Having close cooperation and frequent discussions in 2002 among members of the.Project, we have achieved some important advances in theoretical and experimental.exploration on mechanical gigahertz oscillators. The major advances are: proposing.and theoretically predicting graphitic nanolayer gigahertz oscillators and carbon.nanotube – graphite gigahertz oscillators; confirming from molecular dynamics.simulations and some new findings; fluorescence carbon nanotubes – design,.synthesis, and measurement system; new methods of synthesizing ideal carbon.nanotubes and opening their ends; designing and manufacturing micro-manipulator.and electric loading and energy supplying system; clipping and producing carbon.nanotubes with any specific dimensions and chiralities. The Project is expected to.have a breakthrough within a few months on creating mechanical gigahertz oscilltors.using graphite nano-layers.
一年来,项目组多学科成员进行了频繁的研讨和密切的合作。项目有了的坚实和重要的进展,催生了多项新的可能是很重要的创新,并为纳米科技多学科深度合作积累了宝贵经验。重要进展和成果的方面为:纳米石墨片振荡器构想,分子动力学模拟和新发现,纳米碳管/石墨振荡器系统,荧光纳米碳管方案、制备、光测系统,理想碳纳米管的多种制备和开口,电镜下机械臂和光电测试系统,电加载系统模型,纳米碳管定尺度和手性剪裁制备等。本项目有望率先在纳米石墨片十亿振荡器原型方面取得突破
{{i.achievement_title}}
数据更新时间:2023-05-31
带有滑动摩擦摆支座的500 kV变压器地震响应
基于腔内级联变频的0.63μm波段多波长激光器
具有随机多跳时变时延的多航天器协同编队姿态一致性
机电控制无级变速器执行机构动态响应特性仿真研究
天问一号VLBI测定轨技术
低质量X射线双星千赫兹准周期震荡研究
连续运转的太赫兹参量振荡器的实验与理论研究
自旋基微波震荡器的研究
碳纳米管微通道冷却器散热机理的理论与实验研究