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Topography versus chemistry - How can we control surface wetting?
J Colloid Interface Sci. 2022 Mar;609:645-656. doi: 10.1016/j.jcis.2021.11.071. Epub 2021 Nov 17.
J Colloid Interface Sci. 2022.
PMID: 34839911
In-Depth Investigation of Copper Surface Chemistry Modification by Ultrashort Pulsed Direct Laser Interference Patterning.
Müller DW, Holtsch A, Lößlein S, Pauly C, Spengler C, Grandthyll S, Jacobs K, Mücklich F, Müller F.
Müller DW, et al.
Langmuir. 2020 Nov 17;36(45):13415-13425. doi: 10.1021/acs.langmuir.0c01625. Epub 2020 Nov 3.
Langmuir. 2020.
PMID: 33141584
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An in-depth evaluation of sample and measurement induced influences on static contact angle measurements.
Lößlein SM, Merz R, Müller DW, Kopnarski M, Mücklich F.
Lößlein SM, et al.
Sci Rep. 2022 Nov 12;12(1):19389. doi: 10.1038/s41598-022-23341-3.
Sci Rep. 2022.
PMID: 36371459
Free PMC article.
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Feasibility of Carbon Nanoparticle Coatings as Protective Barriers for Copper─Wetting Assessment.
Alderete B, Lößlein SM, Bucio Tejeda D, Mücklich F, Suarez S.
Alderete B, et al. Among authors: losslein sm.
Langmuir. 2022 Dec 13;38(49):15209-15219. doi: 10.1021/acs.langmuir.2c02295. Epub 2022 Nov 30.
Langmuir. 2022.
PMID: 36449450
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The Influence of Adventitious Carbon Groups on the Wetting of Copper: A Study on the Effect of Microstructure on the Static Contact Angle.
Lößlein SM, Merz R, Müller DW, Kopnarski M, Mücklich F.
Lößlein SM, et al.
Langmuir. 2023 Aug 29;39(34):12020-12031. doi: 10.1021/acs.langmuir.3c01060. Epub 2023 Aug 14.
Langmuir. 2023.
PMID: 37578946
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