24小时热门版块排行榜    

查看: 651  |  回复: 1
当前主题已经存档。

qiyajun

金虫 (正式写手)

[交流] Nanogenerator Fueled by Vibrations

Using ultrasonic waves to vibrate an array of zinc-oxide nanowires, researchers at Georgia Tech have made a tiny generator that can produce direct current. By taking advantage of the fact that zinc-oxide nanowires are piezoelectric--they can convert mechanical energy into electricity--and by finding a way to collect electricity from multiple nanowires, the researchers have taken a big step toward a practical nanoscale power generator.

"We can make each and every wire simultaneously and continuously produce electricity," says Zhong Lin Wang, a professor of materials science at Georgia Tech, who led the work. In a Science paper published this week, Wang and his colleagues demonstrate a prototype device, about two millimeters square, that generates around 0.5 nanoamperes of current for more than an hour.

"The technique essentially provides a new method of power generation," says Pulickel Ajayan, a materials engineering professor at Rennselaer Polytechnic Institute. He says that the generator could be coupled with devices that are difficult or inefficient to power using conventional means.

One important application is powering implantable biological sensors. According to Thomas Thundat, who researches nanoscale biological sensors at Oak Ridge National Laboratory, current battery technology limits the use of microelectromechanical sensors that measure cancer biomarkers, blood pH, and glucose. These sensors are getting smaller and smaller, but conventional chemical batteries can't keep up. "[The batteries] are huge and they run out of power...most of the time it's the battery that's big compared to the sensing part," Thundat says. "We have always been looking for very small power sources that don't need refilling." The new nanowire generator looks like a promising answer, he says. It could be implanted in the body, and, driven by muscle contractions, blood flow, or external vibrations transmitted through tissue, it could power the sensors.

The generator could also drive nanodevices. Wang's research group has previously made nanowire pressure sensors that can detect extremely small piconewton forces as well as nanowire gas sensors. (See "A Nano Pressure Sensor." Instead of an external battery, these devices could run on wind or water flow using the new generator.

A key innovation that has led to the nanowire generator is a new electrode design. The surface of the platinum-coated electrode has a zigzag shape like the teeth of a saw: it has alternating parallel peaks and trenches. This zigzag electrode goes on top of an array of upright zinc-oxide nanowires, and its teeth can push many nanowires at the same time if it moves up and down.

To vibrate the electrode, the researchers package the device, put it in water, and expose it to ultrasonic waves. As the zigzag electrode moves up and down, its peaks push and bend the nanowires, which generate electric current that the electrode collects simultaneously. "The wires can be compressed, can be vibrated left or right--it doesn't matter: all the current adds up in the same direction," Wang says.

This is the first demonstration of a direct current output from nanowires that are driven by mechanical energy, says Charles Lieber, a chemistry professor at Harvard University. The new development is a "key step towards novel, cost-effective, adaptable, and mobile applications of nanogenerators in nanotechnology," he says.

For real-world applications, the current generated by the nanogenerator would need to be higher and more stable. Wang's research group is working on improvements toward that goal. Right now, the nanowires are grown randomly, and the researchers estimate that anywhere between 250 and 1,000 nanowires contribute to the current. This is less than 1 percent of all the wires in the array, Wang says. An important next step is to grow a more regular array of nanowires that are uniform in size and height. Matching the nanowire pattern with the pattern on the electrode would utilize all the nanowires, increasing the current output and making it more stable, he says.

The research team also needs to increase the generator's lifetime. It runs for a little more than an hour right now, and Wang says the researchers are not sure why it dies after that time. As a proof of concept, though, Thundat says that this work is a "major advancement in the power-generation area."
回复此楼
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

superceng

至尊木虫 (文坛精英)

無雙の猛將

哦 那个发SCIENCE的人啊
说自己的,让别人走路去吧!
2楼2007-04-08 18:29:28
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 qiyajun 的主题更新
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 085601材料工程专硕求调剂 +5 慕寒mio 2026-03-16 5/250 2026-03-17 21:31 by hmn_wj
[考研] 材料专硕306英一数二 +7 z1z2z3879 2026-03-16 9/450 2026-03-17 17:31 by ccjequ
[考研] 302求调剂 +9 负心者当诛 2026-03-11 9/450 2026-03-17 17:13 by ruiyingmiao
[考研] 274求调剂0856材料化工 +13 z2839474511 2026-03-11 14/700 2026-03-17 16:51 by share_joy
[考研] 271求调剂 +12 生如夏花… 2026-03-11 14/700 2026-03-17 10:56 by lovewei0727
[硕博家园] 深圳大学硕士招生(2026秋,传感器方向,仅录取第一志愿) +4 xujiaoszu 2026-03-11 9/450 2026-03-17 10:29 by xujiaoszu
[考研] 药学383 求调剂 +3 药学chy 2026-03-15 4/200 2026-03-16 20:51 by 元子^0^
[考研] 一志愿985,本科211,0817化学工程与技术319求调剂 +5 Liwangman 2026-03-15 5/250 2026-03-16 17:10 by 我的船我的海
[考研] 283求调剂 +10 小楼。 2026-03-12 14/700 2026-03-16 16:08 by 13811244083
[考研] 070303一志愿西北大学学硕310找调剂 +5 d如愿上岸 2026-03-12 8/400 2026-03-16 15:19 by peike
[考研] 0703化学调剂 290分有科研经历,论文在投 +7 腻腻gk 2026-03-14 7/350 2026-03-16 10:12 by houyaoxu
[考研] 328求调剂 +3 5201314Lsy! 2026-03-13 6/300 2026-03-14 15:31 by hyswxzs
[考研] 279求调剂 +3 Dizzy123@ 2026-03-10 3/150 2026-03-13 23:02 by JourneyLucky
[考研] 304求调剂 +6 Mochaaaa 2026-03-12 7/350 2026-03-13 22:18 by 星空星月
[考研] 315求调剂 +9 小羊小羊_ 2026-03-11 10/500 2026-03-13 21:13 by SXNU李老师
[考研] 310求调剂 +3 【上上签】 2026-03-11 3/150 2026-03-13 16:16 by JourneyLucky
[考研] 工科278分求调剂 +5 周慢热啊 2026-03-12 7/350 2026-03-13 15:49 by JourneyLucky
[考研] 290求调剂 +7 ADT 2026-03-12 7/350 2026-03-13 15:17 by JourneyLucky
[考研] 工科调剂 +4 Jiang191123! 2026-03-11 4/200 2026-03-13 15:15 by Miko19
[考研] 土木第一志愿276求调剂,科研和技能十分丰富,求新兴方向的导师收留 +3 土木小天才 2026-03-12 3/150 2026-03-13 15:01 by JourneyLucky
信息提示
请填处理意见