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Mechanism of Electrochemical Delamination of Two-Dimensional Materials from Their Native Substrates by Bubbling.


ABSTRACT: A capacitor-based circuit model is proposed to explain the electrochemical delamination of two-dimensional materials from their native substrates where produced gas bubbles squeeze into the interface. The delamination is actually the electric breakdown of the capacitor formed between the solution and substrate. To facilitate the procedure, the backside of the ubstrate has to be shielded so that the capacitor breakdown voltage can be reached. The screening effect can be induced either by nonreactive ions around the electrode or, more effectively, by an undetachable insulator. This mechanism serves as a guideline for the surface science and applications involving the bubbling delamination.

SUBMITTER: Sun J 

PROVIDER: S-EPMC4721807 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Mechanism of Electrochemical Delamination of Two-Dimensional Materials from Their Native Substrates by Bubbling.

Sun Jie J   Fan Xing X   Guo Weiling W   Liu Lihui L   Liu Xin X   Deng Jun J   Xu Chen C  

Sensors (Basel, Switzerland) 20151216 12


A capacitor-based circuit model is proposed to explain the electrochemical delamination of two-dimensional materials from their native substrates where produced gas bubbles squeeze into the interface. The delamination is actually the electric breakdown of the capacitor formed between the solution and substrate. To facilitate the procedure, the backside of the ubstrate has to be shielded so that the capacitor breakdown voltage can be reached. The screening effect can be induced either by nonreact  ...[more]

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