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Sensors (Switzerland), ISSN 1424-8220, 06/2017, Volume 17, Issue 6, p. 1194
A new in-process atomic-force microscopy (AFM) based inspection is presented for nanolithography to compensate for any deviation such as instantaneous... 
AFM | Nanomachining | In-process inspection | Nanoscale inspection | Probes | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | DIMENSIONAL INSPECTION | INSTRUMENTS & INSTRUMENTATION | nanoscale inspection | nanomachining | probes | in-process inspection | Atomic force microscopy | Microscopy | Lithography | Inspection | Deviation | Microscopes | Nanotechnology
Journal Article
Cement and Concrete Composites, ISSN 0958-9465, 02/2013, Volume 36, Issue 1, pp. 48 - 55
The objective of this work was to better understand how atomic force microscopy (AFM) and lateral force microscopy (LFM) techniques can be used as tools to... 
Lateral force microscope (LFM) | Mortar | Cement | Atomic force microscope (AFM) | Interfacial transition zone (ITZ) | Nanostructure | Cement hydrates | CONSTRUCTION & BUILDING TECHNOLOGY | PASTE | MATERIALS SCIENCE, COMPOSITES | MICROSTRUCTURE | CONCRETE | Atomic force microscopy | Porosity | Microscope and microscopy | Hydrates
Journal Article
Journal of Heat Transfer, ISSN 0022-1481, 02/2017, Volume 139, Issue 2, pp. 020904 - 020904-1
Atomic force microscopy (AFM) is one of the most effective tools in nanotechnology researches. Using the raster scanning method with a soft cantilever, three... 
Self assembly | Atomic force microscopy | Multilayers | Monolayers | Boiling points | Silicon | Polymeric films | Mica
Journal Article
Shengwu Gongcheng Xuebao/Chinese Journal of Biotechnology, ISSN 1000-3061, 09/2017, Volume 33, Issue 9, pp. 1399 - 1410
Because of the nanometre resolution, piconewton force sensitivity, label-free technique and the ability to operate in liquid environments, atomic force... 
Bacterial biofilms | Mechanical properties | Atomic force microscopy (AFM) | Interaction forces | Ultra-morphology | Bacterial Adhesion | Elasticity | Microscopy, Atomic Force | Bacteria - growth & development | Biofilms
Journal Article
Microscopy and Microanalysis, ISSN 1431-9276, 08/2018, Volume 24, Issue S1, pp. 1078 - 1079
Journal Article
Colloids and Surfaces A: Physicochemical and Engineering Aspects, ISSN 0927-7757, 10/2013, Volume 434, pp. 154 - 163
Journal Article
Biophysical Journal, ISSN 0006-3495, 02/2016, Volume 110, Issue 3, pp. 498a - 499a
Journal Article
POLYMERS, ISSN 2073-4360, 05/2019, Volume 11, Issue 5, p. 832
The capability of Atomic Force Microscopy (AFM) to characterize composite material interfaces can help in the design of new carbon-based nanocomposites by... 
REDUCED GRAPHENE OXIDE | carbonaceous nanofillers | POLYMER SCIENCE | epoxy nanocomposites | Thermosetting resins | NANOFILLERS | exfoliated graphite | surface analysis | Atomic Force Microscopy (AFM) | SURFACE | FTIR analysis | BARRIER PROPERTIES | MORPHOLOGY
Journal Article
Applied Spectroscopy, ISSN 0003-7028, 10/2011, Volume 65, Issue 10, pp. 1145 - 1150
Atomic force microscopy (AFM) and infrared (IR) spectroscopy have been combined in a single instrument (AFM-IR) capable of producing sub-micrometer spatial... 
Atomic force microscopy | Poly(hydroxyalkanoate) | AFM | PHA | Polymer | IR spectroscopy | Infrared microspectroscopy | INSTRUMENTS & INSTRUMENTATION | SPECTROSCOPY
Journal Article
Journal of the Mechanical Behavior of Biomedical Materials, ISSN 1751-6161, 07/2019, Volume 95, pp. 103 - 115
A comparative analysis of T-lymphocyte mechanical data obtained from Micropipette Aspiration (MPA) and Atomic Force Microscopy (AFM) is presented. Results... 
Elastic modulus | Finite size effect | Classical models | T cell | Mechanobiology | STEM-CELLS | MATERIALS SCIENCE, BIOMATERIALS | VISCOELASTIC PROPERTIES | ENGINEERING, BIOMEDICAL | INDENTATION | CANCER | ADHESION | NONADHERENT CELLS | STIFFNESS | VARIANCE TEST | ELASTIC-MODULUS | ARTICULAR CHONDROCYTES | Atomic force microscopy | Usage | Mechanical properties | Models | T cells | Pipettes | Testing
Journal Article