Results 1 to 10 of about 226,979 (300)
Atomic force microscopy in energetic materials research: A review
Modern trends in the development of energetic materials include the various methods of particle surface modification and the widespread use of nanosized powders.
Ekaterina K. Kosareva +2 more
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Probing Italy: A Scanning Probe Microscopy Storyline
Starting from the late 1980’s, scanning probe microscopy has progressively diffused in Italy until today. In this paper, we provide a brief account of the main historical events and a current picture of the distribution of the active groups. A survey was
Franco Dinelli +10 more
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Scanning electrochemical microscopy (SECM) is a versatile scanning probe technique that allows monitoring of a plethora of electrochemical reactions on a highly resolved local scale.
Andreas Karg +5 more
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This article provides data on the scanning tunnelling microscopy (STM), atomic force microscopy (AFM) and Kelvin probe force microscopy (KPFM) images of InAs(001) surface.
Young Min Park +3 more
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Methods for Accuracy Increasing of Solid Brittle Materials Fracture Toughness Determining
Method for determining of the fracture toughness of brittle materials by indentation is described. The critical stress intensity factor KIC quantifies the fracture toughness. Methods were developed and applied to improve the accuracy of KIC determination
V. A. Lapitskaya +3 more
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AFM research of morphology of surface layer sapphire after plasma surface treatment [PDF]
An AFM study of the sapphire surface after plasma treatment was carried out. The AFM images of the sapphire surface in the initial state and after plasma treatment are obtained.
R.R. Nagaplezheva +2 more
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Drug-Release Mechanisms Elucidated by Imaging Techniques: Visualizing the Invisible!
Imaging techniques such as Raman spectroscopy, electron microscopy, laser scanning confocal microscopy, atomic force microscopy, tomography, magnetic resonance imaging, and terahertz are powerful tools to elucidate drug-release mechanisms from different ...
Susanne Florin-Muschert
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The cell membrane is a fundamental biological structure, which is only 6–10 nm thick. It is composed of hundreds of lipid types, which form small and dynamic lipid domains or rafts.
Morgan Robinson +3 more
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Piezoelectric and ferroelectric materials have garnered significant interest owing to their excellent physical properties and multiple potential applications.
Owoong Kwon +3 more
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Dielectric Imaging of Fixed HeLa Cells by In-Liquid Scanning Dielectric Force Volume Microscopy
Mapping the dielectric properties of cells with nanoscale spatial resolution can be an important tool in nanomedicine and nanotoxicity analysis, which can complement structural and mechanical nanoscale measurements. Recently we have shown that dielectric
Martí Checa +4 more
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