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01-03-2025 | Original Paper

Counterion-Driven Mechanochemical Reactions at TC4 Alloy/SiO2 Interfaces: Electrical Double Layer and Dynamic Ionic Radius

Authors: Jinwei Liu, Xin Zeng, Peng Zhang, Xiang Peng, Deping Yu

Published in: Tribology Letters | Issue 1/2025

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Abstract

The study focuses on enhancing the mechanochemical removal behavior of TC4 alloy using alkali metal ions (Li+, Na+, K+) in an alkaline environment. It investigates the role of these ions in reducing the thickness of the electrical double layer and dynamic ionic radius, which favors the removal rate. The authors systematically analyze the impact of different counterions on the removal rate and surface quality of the alloy, providing insights into the mechanisms involved. The study employs advanced characterization techniques such as SEM, HRTEM, EDS, and XPS to evaluate the polished surfaces and substrates. The results demonstrate that alkali metal ions promote mechanochemical removal through physical adsorption, offering a deeper understanding of the polishing performance limitations in CMP of titanium alloys.

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Literature
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Metadata
Title
Counterion-Driven Mechanochemical Reactions at TC4 Alloy/SiO2 Interfaces: Electrical Double Layer and Dynamic Ionic Radius
Authors
Jinwei Liu
Xin Zeng
Peng Zhang
Xiang Peng
Deping Yu
Publication date
01-03-2025
Publisher
Springer US
Published in
Tribology Letters / Issue 1/2025
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-024-01939-0

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