Siloxane-functionalised surface patterns as templates for the ordered deposition of thin lamellar objects
A novel method is demonstrated for ordered deposition of thin lamellar objects from a liquid environment onto solid substrates by solid/fluid/solid-driven organisation. Surface functionalisation forms a template pattern that accumulates the lamellar objects by site-selective wetting of the target ar...
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Published in | Scientific reports Vol. 9; no. 1; pp. 17952 - 10 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
29.11.2019
Nature Publishing Group |
Subjects | |
Online Access | Get full text |
ISSN | 2045-2322 2045-2322 |
DOI | 10.1038/s41598-019-54507-1 |
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Abstract | A novel method is demonstrated for ordered deposition of thin lamellar objects from a liquid environment onto solid substrates by solid/fluid/solid-driven organisation. Surface functionalisation forms a template pattern that accumulates the lamellar objects by site-selective wetting of the target area without the need for a physical fluid containment. Contrary to conventional handling methods, no mechanical contact occurs, which facilitates the ordered deposition without wrinkles or ruptures. An additive and a subtractive process for the creation of such templates are presented. The subtractive process starts with the complete silanisation of the substrate in the vapour phase followed by site-selective oxygen plasma treatment of the siloxane film. The additive process uses microcontact printing to transfer the target pattern. Both processes are characterised by optical inspection of the wetting contours and it is found that site-selective plasma treatment shows a better pattern fidelity. The patterns obtained by site-selective plasma treatment are also subject to ToF-SIMS analysis and show good chemical contrast between hydrophilic and hydrophobic areas. The ordered deposition of lamellar objects by this new method is demonstrated for 60 nm thick ultramicrotome sections of epoxide resin on pre-patterned glass substrates. |
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AbstractList | A novel method is demonstrated for ordered deposition of thin lamellar objects from a liquid environment onto solid substrates by solid/fluid/solid-driven organisation. Surface functionalisation forms a template pattern that accumulates the lamellar objects by site-selective wetting of the target area without the need for a physical fluid containment. Contrary to conventional handling methods, no mechanical contact occurs, which facilitates the ordered deposition without wrinkles or ruptures. An additive and a subtractive process for the creation of such templates are presented. The subtractive process starts with the complete silanisation of the substrate in the vapour phase followed by site-selective oxygen plasma treatment of the siloxane film. The additive process uses microcontact printing to transfer the target pattern. Both processes are characterised by optical inspection of the wetting contours and it is found that site-selective plasma treatment shows a better pattern fidelity. The patterns obtained by site-selective plasma treatment are also subject to ToF-SIMS analysis and show good chemical contrast between hydrophilic and hydrophobic areas. The ordered deposition of lamellar objects by this new method is demonstrated for 60 nm thick ultramicrotome sections of epoxide resin on pre-patterned glass substrates. A novel method is demonstrated for ordered deposition of thin lamellar objects from a liquid environment onto solid substrates by solid/fluid/solid-driven organisation. Surface functionalisation forms a template pattern that accumulates the lamellar objects by site-selective wetting of the target area without the need for a physical fluid containment. Contrary to conventional handling methods, no mechanical contact occurs, which facilitates the ordered deposition without wrinkles or ruptures. An additive and a subtractive process for the creation of such templates are presented. The subtractive process starts with the complete silanisation of the substrate in the vapour phase followed by site-selective oxygen plasma treatment of the siloxane film. The additive process uses microcontact printing to transfer the target pattern. Both processes are characterised by optical inspection of the wetting contours and it is found that site-selective plasma treatment