...
首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Processing salt-encapsulated tantalum nanoparticles for high purity, ultra high surface area applications
【24h】

Processing salt-encapsulated tantalum nanoparticles for high purity, ultra high surface area applications

机译:用于高纯度,超高表面积应用的盐包封钽纳米颗粒的加工

获取原文
获取原文并翻译 | 示例

摘要

In this study a process for removing the protective encapsulate from salt encapsulated nanopowders has been developed and tested for tantalum nanopowder produced by sodium/halide gas-phase combustion synthesis. A sodium/halide flame can be used to produce salt-encapsulated nanoparticles for many metal and nonoxide ceramic materials. The salt encapsulate allows for control of size and morphology, and protects the core particles from oxygen contamination. Without a protective coating, non-oxide nanopowders can be pyrophoric or form a surface oxide. Despite the beneficial attributes of the NaCl encapsulate, it can also be a source of contamination. Thus, a method by which the encapsulate can be removed and the exposed particles subsequently processed without exposure to environmental contamination was developed. A two step process was developed, where the bulk of the salt is sublimed from the core particles at 880 degrees C and directed out of the system with an inert gas flow followed by a vacuum sublimation at temperatures at or greater than 1200 degrees C for 120 min. These conditions reduced Na and Cl concentrations to below detectable limits of their respective analyses (5 ppm Na and 20 ppm Cl). Heat treating the core particles for 120 min at 1200 degrees C, 1400 degrees C and 1600 degrees C coarsened the particles from 30 nm to approximately 250 nm, 400 nm and 3 mu m, respectively. At 1600 degrees C a fully dense Ta consolidate was produced by applying a uniaxial load of 45 MPa pressure for 210 min.
机译:在这项研究中,已经开发了从盐包封的纳米粉中去除保护性包封物的方法,并测试了钠/卤化物气相燃烧合成生产的钽纳米粉。钠/卤化物火焰可用于生产用于许多金属和非氧化物陶瓷材料的盐封装的纳米颗粒。盐囊可以控制尺寸和形态,并保护核心颗粒免受氧污染。没有保护性涂层,非氧化物纳米粉末可能是发火的或形成表面氧化物。尽管NaCl封装具有有益的特性,但它也可能是污染源。因此,开发了一种方法,通过该方法可以去除封装物并且随后处理暴露的颗粒而不暴露于环境污染。开发了两步法,其中大部分盐在880摄氏度下从核心颗粒中升华,然后用惰性气体流引导出系统,然后在1200摄氏度或以上的温度下进行120升真空升华。分钟这些条件将Na和Cl浓度降低到各自分析的可检测极限以下(5 ppm Na和20 ppm Cl)。在1200摄氏度,1400摄氏度和1600摄氏度下热处理核心颗粒120分钟,分别使颗粒从30 nm粗化到大约250 nm,400 nm和3μm。在1600摄氏度下,通过施加45 MPa压力的单轴载荷210分钟,产生了完全致密的Ta固结物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号