نتایج جستجو برای: nano electronics

تعداد نتایج: 135616  

2015
Yuhang Wang Kehan Zhao Xiaolan Shi Geng Li Guanlin Xie Xubo Lai Jun Ni Liuwan Zhang

The fabrication and control of the conductive surface and interface on insulating SrTiO3 bulk provide a pathway for oxide electronics. The controllable manipulation of local doping concentration in semiconductors is an important step for nano-electronics. Here we show that conductive patterns can be written on bare SrTiO3 surface by controllable doping in nanoscale using the mechanical interact...

2012
Andrii B. Golovin Jeremy Stromer Liubov Kreminska

We describe a new dichroic polarizers made by ordering silver nano-fibers to aligned layers. The aligned layers consist of nano-fibers and self-assembled molecular aggregates of lyotropic liquid crystals. Unidirectional alignment of the layers is achieved by means of mechanical shearing. Aligned layers of silver nano-fibers are partially transparent to a linearly polarized electromagnetic radia...

2006
Rachela Popovtzer Tova Neufeld Judith Rishpon Yosi Shacham-Diamand

Electrochemical detection of biological reactions using a novel nano-bio-chip array Rachela Popovtzer a,∗, Tova Neufeld b, Eliora z. Ron b, Judith Rishpon b, Yosi Shacham-Diamand a a Department of Electrical Engineering, Physical Electronics and the TAU Research Institute for Nano Science and Nano-technologies, Tel-Aviv University, Tel-Aviv, Israel b Department of Molecular Microbiology and Bio...

2014
Seong Soo A. An Sanghoon Lee

Research areas : Organic Electronics and Nano-fabrication-Our recent research theme is stretchable & patchable electronics based on polymeric substrates. Differ from other groups, we mainly deals with organic electronics by using UV-curable polymers as flexible substrates-We develop a novel fabrication technique for integrated organic devices on substrates with complex structure. Free-standing ...

2007
Robert W. Dutton Edwin C. Kan

The challenges of computational electronics are considered from the perspective of process simulation. Essential limitations for device scaling posed from a technology point of view are discussed along with many new research opportunities. The key areas considered include: bulk processing, interconnect technology and software engineering for computational electronics.

Journal: :Philosophical transactions. Series A, Mathematical, physical, and engineering sciences 2010
James Alfred Walker Richard Sinnott Gordon Stewart James A Hilder Andy M Tyrrell

The project Meeting the Design Challenges of nano-CMOS Electronics (http://www.nanocmos.ac.uk) was funded by the Engineering and Physical Sciences Research Council to tackle the challenges facing the electronics industry caused by the decreasing scale of transistor devices, and the inherent variability that this exposes in devices and in the circuits and systems in which they are used. The proj...

2017

Nano particles have a wide range of applications such as electronics, catalysis, chemistry energy and medicine and have thus gained commercial acceptance [1]. Besides improving their functionality, the use of nano technology can result in the production of textiles with completely novel properties or the combination of various functions [2]. Such multifunctional textiles include antistatic text...

2011
S.M.U. Ali M. Kashif Z. H. Ibupoto M. Fakhar-e-Alam U. Hashim M. Willander

S.M.U. Ali, M. Kashif , Z.H. Ibupoto, M. Fakhar-e-Alam, U. Hashim, M. Willander Physical Electronics and Nanotechnology Division, Department of Science and Technology, Campus Norrköping, Linköping University, SE-60174 Norrköping, Sweden Department of Electronic Engineering, NED University of Engineering and Technology, Karachi-75270, Pakistan Nano Biochip Research Group, Institute of Nano Elect...

2015
D. E. Tranca S. G. Stanciu R. Hristu C. Stoichita S. A. M. Tofail G. A. Stanciu

A new method for high-resolution quantitative measurement of the dielectric function by using scattering scanning near-field optical microscopy (s-SNOM) is presented. The method is based on a calibration procedure that uses the s-SNOM oscillating dipole model of the probe-sample interaction and quantitative s-SNOM measurements. The nanoscale capabilities of the method have the potential to enab...

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