ScienceDaily: Latest Science News
Breaking science news and articles on global warming, extrasolar planets, stem cells, bird flu, autism, nanotechnology, dinosaurs, evolution -- the latest discoveries in astronomy, anthropology, biology, chemistry, climate and environment, computers, engineering, health and medicine, math, physics, psychology, technology, and more -- from the world's leading universities and research organizations.
'Waviness' explains why carbon nanotube forests have low stiffness
http://feeds.sciencedaily.com/~r/sciencedaily/~3/cUQtQJ9Zn9c/131001104711.htm
Oct 1st 2013, 14:47
Oct. 1, 2013 — A new study has found that "waviness" in forests of vertically-aligned carbon nanotubes dramatically reduces their stiffness, answering a long-standing question surrounding the tiny structures. Instead of being a detriment, the waviness may make the nanotube arrays more compliant and therefore useful as thermal interface material for conducting heat away from future high-powered integrated circuits.
Measurements of nanotube stiffness, which is influenced by a property known as modulus, had suggested that forests of vertically-aligned nanotubes should have a much higher stiffness than what scientists were actually measuring. The reduced effective modulus had been blamed on uneven growth density, and on buckling of the nanotubes under compression.
However, based on experiments, scanning electron microscope (SEM) imaging and mathematical modeling, the new study found that kinked sections of nanotubes may be the primary mechanism reducing the modulus.
"We believe that the mechanism making these nanotubes more compliant is a tiny kinkiness in their structure," said Suresh Sitaraman, a professor in the Woodruff School of Mechanical Engineering at the Georgia Institute of Technology. "Although they appear to be perfectly straight, under high magnification we found waviness in the carbon nanotubes that we believe accounts for the difference in what is measured versus what would be expected."
The research, which was supported by the Defense Advanced Research Projects Agency (DARPA), was published online August 31, 2013, in the journal Carbon. It will appear later in the journal's print edition.
Carbon nanotubes provide many attractive properties, including high electrical and thermal conductivity, and high strength. Individual carbon nanotubes have a modulus ranging from 100 gigapascals to 1.5 terapascals. Arrays of vertically-aligned carbon nanotubes with a low density would be expected to a have an effective modulus of at least five to 150 gigapascals, Sitaraman said, but scientists have typically measured values that are four orders or magnitude less -- between one and 10 megapascals.
To understand what might be causing this variation, Sitaraman and Ph.D. students Nicholas Ginga and Wei Chen studied forests of carbon nanotubes grown atop a silicon substrate, then covered the tips of the structures with another layer of silicon. They then used sensitive test apparatus -- a nanoindenter -- to compress samples of the nanotubes and measure their stiffness. Alternately, they also placed samples of the silicon-nanotube sandwiches under tensile stress -- pulling them apart instead of compressing them.
What they found was that the effective modulus remained low -- as much as 10,000 times less than expected -- regardless of whether the nanotube sandwiches were compressed or pulled apart. That suggests growth issues, or buckling, could not fully account for the differences observed.
To look for potential explanations, the researchers examined the carbon nanotubes using scanning electron microscopes located in Georgia Tech's Institute for Electronics and Nanotechnology facilities. At magnification of 10,000 times, they saw the waviness in sections of the nanotubes.
"We found very tiny kinks in the carbon nanotubes," said Sitaraman. "Although they appeared to be perfectly straight, there was waviness in them. The more waviness we saw, the lower their stiffness was."
They also noted that under compression, the nanotubes contact one another, influencing nanotube behavior. These observations were modeled mathematically to help explain what was being seen across the different conditions studied.
"We took into account the contact between the carbon nanotubes," said Chen. "This allowed us to investigate the extreme conditions under which the deformation of nanotubes is constrained by the presence of neighboring nanotubes in the forest."
Though the loss of modulus might seem like a problem, it actually may be helpful in thermal management applications, Sitaraman said. The compliance of the nanotubes allows them to connect to a silicon integrated circuit on one side, and be bonded to a copper heat spreader on the other side. The flexibility of the nanotubes allows them to move as the top and bottom structures expand and contract at different rates due to temperature changes.
"The beauty of the carbon nanotubes is that they act like springs between the silicon chip and the copper heat spreader," said Sitaraman. "They can conduct lots of heat because of good thermal properties, and at the same time, they are supple and compliant."
Carbon nanotubes have extraordinarily high thermal conductivity, as much as ten times that of copper, making them ideal for drawing heat away from the chips.
