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北京石油化工学院2026年研究生招生接收调剂公告
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amos0711

木虫 (正式写手)


[资源] 崔屹-锂离子电池牛文(采用硅纳米线作为负极)

崔屹最近发表在Nature Nanotechnology上的题为“High-performance lithium battery anodes using silicon nanowires”的锂离子电池论文,负极容量提高了十倍,可以说是锂离子电池最近几年以来一个突破性的进展,大家可以看看。^_^

下面是斯坦福大学主页上的报导:
Stanford Report, December 18, 2007
Stanford's nanowire battery holds 10 times the charge of existing ones

BY DAN STOBER
Stanford researchers have found a way to use silicon nanowires to reinvent the rechargeable lithium-ion batteries that power laptops, iPods, video cameras, cell phones, and countless other devices.

The new version, developed through research led by Yi Cui, assistant professor of materials science and engineering, produces 10 times the amount of electricity of existing lithium-ion, known as Li-ion, batteries. A laptop that now runs on battery for two hours could operate for 20 hours, a boon to ocean-hopping business travelers.

"It's not a small improvement," Cui said. "It's a revolutionary development."

The breakthrough is described in a paper, "High-performance lithium battery anodes using silicon nanowires," published online Dec. 16 in Nature Nanotechnology, written by Cui, his graduate chemistry student Candace Chan and five others.

The greatly expanded storage capacity could make Li-ion batteries attractive to electric car manufacturers. Cui suggested that they could also be used in homes or offices to store electricity generated by rooftop solar panels.

"Given the mature infrastructure behind silicon, this new technology can be pushed to real life quickly," Cui said.

The electrical storage capacity of a Li-ion battery is limited by how much lithium can be held in the battery's anode, which is typically made of carbon. Silicon has a much higher capacity than carbon, but also has a drawback.

Silicon placed in a battery swells as it absorbs positively charged lithium atoms during charging, then shrinks during use (i.e., when playing your iPod) as the lithium is drawn out of the silicon. This expand/shrink cycle typically causes the silicon (often in the form of particles or a thin film) to pulverize, degrading the performance of the battery.

Cui's battery gets around this problem with nanotechnology. The lithium is stored in a forest of tiny silicon nanowires, each with a diameter one-thousandth the thickness of a sheet of paper. The nanowires inflate four times their normal size as they soak up lithium. But, unlike other silicon shapes, they do not fracture.

Research on silicon in batteries began three decades ago. Chan explained: "The people kind of gave up on it because the capacity wasn't high enough and the cycle life wasn't good enough. And it was just because of the shape they were using. It was just too big, and they couldn't undergo the volume changes."

Then, along came silicon nanowires. "We just kind of put them together," Chan said.

For their experiments, Chan grew the nanowires on a stainless steel substrate, providing an excellent electrical connection. "It was a fantastic moment when Candace told me it was working," Cui said.

Cui said that a patent application has been filed. He is considering formation of a company or an agreement with a battery manufacturer. Manufacturing the nanowire batteries would require "one or two different steps, but the process can certainly be scaled up," he added. "It's a well understood process."

Also contributing to the paper in Nature Nanotechnology were Halin Peng and Robert A. Huggins of Materials Science and Engineering at Stanford, Gao Liu of Lawrence Berkeley National Laboratory, and Kevin McIlwrath and Xiao Feng Zhang of the electron microscope division of Hitachi High Technologies in Pleasanton, Calif.

[search]崔屹 'silicon nanowires' 'lithium battery anodes'[/search]
报导链接:http://news-service.stanford.edu ... anowire-010908.html

[ Last edited by amos0711 on 2007-12-27 at 07:33 ]
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zzru

新虫 (小有名气)


吓了一跳,还以为是正极提高了10倍
4楼2007-12-25 13:25:51
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zqshichina

木虫 (著名写手)


★★★ 三星级,支持鼓励

哈哈,实用化还很远哦!
高性能+低成本才是最好的选择。
2楼2007-12-25 09:01:58
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szcong2002

银虫 (正式写手)


★ 一星级,一般

负极的容量提高了10倍而已。这是锦上添花的事情。

哪天正极的容量提高10倍,那就牛X了。
3楼2007-12-25 12:35:52
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mxmeok

铜虫 (小有名气)


★★★ 三星级,支持鼓励

倒,还以为是正极材料呢,现在负极材料的容量已经满足要求了,主要的就是正极需要提升.
5楼2007-12-26 10:49:36
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