余的羟基和氟含量可以通过控制基体塌缩与氟释放之间的动力学平衡来控制。这突出了热活化后含氟分子前体的原位反应在溶胶-凝胶材料的网络机制中的关键作用。相对于纯商业二氧化硅和未掺杂的溶胶-凝胶二氧化硅,在X射线曝光前后,通过同步加速器的光吸收测量已经证实了其优异的VUV透射率和辐射硬度。这些特性使该材料非常适合VUV光刻技术和光纤中的应用,尤其是在电离辐射水平高的环境中使用,例如航天器和核电站。

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