"The demand for heat removal from chips is continuing to increase," said Ginga. "Industry has been looking for new materials and new techniques to add to their toolbox for heat transfer. Different approaches will be needed for different devices, and this provides the industry with a new way to address the challenge."
This entry passed through the Full-Text RSS service — if this is your content and you're reading it on someone else's site, please read the FAQ at fivefilters.org/content-only/faq.php#publishers. Five Filters recommends: Massacres That Matter - Part 1 - 'Responsibility To Protect' In Egypt, Libya And SyriaMassacres That Matter - Part 2 - The Media Response On Egypt, Libya And SyriaNational demonstration: No attack on Syria - Saturday 31 August, 12 noon, Temple Place, London, UK
You are receiving this email because you subscribed to this feed at http://blogtrottr.com
If you no longer wish to receive these emails, you can unsubscribe here:
http://blogtrottr.com/unsubscribe/cz0/tSbHWJ
订阅:
博文评论 (Atom)
博客归档
-
▼
2013
(16909)
-
▼
十月
(1370)
- 科技要闻-新浪科技: 淘宝旗舰店开业 基金走“亲”路线
- 网易科技频道IT业界新闻: 与松下签70亿美元电池合同 特斯拉将大幅扩产?
- 网易科技频道IT业界新闻: 索尼Q2财报公布 智能手机销售强劲
- ScienceDaily: Latest Science News: Houston we have...
- ScienceDaily: Latest Science News: Stem cell scarr...
- 科技要闻-新浪科技: 淘宝网“绕过”销售牌照卖基金
- 科技要闻-新浪科技: 比特币VSRipple:不同“货币哲学”的碰撞
- 网易科技频道IT业界新闻: 商务部称媒体曝光三星星巴克非针对外企
- ScienceDaily: Latest Science News: Butterflies sho...
- ScienceDaily: Latest Science News: Lefties more li...
- ScienceDaily: Latest Science News: Dogs know a lef...
- ScienceDaily: Latest Science News: Primary GOES-R ...
- ScienceDaily: Latest Science News: Suzaku study po...
- ScienceDaily: Latest Science News: NASA advances w...
- 科技要闻-新浪科技: 广东联通流量经营模式大转身 上网G时代到来
- ScienceDaily: Latest Science News: Breakthrough re...
- 科技要闻-新浪科技: 广东电信营业厅成功直播首回合亚冠决赛
- Solidot: Edward Snowden找到了工作:技术支持
- 网易科技频道IT业界新闻: 松下宣布上调2013财年全年盈利预期
- ScienceDaily: Latest Science News: Tagging aquatic...
- ScienceDaily: Latest Science News: Seeing in the d...
- ScienceDaily: Latest Science News: Reducing price ...
- 科技要闻-新浪科技: 易传媒CEO闫方军:将为企业提供DSP技术服务
- 科技要闻-新浪科技: 去哪儿将IPO发行价区间调为12美元至14美元
- Solidot: Facebook测试屏幕跟踪软件
- Solidot: 黑客破解验钞机,能将纸验证为真钞
- Solidot: NSA局长否认非法,Google表示愤怒
- Solidot: 中国姓氏的区域差异仍旧显著
- 科技要闻-新浪科技: “代码女神”网络爆红 网友赞为IT界的奇迹
- Solidot: Project Einstein项目试图发现天才的基因
- Solidot: LUX地下实验没有发现暗物质信号
- 网易科技频道IT业界新闻: 英特尔:用自己芯片的可穿戴设备明年上市
- 网易科技频道IT业界新闻: 苹果iPad市占率创新低 三星平板出货量翻一番多
- 网易科技频道IT业界新闻: 索尼Q2亏损扩大 全财年净利预期大幅下调40%
- 科技要闻-新浪科技: 商务部:三星苹果等外商应认真对待监督
- 科技要闻-新浪科技: 中青宝联合盛大发布游戏 拟上海自贸区建公司
- 科技要闻-新浪科技: 梅耶尔买下住宅附近一家殡仪馆 占地4694平方
- Solidot: 台湾抗议苹果地图将其划入中国
- Solidot: 天文学家发现酷似地球的热行星
- 网易科技频道IT业界新闻: 周鸿祎:我为什么不看好智能手表?
