نتایج جستجو برای: freestanding nanoactuators

تعداد نتایج: 1872  

2015
Huiliang Wang Yanming Wang Benjamin C.‐K. Tee Kwanpyo Kim Jeffrey Lopez Wei Cai Zhenan Bao

The mechanical flexibility and structural softness of ultrathin devices based on organic thin films and low-dimensional nanomaterials have enabled a wide range of applications including flexible display, artificial skin, and health monitoring devices. However, both living systems and inanimate systems that are encountered in daily lives are all 3D. It is therefore desirable to either create fre...

Journal: :Journal of visualized experiments : JoVE 2016
Dong-Myeong Shin Seok Hee Kang Seongsu Kim Wanchul Seung Ermias Libnedengel Tsege Sang-Woo Kim Hyung Kook Kim Suck Won Hong Yoon-Hwae Hwang

Well-aligned ZnO nanostructures have been intensively studied over the last decade for remarkable physical properties and enormous applications. Here, we describe a one-step fabrication technique to synthesis freestanding ZnO nanorod/graphene/ZnO nanorod double heterostructure. The preparation of the double heterostructure is performed by using thermal chemical vapor deposition (CVD) and prehea...

Journal: :Journal of applied physics 2006
Y-R Kim P Chen M J Aziz D Branton J J Vlassak

Prominent deflections are shown to occur in freestanding silicon nitride thin membranes when exposed to a 50 keV gallium focused ion beam for ion doses between 10(14) and 10(17) ions/cm(2). Atomic force microscope topographs were used to quantify elevations on the irradiated side and corresponding depressions of comparable magnitude on the back side, thus indicating that what at first appeared ...

Journal: :Physical chemistry chemical physics : PCCP 2015
Peter Nørby Simon Johnsen Bo Brummerstedt Iversen

Films and nanosheets of layered chalcogenides are currently under intense investigation owing to their application in thin film electronic, optoelectronic, and sensor devices. Here, aqueous solution processing of the environmentally benign thiostannate, (NH4)4Sn2S6·3H2O, and its subsequent thermal decomposition to form continuous highly textured SnS2 thin films are presented. We show how to con...

Journal: :Chinese Physics B 2021

We report on the transport study of a double quantum dot (DQD) device made from freestanding, single crystalline InSb nanosheet. The freestanding nanosheet is grown by molecular beam epitaxy and DQD defined top gate technique. Through measurements, we demonstrate how (QD) can be in an tuning voltages applied to gates. also measure charge stability diagrams show that states inter-dot coupling be...

Journal: :Physical review letters 2005
Lun Si Michael V Massa Kari Dalnoki-Veress Hugh R Brown Richard A L Jones

When a thin glassy film is strained uniaxially, a shear deformation zone (SDZ) can be observed. The ratio of the thickness of the SDZ to that of the undeformed film is related to the maximum extension ratio, lambda, which depends on the entanglement molecular weight, M(e). We have measured lambda as a function of film thickness in strained freestanding films of polystyrene as a probe of M(e) in...

2007
Yen-Hsi Lin Chaoyang Jiang Jun Xu Zhiqun Lin Vladimir V. Tsukruk

The fabrication of purely polymeric free-standing structures of nanoscale thickness is technically challenging because of the poor mechanical stability of conventional polymers. Conjugated polymers (CP) composed of rod-like chains with much stronger mechanical properties are exploited here for layer-by-layer assembly. We successfully fabricated ultrathin freestanding layer-by-layer conjugated f...

Journal: :Physical review letters 2016
M L Ackerman P Kumar M Neek-Amal P M Thibado F M Peeters Surendra Singh

We report subnanometer, high-bandwidth measurements of the out-of-plane (vertical) motion of atoms in freestanding graphene using scanning tunneling microscopy. By tracking the vertical position over a long time period, a 1000-fold increase in the ability to measure space-time dynamics of atomically thin membranes is achieved over the current state-of-the-art imaging technologies. We observe th...

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