Analysis of dispersive interactions at polymer/TiAlN interfaces by means of dynamic force spectroscopy

M. Wiesing, T. de los Arcos, M. Gebhard, A. Devi, G. Grundmeier, Physical Chemistry Chemical Physics (2017) 180–190.

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Journal Article | Published | English
Author
Wiesing, M.; de los Arcos, T.; Gebhard, M.; Devi, A.; Grundmeier, G.
Abstract
<p>Dispersion forces due to polarizable subsurface layers govern TiAlN/polymer interactions and decrease by 50% when oxidizing TiAlN to form TiAlO.</p>
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Journal Title
Physical Chemistry Chemical Physics
Page
180-190
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Wiesing M, de los Arcos T, Gebhard M, Devi A, Grundmeier G. Analysis of dispersive interactions at polymer/TiAlN interfaces by means of dynamic force spectroscopy. Physical Chemistry Chemical Physics. 2017:180-190. doi:10.1039/c7cp05373h
Wiesing, M., de los Arcos, T., Gebhard, M., Devi, A., & Grundmeier, G. (2017). Analysis of dispersive interactions at polymer/TiAlN interfaces by means of dynamic force spectroscopy. Physical Chemistry Chemical Physics, 180–190. https://doi.org/10.1039/c7cp05373h
@article{Wiesing_de los Arcos_Gebhard_Devi_Grundmeier_2017, title={Analysis of dispersive interactions at polymer/TiAlN interfaces by means of dynamic force spectroscopy}, DOI={10.1039/c7cp05373h}, journal={Physical Chemistry Chemical Physics}, author={Wiesing, M. and de los Arcos, T. and Gebhard, M. and Devi, A. and Grundmeier, G.}, year={2017}, pages={180–190} }
Wiesing, M., T. de los Arcos, M. Gebhard, A. Devi, and G. Grundmeier. “Analysis of Dispersive Interactions at Polymer/TiAlN Interfaces by Means of Dynamic Force Spectroscopy.” Physical Chemistry Chemical Physics, 2017, 180–90. https://doi.org/10.1039/c7cp05373h.
M. Wiesing, T. de los Arcos, M. Gebhard, A. Devi, and G. Grundmeier, “Analysis of dispersive interactions at polymer/TiAlN interfaces by means of dynamic force spectroscopy,” Physical Chemistry Chemical Physics, pp. 180–190, 2017.
Wiesing, M., et al. “Analysis of Dispersive Interactions at Polymer/TiAlN Interfaces by Means of Dynamic Force Spectroscopy.” Physical Chemistry Chemical Physics, 2017, pp. 180–90, doi:10.1039/c7cp05373h.

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