Early-Stage Wear of Polymer Surfaces and Layered Materials Scraped by a Nanotip

Publication typeBook Chapter
Publication date2024-08-31
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CiteScore0.4
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ISSN14344904, 21977127
Abstract
In this chapter we describe two representative applications of atomic force microscopy to investigating early-stage wear on polymeric surfaces and layered materials on the nanoscale. Ripples and exfoliated flakes or chips are the most typical surface structures obtained in each case. On polymers the ripple formation can be interpreted within the Prandtl-Tomlinson mechanism for atomic-scale friction with the evolving surface profile defining the energy landscape sensed by the scanning probe. If the scratching is repeated, nanoplastic particles are extruded from the crests of the ripples and displaced from the places where they were formed. Layered materials are exfoliated all along the scanned track, with the wear products either folded or bent depending on the thickness of the worn material. On multilayer surfaces, but not on monolayers, stick–slip is also observed in the friction force signal acquired while scratching.
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Gnecco E., Khaksar H., Mazo J. J. Early-Stage Wear of Polymer Surfaces and Layered Materials Scraped by a Nanotip // NanoScience and Technology. 2024. pp. 265-276.
GOST all authors (up to 50) Copy
Gnecco E., Khaksar H., Mazo J. J. Early-Stage Wear of Polymer Surfaces and Layered Materials Scraped by a Nanotip // NanoScience and Technology. 2024. pp. 265-276.
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TY - GENERIC
DO - 10.1007/978-3-031-63065-1_12
UR - https://link.springer.com/10.1007/978-3-031-63065-1_12
TI - Early-Stage Wear of Polymer Surfaces and Layered Materials Scraped by a Nanotip
T2 - NanoScience and Technology
AU - Gnecco, Enrico
AU - Khaksar, Hesam
AU - Mazo, Juan J
PY - 2024
DA - 2024/08/31
PB - Springer Nature
SP - 265-276
SN - 1434-4904
SN - 2197-7127
ER -
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@incollection{2024_Gnecco,
author = {Enrico Gnecco and Hesam Khaksar and Juan J Mazo},
title = {Early-Stage Wear of Polymer Surfaces and Layered Materials Scraped by a Nanotip},
publisher = {Springer Nature},
year = {2024},
pages = {265--276},
month = {aug}
}