- 网易科技频道IT业界新闻: 夏普发布季度财报 第二财季净利润1.39亿美元
- 科技要闻-新浪科技: 黄锫坚:闯进金融瓷器店的互联网公牛
- 科技要闻-新浪科技: 周鸿t:我为什么不看好智能手表
- Solidot: HealthCare.gov的七宗罪
- 科技要闻-新浪科技: 环球地理每日一图:古老猴面包树上的花豹
- 科技要闻-新浪科技: 销售“间谍器材” 鼎好电子城被罚2万
- 科技要闻-新浪科技: 索尼下调全年利润预期 电视相机需求下滑
- Solidot: 当操作系统控制CPU高速缓存
- Solidot: 思科宣布将发布H.264开源编解码器
- 网易科技频道IT业界新闻: 可穿戴互联网投资照进现实:窄众需求影响普及
- 网易科技频道IT业界新闻: 传英特尔退出网络电视市场 出售旗下Intel Media
- 网易科技频道IT业界新闻: 小米试水官网外电商渠道
- 网易科技频道IT业界新闻: 智能手机占美国79%的青年市场 普及率接近饱和
- 网易科技频道IT业界新闻: “乔布斯”加盟联想
- 网易科技频道IT业界新闻: 美国男子手机“防弹护主”
- ScienceDaily: Latest Science News: The secret math...
- ScienceDaily: Latest Science News: How the univers...
- 科技要闻-新浪科技: “乔布斯”加盟联想担任产品工程师
- ScienceDaily: Latest Science News: New multiple ac...
- ScienceDaily: Latest Science News: Lava world baff...
- ScienceDaily: Latest Science News: Atherosclerosis...
- 科技要闻-新浪科技: 海外自助游网站 获近六千万融资
- 科技要闻-新浪科技: 模式之痛 做空阴影下的网秦
- 网易科技频道IT业界新闻: 果壳电子开通比特币支付
- 网易科技频道IT业界新闻: 戴尔完成私有化将发力中国服务器市场
- 网易科技频道IT业界新闻: 诺基亚在英国赢得与HTC的专利纠纷 后者面临禁售
- ScienceDaily: Latest Science News: Improving earth...
- ScienceDaily: Latest Science News: Scientists digi...
- 科技要闻-新浪科技: “预装论”遭中兴华为否认网秦用户数量难解
- 科技要闻-新浪科技: 马云:杀到企鹅家去 生态圈之争再升级
- 科技要闻-新浪科技: 用户数据仍存争议 网秦回应公告难洗净“浑水”
- ScienceDaily: Latest Science News: Bottom-feeding ...
- ScienceDaily: Latest Science News: First results f...
- ScienceDaily: Latest Science News: Pain in infancy...
- 科技要闻-新浪科技: 大众点评推开放2.0 支持数据写入和佣金分成
- ScienceDaily: Latest Science News: Gimball: A cras...
- ScienceDaily: Latest Science News: Baking blueberr...
- ScienceDaily: Latest Science News: Brain regions c...
- 网易科技频道IT业界新闻: 微软申请欧盟批准其收购诺基亚协议
- ScienceDaily: Latest Science News: What makes crea...
- ScienceDaily: Latest Science News: 'Molecular Velc...
- ScienceDaily: Latest Science News: Moral in the mo...
- 科技要闻-新浪科技: 百度周三美股盘前大涨5.83%
- Solidot: 编译器如何危及应用程序的安全
- Solidot: 五角大楼的92岁尤达可能被迫退休
- Solidot: 天文学家发现形似太阳系的行星系
- Solidot: 物理学家砍死“龙王”
- 科技要闻-新浪科技: 易迅网投入7亿提前启动年度大促
- Solidot: 印度总理为什么不担心监听
- Solidot: Adobe Photoshop源代码以及3800万用户信息泄漏
- Solidot: 英国Twitter用户因转推谣言赔偿1.5万英镑
- 科技要闻-新浪科技: 科学家发布最大宇宙3D地图 有助于揭秘暗物质
- 科技要闻-新浪科技: 专家支持如何防手机流量流失
- 网易科技频道IT业界新闻: 各投行满意苹果Q4业绩 称新品销售将非常火爆
- Solidot: 丰田因“杀人固件”被罚300万美元
- Solidot: 美国警方用GPS子弹跟踪超速行驶车辆
- 科技要闻-新浪科技: 女孩武汉丢iPhone5定位郑州 警方嫌麻烦不受理
- 科技要闻-新浪科技: 天文学家发现酷似太阳系行星系 距地2500光年
- Solidot: 中共中央将遴选100名具冲击诺贝尔奖潜力人才
- Solidot: 联想发布Yoga平板,能连续使用18小时
-
▼
十月
(1370)
没有评论:
发表评论