雨人分享 http://blog.sciencenet.cn/u/chaohe Nano-Mater. for LIBs 寻梦,梦在何方? 寻梦却总是慢一拍!

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High-Yield Synthesis of Untrathin Metal Nanowires in Carbon Nanotubes

已有 5125 次阅读 2009-10-18 22:47 |个人分类:纳米点滴|系统分类:科研笔记| Carbon, Nanotubes, MNWs

      最近,《应用化学》杂志(http://dx.doi.org/10.1002/anie.200902615)报道了日本AIST的研究人员Shinohara研究报道了把金属填充到SWCNT、DWCNT和MWCNT的方法,经过真空和真空加热过程在狭窄的纳米管空腔内填充了非常薄的金属纳米线,并用HRTEM进行了详细研究。

 


 

Wires with atomic dimensions are potential structural elements for future nanoscopic electronic components. Such fine wires have completely new electronic properties. However, apart from the non-trivial production of metallic nanowires, their high chemical reactivity is a critical problem; they are easily oxidized in air and are not stable.

Japanese researchers working with R. Kitaura and H. Shinohara have now developed a new method that is simple and delivers stable nanowires: They deposit metal atoms inside of carbon nanotubes. As the scientists report in the journal Angewandte Chemie, this forms metal wires of individual atoms lined up side-by-side that are so well protected by their sheath that they have long-term stability.

The method of production simply involves heating carbon nanotubes and a metal powder together in a vacuum. It works for all metals that enter into a gaseous phase at relatively low temperatures, such as europium, samarium, ytterbium, and strontium. The metal atoms almost completely fill the cavity inside the carbon nanotubes. Using europium metal and carbon nanotubes with an inner diameter of about 0.76 nm, the researchers were able to obtain wires made of a single chain of individual atoms. This first true one-dimensional nanowires was also stable after one month of exposure to air.

By using carbon nanotubes with different inner diameters, ultrafine wires with various diameters could be produced, which were for example formed of two or four atomic chains. In comparison to macroscopic europium crystals, the atomic wires demonstrate significantly different electronic and magnetic properties.

The nanowires are an ideal model for the study of one-dimensional phenomena. The researchers now aim to test the properties of the wires with respect to their suitability for use as “wiring” for nanoelectronic components.

相对来讲,要是能在液相中直接合成那该多好!




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IP: 69.108.3.*   | 赞 +1 [1]黄庆   2009-10-19 03:15
液相相对比较难,固液界面的表面张力通常很大,各种化学键比较复杂,物理沉积的方法比较有效,但是对外围设备要求也高。离子液体可能可以试一试。
博主回复:离子液体是个可能选择

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