Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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1.080 Topics available

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977 Locations available

693.932 PEOPLE
693.932 People People

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Moreau, Céline

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (5/5 displayed)

  • 2023Flexoelectric and piezoelectric effects in micro- and nanocellulose films5citations
  • 2022Divergent growth of poly(amidoamine) dendrimer-like branched polymers at the reducing end of cellulose nanocrystals6citations
  • 2021Cellulose Nanofibrils/Xyloglucan Bio-Based Aerogels with Shape Recovery19citations
  • 2011Build-up of single-walled carbon nanotube/cellulose nanocrystal multilayered thin filmscitations
  • 2011Site-Selective Surface Modification Using Enzymatic Soft Lithography23citations

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Chart of shared publication
Trellu, Hanna
1 / 1 shared
Guiffard, Benoit
1 / 30 shared
Leray, Nadège
1 / 1 shared
Cathala, Bernard
5 / 15 shared
Le Scornec, Julien
1 / 2 shared
Villares, Ana
2 / 3 shared
Chemin, Maud
1 / 1 shared
Mandin, Samuel
1 / 1 shared
Talantikite, Malika
1 / 1 shared
Maigret, Jean-Eudes
1 / 13 shared
Novales, Bruno
1 / 1 shared
Moreau, Samuel
1 / 1 shared
Bizot, Herve
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Olivier, Christophe
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Beury, Nadège
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Chauvet, O.
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Bardeau, Jean-François
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Delorme, N.
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Guyomard-Lack, Aurélie
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Co-Authors (by relevance)

  • Trellu, Hanna
  • Guiffard, Benoit
  • Leray, Nadège
  • Cathala, Bernard
  • Le Scornec, Julien
  • Villares, Ana
  • Chemin, Maud
  • Mandin, Samuel
  • Talantikite, Malika
  • Maigret, Jean-Eudes
  • Novales, Bruno
  • Moreau, Samuel
  • Bizot, Herve
  • Olivier, Christophe
  • Beury, Nadège
  • Chauvet, O.
  • Bardeau, Jean-François
  • Delorme, N.
  • Guyomard-Lack, Aurélie
OrganizationsLocationPeople

article

Site-Selective Surface Modification Using Enzymatic Soft Lithography

  • Bardeau, Jean-François
  • Moreau, Céline
  • Cathala, Bernard
  • Delorme, N.
  • Guyomard-Lack, Aurélie
Abstract

Surface modification with functional polymers or molecules offers great promise for the development of smart materials and applications. Here, we describe a versatile and easy-to-use method of site-selective surface modification based on the ease of microcontact printing and the exquisite selectivity of enzymatic degradation. A micropatterned poly-L-lysine (PLL) layer on solid substrates was prepared by enzymatic degradation using trypsin enzyme immobilized on a prestructured poly(dimethlylsiloxane) (PDMS) stamp. After the enzymatic degradation of PLL and the removal of the degradation products, very well defined patterning was revealed over a large scale by fluorescence microscopy and atomic force microscopy (AFM). We investigate the advantage of our method by comparison with traditional microcontact printing and found that lateral diffusion was reduced, yielding a more accurate reproduction of the master. We also demonstrate that the stamp can be reused without reinking. The patterned surface was used for site-selective modification. The strategy was applied to two applications: the first is dedicated to the creation of amino-silane patterned surfaces, and the second illustrates the possibility of patterning polyelectrolyte multilayered thin films.

Topics
  • impedance spectroscopy
  • surface
  • polymer
  • thin film
  • atomic force microscopy
  • gold
  • lithography
  • fluorescence microscopy