shows a better pattern fidelity. The patterns obtained by site-selective plasma treatment are also subject to ToF-SIMS analysis and show good chemical contrast between hydrophilic and hydrophobic areas. The ordered deposition of lamellar objects by this new method is demonstrated for 60 nm thick ultramicrotome sections of epoxide resin on pre-patterned glass substrates.A novel method is demonstrated for ordered deposition of thin lamellar objects from a liquid environment onto solid substrates by solid/fluid/solid-driven organisation. Surface functionalisation forms a template pattern that accumulates the lamellar objects by site-selective wetting of the target area without the need for a physical fluid containment. Contrary to conventional handling methods, no mechanical contact occurs, which facilitates the ordered deposition without wrinkles or ruptures. An additive and a subtractive process for the creation of such templates are presented. The subtractive process starts with the complete silanisation of the substrate in the vapour phase followed by site-selective oxygen plasma treatment of the siloxane film. The additive process uses microcontact printing to transfer the target pattern. Both processes are characterised by optical inspection of the wetting contours and it is found that site-selective plasma treatment shows a better pattern fidelity. The patterns obtained by site-selective plasma treatment are also subject to ToF-SIMS analysis and show good chemical contrast between hydrophilic and hydrophobic areas. The ordered deposition of lamellar objects by this new method is demonstrated for 60 nm thick ultramicrotome sections of epoxide resin on pre-patterned glass substrates. |
ArticleNumber | 17952 |
Author | Gamboa, Sofia Madrigal Gliemann, Hartmut Hoffmann, Julian Wacker, Irene Hofmann, Andreas Welle, Alexander Hagenmeyer, Veit Ness, Len Gengenbach, Ulrich Schröder, Rasmus R. |
Author_xml | – sequence: 1 givenname: Julian orcidid: 0000-0002-4105-4123 surname: Hoffmann fullname: Hoffmann, Julian email: julian.hoffmann@kit.edu organization: Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology – sequence: 2 givenname: Sofia Madrigal orcidid: 0000-0002-2990-5909 surname: Gamboa fullname: Gamboa, Sofia Madrigal organization: Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology – sequence: 3 givenname: Andreas orcidid: 0000-0002-3462-2647 surname: Hofmann fullname: Hofmann, Andreas organization: Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology – sequence: 4 givenname: Hartmut surname: Gliemann fullname: Gliemann, Hartmut organization: Institute of Functional Interfaces and Karlsruhe Nano Micro Facility (KNMF), Karlsruhe Institute of Technology – sequence: 5 givenname: Alexander surname: Welle fullname: Welle, Alexander organization: Institute of Functional Interfaces and Karlsruhe Nano Micro Facility (KNMF), Karlsruhe Institute of Technology – sequence: 6 givenname: Irene surname: Wacker fullname: Wacker, Irene organization: Centre for Advanced Materials, Ruprecht-Karls-Universität Heidelberg – sequence: 7 givenname: Rasmus R. surname: Schröder fullname: Schröder, Rasmus R. organization: Centre for Advanced Materials, Ruprecht-Karls-Universität Heidelberg, Cryo Electron Microscopy, Universitätsklinik Heidelberg, BioQuant – sequence: 8 givenname: Len surname: Ness fullname: Ness, Len organization: RMC Boeckeler – sequence: 9 givenname: Veit surname: Hagenmeyer fullname: Hagenmeyer, Veit organization: Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology – sequence: 10 givenname: Ulrich surname: Gengenbach fullname: Gengenbach, Ulrich organization: Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/31784635$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1002_adfm_202302025 crossref_primary_10_1515_mim_2024_0001 crossref_primary_10_1021_acs_chemmater_0c04408 crossref_primary_10_1021_acsnano_2c07910 crossref_primary_10_1021_acsomega_3c02448 crossref_primary_10_1021_acs_langmuir_0c03120 |
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SubjectTerms | 101/62 14 14/28 14/63 631/1647/245/2221 631/535/1258 639/638/542/970 639/925/930/2735 639/925/930/543 Glass substrates Humanities and Social Sciences Hydrophobicity multidisciplinary Plasma Science Science (multidisciplinary) Siloxanes |
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Title | Siloxane-functionalised surface patterns as templates for the ordered deposition of thin lamellar objects |
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