| Reference : Process for depositing strong adherend polymer coating onto an electrically conductive s... |
| Patent : Patent | |||
| Physical, chemical, mathematical & earth Sciences : Chemistry Engineering, computing & technology : Materials science & engineering | |||
| http://hdl.handle.net/2268/92967 | |||
| Process for depositing strong adherend polymer coating onto an electrically conductive surface | |
| English | |
| Bertrand, Olivier [ > > ] | |
Jérôme, Robert [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Gautier, Sandrine [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Maquet, Véronique [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
Detrembleur, Christophe [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
Jérôme, Christine [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Voccia, Samuel [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Claes, Michaël [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Lou, Xudong [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| Labaye, David-Emmanuel [University of Liège (ULg) > Department of Chemistry > Center for Education and Research on Macromolecules (CERM) > >] | |
| 24-Dec-2004 | |
| 2002-06-03 | |
| - | |
| JP 2004538132 | |
| WO2002EP06433 20020603; US20010297714P 20010604 | |
| none | |
| Japan | |
| University of Liège (ULg) | |
| B05D7/24; C08F2/58; C08F265/04; C08F283/06; C08F285/00; C08F290/00; C08F290/06; C08F291/00; C08F292/00; C08F293/00; C08F8/00; C09D125/18; C09D133/14; C09D151/00; C09D151/08; C09D151/10; C09D167/00; C09D171/02; C09D5/00; C09D5/25; C09D5/44; C09D7/12; C09J151/00; C09J151/08; C09J151/10; C25D13/08; C25D9/02; (IPC1-7): B05D7/24; C08F292/00; C09D125/18; C09D133/14; C09D167/00; C09D171/02; C09D5/00; C09D5/25; C09D5/44; C09D7/12; C25D13/08; C25D9/02 | |
| C08F2/58; C08F265/04; C08F283/06; C08F285/00; C08F290/00; C08F290/06; C08F291/00; C08F293/00B; C08F8/00; C09D151/00B; C09D151/10; C09D5/44F; C09J151/00B; C09J151/10; C09D151/00B; C09D151/08; C09J151/00B; C09J151/08 | |
| - | |
| - | |
| [en] Process for depositing by electrografting a strong adherent polymer coating onto an electrically conductive surface comprising an electrochemical grafting at the surface of an active monomer for forming a primer coating P onto said surface and having as general formula: X0 (meth)acrylate wherein X is either part of a preformed polymer or is an intermediate agent for polyaddition reaction or is an anchoring group for attachment of a molecule having at least one complementary reactive group. Such process allows formation of new primer by one-step electro-grafting of a reactive polymer called macromonomer.; Such process also allows further modification of an initial electrografted polymer (called primer coating) to increase the coating thickness by the so-called grafting-from technique i.e. polymerization of a second monomer or to introduce other types of polymers(also called top coating) via covalent attachment between the primer and the top coating through the X ester group by the so called grafting onto technique. Such process also allows to graft onto the primer coating compounds like functional polymer, peptide, protein, oligonucleotide, dyes, drugs, anti-bacterian compounds. | |
| Center for Education and Research on Macromolecules (CERM) | |
| Researchers | |
| http://hdl.handle.net/2268/92967 | |
| http://worldwide.espacenet.com/publicationDetails/biblio?CC=JP&NR=2004538132T&KC=T&FT=D&date=20041224&DB=EPODOC&locale=fr_be |
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