Wang Zenghui, Jia Hao, Zheng Xuqian, Yang Rui, Wang Zefang, Ye G J, Chen X H, Shan Jie, Feng Philip X-L
Department of Electrical Engineering & Computer Science, Case School of Engineering, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH 44106, USA.
Nanoscale. 2015 Jan 21;7(3):877-84. doi: 10.1039/c4nr04829f.
We report on the experimental demonstration of a new type of nanoelectromechanical resonator based on black phosphorus crystals. Facilitated by a highly efficient dry transfer technique, crystalline black phosphorus flakes are harnessed to enable drumhead resonators vibrating at high and very high frequencies (HF and VHF bands, up to ∼100 MHz). We investigate the resonant vibrational responses from the black phosphorus crystals by devising both electrical and optical excitation schemes, in addition to measuring the undriven thermomechanical motions in these suspended nanostructures. Flakes with thicknesses from ∼200 nm down to ∼20 nm clearly exhibit elastic characteristics transitioning from the plate to the membrane regime. Both frequency- and time-domain measurements of the nanomechanical resonances show that very thin black phosphorus crystals hold interesting potential for moveable and vibratory devices and for semiconductor transducers where high-speed mechanical motions could be coupled to the attractive electronic and optoelectronic properties of black phosphorus.
我们报告了一种基于黑磷晶体的新型纳米机电谐振器的实验演示。借助高效的干转移技术,利用结晶黑磷薄片制造出在高频和甚高频频段(高达约100 MHz)振动的鼓膜谐振器。除了测量这些悬浮纳米结构中的未驱动热机械运动外,我们还通过设计电激励和光激励方案来研究黑磷晶体的共振振动响应。厚度从约200 nm到约20 nm的薄片清楚地展现出从平板状态到薄膜状态的弹性特性转变。纳米机械共振的频域和时域测量均表明,非常薄的黑磷晶体在可移动和振动设备以及半导体换能器方面具有有趣的潜力,在这些应用中高速机械运动可与黑磷引人注目的电子和光电特性相耦合。