Lan Wen-Jie, Yu Shu-Hong, Qian Hai-Sheng, Wan Yong
Division of Nanomaterials & Chemistry, Hefei National Laboratory for Physical Sciences at Microscale, School of Chemistry and Material Science, University of Science and Technology of China, Hefei 230026, P. R. China.
Langmuir. 2007 Mar 13;23(6):3409-17. doi: 10.1021/la063272+. Epub 2007 Feb 13.
The dispersibility and stabilization of freshly synthesized ultrathin tellurium nanowires with diameters of 4-9 nm using poly(vinyl pyrrolidone) (PVP) as a capping agent can be well controlled through an easy acetone-addition process. Ultrathin Te nanowires synthesized by a hydrothermal method using PVP as a capping agent will aggregate in a water/acetone system, and their aggregation state strongly relies on the volume of water and acetone in this mixed solution. This phenomenon is due to the different solubility of PVP in water and acetone, which has significant influence on the dispersibility and stabilization of the nanowires. The results also demonstrate that the freshly prepared Te nanowires are not stable after being stored for a prolonged time in contact with air, ethanol, and water. Ultrathin Te nanowires can be oxidized easily with various final morphologies, which are core-shell structures in contact with air, amorphous nanoparticles and nanoplatelets in ethanol, and large square flakes in water. The entire conversion process from crystalline Te nanowires to amorphous TeO2 nanoparticles or single-crystal paratellurite (TeO2) at room temperature was carefully studied, implying that tellurium nanowires synthesized by other chemical methods and other nanomaterials after synthesis could also not be stable, and their storage methods require special attention.
以聚乙烯吡咯烷酮(PVP)作为封端剂,通过简便的丙酮添加过程,可以很好地控制新合成的直径为4 - 9纳米的超薄碲纳米线的分散性和稳定性。使用PVP作为封端剂通过水热法合成的超薄碲纳米线会在水/丙酮体系中聚集,其聚集状态强烈依赖于该混合溶液中水和丙酮的体积。这种现象是由于PVP在水和丙酮中的溶解度不同,这对纳米线的分散性和稳定性有显著影响。结果还表明,新制备的碲纳米线在与空气、乙醇和水接触长时间储存后不稳定。超薄碲纳米线很容易被氧化,形成各种最终形态,在与空气接触时为核壳结构,在乙醇中为无定形纳米颗粒和纳米片,在水中为大的方形薄片。在室温下仔细研究了从结晶碲纳米线到无定形二氧化碲纳米颗粒或单晶副碲酸盐(TeO₂)的整个转化过程,这意味着通过其他化学方法合成的碲纳米线以及其他纳米材料在合成后也可能不稳定,它们的储存方法需要特别注意。