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High Temperature Infrared Transmitting Glasses Based on the xBaS + yLa2S3 + (1-x-y)GeS2 Glass System

机译:基于xBaS + yLa2S3 +(1-x-y)GeS2玻璃系统的高温红外透射玻璃

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摘要

Interest in chalcogenide glasses has been growing for decades. Unlike oxide glasses, sulfide glasses have large anions and weaker bonding. This sacrifices high melting and glass transition temperatures (Tg) for increased infrared transparency. While most research has been focused on increasing the infrared transparency of these materials little has been done to maximize both infrared transparency and Tg, but a new set of chalcogenide glasses built around ionic bonding schemes have shown promise in optimizing both of these properties. One application demanding such properties is chemical sensors for remote sensing in new advanced small modular nuclear reactors (AdvSMNRs) to detect trace amounts of gaseous compounds inside of the reactor environment.;This work focuses on understanding mechanisms that maximize Tg, infrared transparency, and gamma radiation resistance of three series of ionic sulfide glasses in the xBaS + yLa2S3 + (1--x--y)GeS2 system. Glasses prepared by sealing and melting stoichiometric amounts of sulfide compounds together in silica ampoules at 1150 °C. These glasses achieve Tgs in excess of 550 °C, have transmission window that expands from 0.5--10 microm. In addition, glasses show minimal transmission, density, and refractive index change after 453 kGy gamma radiation dose. This allows for the detection of infrared active molecules in the infrared spectrum at elevated temperatures making these strong candidates for chemical sensors in reactor environments.
机译:对硫族化物玻璃的兴趣已经增长了数十年。与氧化物玻璃不同,硫化物玻璃具有较大的阴离子和较弱的键合。这牺牲了高熔融和玻璃化转变温度(Tg),以提高红外透明度。尽管大多数研究都集中在提高这些材料的红外透明度上,但几乎没有做过最大限度地提高红外透明度和Tg的工作,但是围绕离子键合方案构建的一组硫族化物玻璃在优化这两个特性方面显示出了希望。要求这种特性的应用之一是用于新型先进小型模块化核反应堆(AdvSMNR)的遥感化学传感器,以检测反应堆环境中的痕量气态化合物。这项工作着重于了解使Tg,红外透明度和伽马最大化的机理。 xBaS + yLa2S3 +(1 --- x--y)GeS2系统中三系列离子硫化物玻璃的抗辐射性能通过在1150°C的二氧化硅安瓿瓶中将化学计量的硫化物密封在一起并熔融而制得的玻璃。这些玻璃的Tgs超过550°C,透射范围从0.5--10微米扩大。此外,在453 kGy伽玛射线剂量后,玻璃的透射率,密度和折射率变化最小。这允许在高温下检测红外光谱中的红外活性分子,从而使它们成为反应堆环境中化学传感器的强大候选者。

著录项

  • 作者

    Roth, Joshua Raymond.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Materials science.;Engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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