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pro vyhledávání: '"Eulalia Crespo"'
Autor:
Jordi Mota, Llorenç Bautista, Laura Molina, Jose Garcia-Torres, Eulalia Crespo, Dioulde Sylla
Publikováno v:
Applied Surface Science. 305:292-300
Surface chemical modification of cellulose-based substrates has been carried out by atmospheric pressure plasma enhanced chemical vapor deposition (AP-PECVD) of acrylic acid. The structure/properties relationship of the samples was studied as a funct
Publikováno v:
The Journal of Physical Chemistry C. 111:18381-18386
By using the metallacarborane [Co(C2B9H11)2]-, [1]-, as a doping anion, PPy materials can be made 300−500 mV more resistant to overoxidation. These materials are written as PPy/[A] to indicate a noncovalency between the anion and the PPy and have a
Autor:
Aurélie Friang, Isabel Rojo, Francesc Teixidor, Clara Viñas, Eulalia Crespo, Detlef Gabel, Bohumír Grüner, Sébastien Gentil
Publikováno v:
Polymer. 46:12218-12225
The influence of weakly coordinating anions with different shapes and substituents has been studied to get the overoxidation resistance limit of the material, ORL. The anions utilized are derivatives of [Co(C2B9H11)2]−, [B12H12]2− and [B12H11NH3]
Autor:
Eulalia Crespo, François Bessueille, Abdelhamid Errachid, David Caballero, Christopher A. Mills, Mateu Pla-Roca, Josep Samitier, Francesc Teixidor
Cobaltabisdicarbollide-doped polypyrrole (PPy-[Co(C2B9H11)2]) nanostructures have been produced by directed, potentiostatic electropolymerization using a patterned combination of conducting and insulating thiols (4-aminothiophenol and octadecylmercap
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::941221bfcdc0fc951ad4b493da915b63
https://surrey.eprints-hosting.org/804158/
https://surrey.eprints-hosting.org/804158/
Autor:
Massimiliano Arca, Eulalia Crespo, Raikko Kivekäs, Anna Laromaine, Reijo Sillanpää, Vito Lippolis, Clara Viñas, Francesc Teixidor
Publikováno v:
Dalton transactions (Cambridge, England : 2003). (44)
Reaction of the lithium salt Li[1-R-1,2-closo-C(2)B(10)H(10)] with selenium under mild conditions, followed by hydrolysis gave the diselenide compound (1-Se-2-R-1,2-closo-C(2)B(10)H(10))(2) in contrast to the well-reported mercapto compounds 1-SH-2-R