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Systematic Multidimensional Quantification of Nanoscale Systems From Bimodal Atomic Force Microscopy Data. | LitMetric

Systematic Multidimensional Quantification of Nanoscale Systems From Bimodal Atomic Force Microscopy Data.

ACS Nano

Laboratory for Energy and NanoScience (LENS), Institute Center for Future Energy (iFES), Masdar Institute of Science and Technology, Abu Dhabi, United Arab Emirates 54224.

Published: June 2016

Here we explore the raw parameter space in air in bimodal atomic force microscopy (AFM) in order to enhance resolution, provide multiparameter maps, and produce suitable transformations that lead to physically intuitive maps general enough to be recognized by the broader community, i.e., stiffness, Hamaker constant, and adhesion force. We further consider model free transforms to enhance the raw parameter space in the form of alternative and more intelligible contrast maps. We employ highly oriented pyrolytic graphite, calcite, polypropylene, and dsDNA on mica to demonstrate a systematic form of parameter expansion. The proposed methodology to enhance and interpret a larger parameter space introduces a methodology to tractable multidimensional AFM from raw bimodal AFM maps.

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Source
http://dx.doi.org/10.1021/acsnano.6b02455DOI Listing

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