Principle and application of atomic force microscopy (AFM) for nanoscale investigation of metal corrosion
Author:
Affiliation:
1. National Center for Materials Service Safety , University of Science and Technology , Xueyuan 30 , Beijing, 100083 , PR China
Abstract
Publisher
Walter de Gruyter GmbH
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Link
https://www.degruyter.com/document/doi/10.1515/corrrev-2019-0113/pdf
Reference71 articles.
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2. Ambrish, S., Ansari, K.R., Dheeraj, S.C., Quraishi, M.A., and Savas, K. (2020b). Anti-corrosion investigation of pyrimidine derivatives as green and sustainable corrosion inhibitor for N80 steel in highly corrosive environment: experimental and AFM/XPS study. Sustain. Chem. Pharm. 16: 100257, https://doi.org/10.1016/j.scp.2020.100257.
3. Ansari, K.R., Chauhan, D.S., and Quraishi, M.A. (2020). Chitosan Schiff base: an environmentally benign biological macromolecule as a new corrosion inhibitor for oil & gas industries. Int. J. Biol. Macromol. 144: 305–315, https://doi.org/10.1016/j.ijbiomac.2019.12.106.
4. Antonio, C., Yuguang, C., Oleg, G., and Benjamin, M.O. (2006). High resolution non-contact AFM imaging of liquids condensed onto chemically nanopatterned surfaces. Ultramicroscopy 106: 703–708, https://doi.org/10.1016/j.ultramic.2005.11.009.
5. Arseny, K., Valentin, A., Oleg, P., Andrei, L.K., and Alexander, T. (2018). An atomic force microscopy mode for nondestructive electromechanical studies and its application to diphenylalanine peptide nanotubes. Ultramicroscopy 185: 49–54, https://doi.org/10.1016/j.ultramic.2017.11.009.
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