Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8037765 | Ultramicroscopy | 2018 | 6 Pages |
Abstract
Nondestructive scanning probe microscopy of fragile nanoscale objects is currently in increasing need. In this paper, we report a novel atomic force microscopy mode, HybriD Piezoresponse Force Microscopy (HD-PFM), for simultaneous nondestructive analysis of piezoresponse as well as of mechanical and dielectric properties of nanoscale objects. We demonstrate this mode in application to self-assembled diphenylalanine peptide micro- and nanotubes formed on a gold-covered substrate. Nondestructive in- and out-of-plane piezoresponse measurements of tubes of less than 100â¯nm in diameter are demonstrated for the first time. High-resolution maps of tube elastic properties were obtained simultaneously with HD-PFM. Analysis of the measurement data combined with the finite-elements simulations allowed quantification of tube Young's modulus. The obtained value of 29â¯Â±â¯1â¯GPa agrees well with the data obtained with other methods and reported in the literature.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Arseny Kalinin, Valentin Atepalikhin, Oleg Pakhomov, Andrei L. Kholkin, Alexander Tselev,