Results 221 to 230 of about 162,531 (266)
Some of the next articles are maybe not open access.
Advanced Materials, 2013
AbstractElectromechanical effects are ubiquitous in biological and materials systems. Understanding the fundamentals of these coupling phenomena is critical to devising next‐generation electromechanical transducers. Piezoelectricity has been studied in detail, in both the bulk and at mesoscopic scales.
Thanh D, Nguyen +4 more
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AbstractElectromechanical effects are ubiquitous in biological and materials systems. Understanding the fundamentals of these coupling phenomena is critical to devising next‐generation electromechanical transducers. Piezoelectricity has been studied in detail, in both the bulk and at mesoscopic scales.
Thanh D, Nguyen +4 more
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2013
This book presents and introduces ellipsometry in nanoscience and nanotechnology making a bridge between the classical and nanoscale optical behaviour of materials. It delineates the role of the non-destructive and non-invasive optical diagnostics of ellipsometry in improving science and technology of nanomaterials and related processes by illustrating
Maria Losurdo, Kurt Hingerl
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This book presents and introduces ellipsometry in nanoscience and nanotechnology making a bridge between the classical and nanoscale optical behaviour of materials. It delineates the role of the non-destructive and non-invasive optical diagnostics of ellipsometry in improving science and technology of nanomaterials and related processes by illustrating
Maria Losurdo, Kurt Hingerl
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Nature Nanotechnology, 2007
Some of the most famous images in nanoscience and technology have been produced by scanning probe microscopes but, as Chris Toumey explains, there is much more to these images than meets the eye.
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Some of the most famous images in nanoscience and technology have been produced by scanning probe microscopes but, as Chris Toumey explains, there is much more to these images than meets the eye.
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Nanoscale, 2012
Abstract is not available in fulltext.
Barnard, Amanda +3 more
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Abstract is not available in fulltext.
Barnard, Amanda +3 more
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Chemical Society Reviews, 2010
In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on application of the Young-Laplace equation. In classical capillarity the curvature of the meniscus is determined by the confining geometry and the macroscopic contact angle.
van Honschoten, J.W. +2 more
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In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on application of the Young-Laplace equation. In classical capillarity the curvature of the meniscus is determined by the confining geometry and the macroscopic contact angle.
van Honschoten, J.W. +2 more
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International Journal of Modern Physics B, 2012
We deal with the problem of nanoscale superconductivity. Nanoscale superconductivity remains to be one of the most interesting research areas in condensed mater. Recent technology and experiments have fabricated high-quality superconducting MgB 2 nanoparticles.
Kruchinin, S. P., Nagao, H.
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We deal with the problem of nanoscale superconductivity. Nanoscale superconductivity remains to be one of the most interesting research areas in condensed mater. Recent technology and experiments have fabricated high-quality superconducting MgB 2 nanoparticles.
Kruchinin, S. P., Nagao, H.
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2008 IEEE International Symposium on Defect and Fault Tolerance of VLSI Systems, 2008
Summary form only given..Advances have been been made recently in assembling nanoscale devices without using photolithography. This important development, which offers the potential for greatly increasing the density of memory cells and logic gates, introduces a new model of computation and new analytical challenges.
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Summary form only given..Advances have been been made recently in assembling nanoscale devices without using photolithography. This important development, which offers the potential for greatly increasing the density of memory cells and logic gates, introduces a new model of computation and new analytical challenges.
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"Proceedings" of "OilGasScientificResearchProjects" Institute, SOCAR, 2007
We show that a very thin (5-80 nm) gas phase can exist for a long time (>1 h) at the interface between a hydrophobic solid and water. We create the gas phase from CO2, which allows us to determine the chemical identity, phase state, and density via infrared spectroscopy.
Zhang, Xue H. +2 more
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We show that a very thin (5-80 nm) gas phase can exist for a long time (>1 h) at the interface between a hydrophobic solid and water. We create the gas phase from CO2, which allows us to determine the chemical identity, phase state, and density via infrared spectroscopy.
Zhang, Xue H. +2 more
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Nature Nanotechnology, 2015
The increasing miniaturization and resolution of consumer electronics poses quandaries for generating colour in imaging devices, which plasmonic nanostructures may be able to overcome.
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The increasing miniaturization and resolution of consumer electronics poses quandaries for generating colour in imaging devices, which plasmonic nanostructures may be able to overcome.
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2012
Miniaturization is the central theme in modern fabrication technology. Following the introduction of nanofabrication and its significance the two major nanolithographic processes using electron and ion beams are first addressed. These processes are similar to the conventional photolithography by using energetic beams for pattern transfer to the target ...
Tseng Ampere A +3 more
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Miniaturization is the central theme in modern fabrication technology. Following the introduction of nanofabrication and its significance the two major nanolithographic processes using electron and ion beams are first addressed. These processes are similar to the conventional photolithography by using energetic beams for pattern transfer to the target ...
Tseng Ampere A +3 more
openaire +1 more source

