色一区二区-色一色在线观看视频网站-色一级-色一涩-日韩欧美一区二区三区四区-日韩欧美一区二区三区在线观看

新聞動態(tài)
NEWS
Location:Chinese Academy of Sciences > NEWS  > News in field Carbon Nanotubes

Rice University Scientists Make Neat Carbon Nanotube Fibers

Come: Chinese Academy of Sciences    Date: 2014-10-11 11:09:32


The very idea of fibers made of carbon nanotubes is neat, but Rice University scientists are making them neat — literally.
 
Rice University scientists are making carbon nanotube solutions that act as liquid crystals as a precursor to pulling them into strong, conductive fibers. Courtesy of the Martí Group.The single-walled carbon nanotubes in new fibers created at Rice line up like a fistful of uncooked spaghetti through a process designed by chemist Angel Martí and his colleagues.
 
The tricky bit, according to Martí, whose lab reported its results this month in the journal ACS Nano, is keeping the densely packed nanotubes apart before they are drawn together into a fiber.Left to their own devices, carbon nanotubes form clumps that are perfectly wrong for turning into the kind of strong, conductive fibers needed for projects ranging from nanoscale electronics to macro-scale power grids.
 
Earlier research at Rice by chemist and chemical engineer Matteo Pasquali, a co-author on the new paper, used an acid dissolution process to keep the nanotubes separated until they could be spun into fibers. Now Martí, Pasquali and their colleagues are producing “neat” fibers with the same mechanical process, but they are starting with a different kind of feedstock.“Matteo group used chlorosulfonic acid to protonate the surface of the nanotubes,” Martí said. “That would give them a positively charged surface so they would repel each other in solution. The technique we use is exactly the opposite.”
 
A process revealed last year by Martí and lead authors Chengmin Jiang, a graduate student, and Avishek Saha, a Rice alumnus, starts with negatively charging carbon nanotubes by infusing them with potassium, a metal, and turning them into a kind of salt known as a polyelectrolyte. They then employ cage-like crown ethers to capture the potassium ions that would otherwise dampen the nanotubes’ ability to repel one another.

       Put enough nanotubes into such a solution and they are aught between the repellant forces and an inability to move in a crowded environment, Martí said. They are forced to align — a defining property of liquid crystals — and this makes them more manageable.
The tubes are ultimately forced together into fibers when they are extruded through the tip of a needle. At that point, the strong vander Waals force takes over and tightly binds the nanotubes together, Martí said.

      But to make macroscopic materials, the Martí team needed to pack many more nanotubes into the solution than in previous experiments. “As you start increasing the concentration, the number of nanotubes in the liquid crystalline phase becomes more abundant than those in the isotropic (disordered) phase, and that’s exactly what we needed,” Martí said.The researchers discovered that 40 milligrams of nanotubes per milliliter gave them a thick gel after mixing at high speed and filtering out whatever large clumps remained. “It is like a centrifuge together with a rotary drum,” Martí said of the mixing gear. “It produces unconventional forces in the solution.”
 
Feeding this dense nanotube gel through a narrow needle-like opening produced continuous fiber on the Pasquali lab’s equipment.The strength and stiffness of the neat fibers also approached that of the fibers previously produced with Pasquali acid-based process. “We did not make any modifications to his system and it worked perfectly,” Martí said.
 
The hair-width fibers can be woven into thicker cables, and the team is investigating ways to improve their electrical properties through doping the nanotubes with iodide. “The research is basically analogous to what Matteo does,” Martí said. “We used his tools but gave the process a spin with a different preparation, so now we are the first to make neat fibers of pure carbon nanotube electrolytes. That’s very cool.”Pasquali said that the spinning system worked with little need for adaptation because the setup is sealed. “The nanotube electrolyte solution could be protected from oxygen and water, which would have caused precipitation of the nanotubes,” he said. “It turns out that this is not a showstopper, because we want the nanotubes to precipitate and stick to each other as soon as they exit the sealed system through the needle. The process was not hard to control, adapt and scale up once we figured out the basic science.”
 
Co-authors are Rice graduate student Colin Young, alumnus Daniel Paul Hashim, former visiting researcher Carolyn Ramirez and Pulickel Ajayan, the Benjamin M. and Mary Greenwood Anderson Professor in Mechanical Engineering and Materials Science and of chemistry, and chair of the Department of Materials Science and NanoEngineering.Pasquali is chair of the Department of Chemistry and a professor of chemical and biomolecular engineering, of materials science and nanoengineering and of chemistry. Martí is an assistant professor of chemistry and bioengineering and of materials science and nanoengineering.

< Previous CNT films conduct heat as well as metalsCarbon Nanotube-Based Transparent Con... Next >

?
Tel:+86-28-85241016,+86-28-85236765    Fax:+86-28-85215069,+86-28-85223978    E-mail:[email protected],[email protected],[email protected]
QQ:800069832    Technical Support ac57.com
Copyright © Chengdu Organic Chemicals Co. Ltd., Chinese Academy of Sciences 2003-2025. manage 蜀ICP備05020035號-3
主站蜘蛛池模板: 久草在线视频资源 | 最新国产午夜精品视频不卡 | 亚洲欧美一区二区三区在线播放 | 日韩三级在线 | 狠狠色噜噜狠狠狠米奇9999 | 欧美在线1| 久久影院在线 | 欧洲97色综合成人网 | 怡红院日本一道日本久久 | 成人国产一区 | 国产乱淫a∨片免费视频 | 国产激情自拍 | 人妖欧美一区二区三区四区 | 国产三级精品三级国产 | 香港台湾经典三级a视频 | 国产综合视频在线观看一区 | 天天做天天爱夜夜大爽完整 | 颜值超高的女神啪啪 | 欧美日韩一区二区三区视频播 | 久久精品国产半推半就 | 日韩国产欧美视频 | 一级特黄性色生活片一区二区 | 免看一级a毛片一片成人不卡 | 国产嫩草影院在线观看 | 国内精品免费一区二区观看 | 国产乱子精品免费视观看片 | 亚洲韩国日本欧美一区二区三区 | 波多野结衣一区二区三区在线观看 | 国产热久久精 | 99久热在线精品视频播 | 国产免费一级在线观看 | 久久国产视频网站 | 亚洲a级片在线观看 | 免费一级毛片在播放视频 | 在线国产欧美 | 午夜毛片视频高清不卡免费 | 免费精品一区二区三区在线观看 | 99精品免费在线 | 毛片中文字幕 | 美女被强行扒开双腿激情视频 | 欧美色大成网站www永久男同 |