Submillimeter-Long WS 2 Nanotubes: The Pathway to Inorganic Buckypaper
作者:Vojtěch Kundrát, Rita Rosentsveig, Kristýna Bukvišová, Daniel Citterberg, Miroslav Kolı́bal, Shachar Keren, Iddo Pinkas, Omer Yaffe, Alla Zak, Reshef Tenne · 发表于:Nano Letters · 年份:2023 · DOI:10.1021/acs.nanolett.3c02783 · 被引用次数:20 · 研究领域:2D Materials and Applications、Conducting polymers and applications、Gas Sensing Nanomaterials and Sensors
High Resolution Image Download MS PowerPoint Slide WS 2 nanotubes present many new technologies under development, including reinforced biocompatible polymers, membranes, photovoltaic-based memories, ferroelectric devices, etc. These technologies depend on the aspect ratio (length/diameter) of the nanotubes, which was limited to 100 or so. A new synthetic technique is presented, resulting in WS 2 nanotubes a few hundred micrometers long and diameters below 50 nm (aspect ratios of 2000–5000) in high yields. Preliminary investigation into the mechanistic aspects of the two-step synthesis reveals that W 5 O 14 nanowhisker intermediates are formed in the first step of the reaction instead of the ubiquitous W 18 O 49 nanowhiskers used in the previous syntheses. The electrical and photoluminescence properties of the long nanotubes were studied. WS 2 nanotube-based paper-like material was prepared via a wet-laying process, which could not be realized with the 10 μm long WS 2 nanotubes. Ultrafiltration of gold nanoparticles using the nanotube-paper membrane was demonstrated.