Reference health

Nanoscale wear as a stress-assisted chemical reaction

https://doi.org/10.1038/nnano.2012.255
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29/29 checkable references clean · checked 2026-07-22

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

1 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 29 checked references that resolve
resolves10.1016/0043-1648(90)90068-L
Tribology — Origin and future
resolves10.1016/0001-6160(87)90209-4
Overview no. 55 Wear-Mechanism maps
resolves10.1146/annurev.physchem.55.091602.094445
SURFACE CHEMISTRY AND TRIBOLOGY OF MEMS
resolves10.1126/science.283.5402.661
"Dip-Pen" Nanolithography
resolves10.1103/RevModPhys.75.949
Advances in atomic force microscopy
resolves10.1002/smll.200901673
Preventing Nanoscale Wear of Atomic Force Microscopy Tips Through the Use of Monolithic Ultrananocrystalline Diamond Probes
resolves10.1016/j.wear.2008.04.032
Liquid-like tribology of gold studied by in situ TEM
resolves10.1103/PhysRevLett.88.215501
Abrasive Wear on the Atomic Scale
resolves10.1103/PhysRevLett.101.125501
Atomistic Wear in a Single Asperity Sliding Contact
resolves10.1038/nnano.2010.3
Ultralow nanoscale wear through atom-by-atom attrition in silicon-containing diamond-like carbon
resolves10.1021/ja0178618
Molecular-Scale Tribology of Amorphous Carbon Coatings:  Effects of Film Thickness, Adhesion, and Long-Range Interactions
resolves10.1103/RevModPhys.62.251
Reaction-rate theory: fifty years after Kramers
resolves10.1016/S1748-0132(07)70140-8
Nanotribology and MEMS
resolves10.1021/nn100246g
Method for Characterizing Nanoscale Wear of Atomic Force Microscope Tips
resolves10.1023/A:1024457132574
Fundamental Investigation of Micro Wear Rate Using an Atomic Force Microscope
resolves10.1016/j.jmps.2005.02.002
Stress-dependent molecular pathways of silica–water reaction
resolves10.1063/1.1721448
Contact and Rubbing of Flat Surfaces
resolves10.1016/S0043-1648(96)07423-6
Sliding wear of conventional and nanostructured cemented carbides
resolves10.1088/0957-4484/15/7/014
Theoretical approach for the quantification of wear mechanisms on the nanoscale
resolves10.1007/s11249-010-9635-z
On the Application of Transition State Theory to Atomic-Scale Wear
resolves10.1557/mrs2008.248
Fundamental Studies of Nanometer-Scale Wear Mechanisms
resolves10.1063/1.1150021
Calibration of rectangular atomic force microscope cantilevers
resolves10.1557/mrs2008.247
Tribology in Full View
resolves10.1038/nature07748
Friction laws at the nanoscale
resolves10.1098/rspa.1982.0048
The shear properties of Langmuir—Blodgett layers
resolves10.1016/0021-9797(92)90285-T
Adhesion of spheres: The JKR-DMT transition using a dugdale model
resolves10.1016/0021-9797(75)90018-1
Effect of contact deformations on the adhesion of particles
resolves10.1016/j.ultramic.2004.09.009
Characteristics of fracture during the approach process and wear mechanism of a silicon AFM tip
resolves10.1063/1.481208
A reactive potential for hydrocarbons with intermolecular interactions
The 1 reference without a DOI — listed, not checked
no DOI — not checkedMate, C. M. Tribology on the Small Scale: A Bottom Up Approach to Friction, Lubrication, and Wear Ch. 1 (Oxford Univ. Press, 2008).
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