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Updated: Aug 15, 2026

Nanoscale Characterization of Liquid-Solid Interfaces by Coupling Cryo-Focused Ion Beam Milling with Scanning Electron Microscopy and Spectroscopy
Published on: July 14, 2022
Nanoscale wear and machining behavior of nanolayer interfaces
Xueyuan Nie1, Peng Zhang, Anita M Weiner
1Department of Mechanical, Automotive & Materials Engineering, University of Windsor, Windsor, Ontario N9E 3W9, Canada. xnie@uwindsor.ca
Abstract:
An atomic force microscope was used to subnanometer incise a nanomultilayer to consequently expose individual nanolayers and interfaces on which sliding and scanning nanowear/machining have been performed. The letter reports the first observation on the nanoscale where (i) atomic debris forms in a collective manner, most-likely by deformation and rupture of atomic bonds, and (ii) the nanolayer interfaces possess a much higher wear resistance (desired for nanomachines) or lower machinability (not desired for nanomachining) than the layers.

