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Hexagonal boron nitride nanomechanical resonators with spatially visualized motion
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作者 Xu-Qian Zheng Jaesung Lee Philip X.-L.Feng 《Microsystems & Nanoengineering》 EI CSCD 2017年第1期196-203,共8页
Atomic layers of hexagonal boron nitride(h-BN)crystal are excellent candidates for structural materials as enabling ultrathin,two-dimensional(2D)nanoelectromechanical systems(NEMS)due to the outstanding mechanical pro... Atomic layers of hexagonal boron nitride(h-BN)crystal are excellent candidates for structural materials as enabling ultrathin,two-dimensional(2D)nanoelectromechanical systems(NEMS)due to the outstanding mechanical properties and very wide bandgap(5.9 eV)of h-BN.In this work,we report the experimental demonstration of h-BN 2D nanomechanical resonators vibrating at high and very high frequencies(from~5 to~70 MHz),and investigations of the elastic properties of h-BN by measuring the multimode resonant behavior of these devices.First,we demonstrate a dry-transferred doubly clamped h-BN membrane with~6.7 nm thickness,the thinnest h-BN resonator known to date.In addition,we fabricate circular drumhead h-BN resonators with thicknesses ranging from~9 to 292 nm,from which we measure up to eight resonance modes in the range of~18 to 35 MHz.Combining measurements and modeling of the rich multimode resonances,we resolve h-BN’s elastic behavior,including the transition from membrane to disk regime,with built-in tension ranging from 0.02 to 2 N m−1.The Young’s modulus of h-BN is determined to be EY≈392 GPa from the measured resonances.The ultrasensitive measurements further reveal subtle structural characteristics and mechanical properties of the suspended h-BN diaphragms,including anisotropic built-in tension and bulging,thus suggesting guidelines on how these effects can be exploited for engineering multimode resonant functions in 2D NEMS transducers. 展开更多
关键词 Hexagonal boron nitride(h-BN) multimode resonances nanoelectromechanical systems(nems) resonators spatial mapping Young’s modulus
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微/纳机电系统 被引量:17
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作者 周兆英 杨兴 《仪表技术与传感器》 CSCD 北大核心 2003年第2期1-5,共5页
微机电系统 (MEMS)和纳机电系统 (NEMS)是微米 /纳米技术的重要组成部分。MEMS已在产业化道路上发展 ,NEMS还处于基础研究阶段。分析了微 /纳机电系统的发展特点 ,简要地介绍了典型的MEMS和NEMS器件及系统后 。
关键词 微机电系统 纳机电系统 微米纳米技术
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从MEMS到NEMS进程中的技术思考 被引量:2
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作者 李昕欣 夏晓媛 张志祥 《微纳电子技术》 CAS 2008年第1期1-5,共5页
回顾和概括了MEMS机电器件进入μm/nm尺度后解决的几个关键性问题。结合微机电器件发展的典型事例进行分析,对我国科学工作者在其中的贡献给予肯定。分析目前机电器件走向nm尺度的一些相关概念理解和需要着重研究的纳米效应问题。对机... 回顾和概括了MEMS机电器件进入μm/nm尺度后解决的几个关键性问题。结合微机电器件发展的典型事例进行分析,对我国科学工作者在其中的贡献给予肯定。分析目前机电器件走向nm尺度的一些相关概念理解和需要着重研究的纳米效应问题。对机电器件从微到纳的发展趋势进行了展望。 展开更多
关键词 微电子机械系统 纳电子机械系统 nm尺度效应
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Optically manipulated nanomechanics of semiconductor nanowires
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作者 Chenzhi Song Shize Yang +6 位作者 Xiaomin Li Xiao Li Ji Feng Anlian Pan Wenlong Wang Zhi Xu Xuedong Bai 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第5期117-121,共5页
Opto–electromechanical coupling at the nanoscale is an important topic in new scientific studies and technical applications. In this work, the optically manipulated electromechanical behaviors of individual cadmium s... Opto–electromechanical coupling at the nanoscale is an important topic in new scientific studies and technical applications. In this work, the optically manipulated electromechanical behaviors of individual cadmium sulfide(CdS) nanowires are investigated by a customer-built optical holder inside transmission electron microscope, wherein in situ electromechanical resonance took place in conjunction with photo excitation. It is found that the natural resonance frequency of the nanowire under illumination becomes considerably lower than that under darkness. This redshift effect is closely related to the wavelength of the applied light and the diameter of the nanowires. Density functional theory(DFT) calculation shows that the photoexcitation leads to the softening of CdS nanowires and thus the redshift of natural frequency, which is in agreement with the experimental results. 展开更多
关键词 opto–electromechanical coupling nano-electromechanical systems (nems) IN-SITU transmission electron MICROSCOPY (TEM) SEMICONDUCTOR NANOWIRES
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纳电子技术 被引量:1
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作者 徐毓龙 《现代电子技术》 2004年第7期1-6,共6页
纳电子技术涉及许多专门领域 ,是一门高度交叉的学科。本文把注意力集中在硅纳电子技术、 111V族化合物半导体纳电子技术、碳纳管电子技术和分子电子技术上 ,对这些领域的新进展也作简要评论。
关键词 纳电子学 碳纳管 分子电子技术 纳机电系统 分子自组装
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