Department of Chemical and Biomolecular Engineering and Department of Chemistry, The Smalley-Curl Institute , Rice University , 6100 Main Street , MS 369, Houston , Texas 77005 , United States.
Department of Chemical Engineering , Technion-Israel Institute of Technology and the Russell Berrie Nanotechnology Institute (RBNI) , Haifa 3200003 , Israel.
Nano Lett. 2018 Mar 14;18(3):1615-1619. doi: 10.1021/acs.nanolett.7b04335. Epub 2018 Feb 14.
Due to recent advances in high-throughput synthesis, research on boron nitride nanotubes (BNNTs) is moving toward applications. One future goal is the assembly of macroscopic articles of high-aspect-ratio, pristine BNNTs. However, these articles are presently unattainable because of insufficient purification and fabrication methods. We introduce a solution process for extracting BNNTs from synthesis impurities without sonication or the use of surfactants and proceed to convert the extracted BNNTs into thin films. The solution process can also be used to convert as-synthesized material-which contains significant amounts of hexagonal boron nitride ( h-BN)-into mats and aerogels with controllable structure and dimension. The solution extraction method, combined with further advances in synthesis and purification, contributes to the development of all-BNNT macroscopic articles, such as fibers and 3-D structures.
由于高通量合成技术的最新进展,氮化硼纳米管(BNNTs)的研究正在朝着应用方向发展。未来的一个目标是组装具有高纵横比、原始 BNNTs 的宏观物体。然而,由于纯化和制造方法不足,目前这些物体还无法实现。我们引入了一种从合成杂质中提取 BNNTs 的溶液处理方法,无需超声处理或使用表面活性剂,然后将提取的 BNNTs转化为薄膜。该溶液处理方法还可用于将含有大量六方氮化硼(h-BN)的合成材料转化为具有可控结构和尺寸的垫料和气凝胶。溶液提取方法与进一步的合成和纯化进展相结合,有助于开发全 BNNT 宏观物体,如纤维和 3D 结构。