Three distinct wet chemistry recipes were applied to hydrogen-terminated n- and p-Si(100) surfaces in a comparative study of the covalent grafting of two differently substituted 2,2'-bipyridines. The applied reactions require the use of heat, or visible light under a controlled atmosphere, or a suitable potential in an electrochemical cell. In this last case, hydrogen-terminated silicon is the working electrode in a cathodic electrografting (CEG) reaction, in which it is kept under reduction conditions. The resulting Si-C bound hybrids were characterized by a combination of AFM, dynamic contactangle, and XPS analysis, with the help of theoretical calculations. The three distinct approaches were found to be suitable for obtaining ligand-functionalized Si surfaces. CEG resulted in the most satisfactory anchoring procedure, because of its better correlation between high coverage and preservation of the Si surface from both oxidation and contamination. The corresponding Si-bipyridine hybrid was reacted in a solution of CH3CN containing Cu-1 ions coordinatively bound to the anchored ligands, as evidenced from the XPS binding-energy shift of the N atom donor functions. The reaction gave a 1:2 Cu-bipyridine surface complex, in which two ligands couple to a single Cut ion. The surface complex was characterized by the Cu Auger parameter and Cu/N XPS atomic-ratio values coincident with those for pure, unsupported Cut complex with the same 2,2'bipyridine. Further support for such a specific metal-ligand interaction at the functionalized Si surface came from the distinct values of Cu2p binding energy and the Cu Auger parameter, which were obtained for the species resulting from Cu-1 ion uptake on hydrogen-terminated Si(100)

Cathodic Electrografting of Versatile Ligands on (100) as a Low-Impact Approach for Establishing a Si-C bond: A Surface-Coordination Study of Substituted 2,2'-Bipyridines with CuI Ions.

PALLAVICINI, PIERSANDRO;MANGANO, CARLO PAOLO;
2007-01-01

Abstract

Three distinct wet chemistry recipes were applied to hydrogen-terminated n- and p-Si(100) surfaces in a comparative study of the covalent grafting of two differently substituted 2,2'-bipyridines. The applied reactions require the use of heat, or visible light under a controlled atmosphere, or a suitable potential in an electrochemical cell. In this last case, hydrogen-terminated silicon is the working electrode in a cathodic electrografting (CEG) reaction, in which it is kept under reduction conditions. The resulting Si-C bound hybrids were characterized by a combination of AFM, dynamic contactangle, and XPS analysis, with the help of theoretical calculations. The three distinct approaches were found to be suitable for obtaining ligand-functionalized Si surfaces. CEG resulted in the most satisfactory anchoring procedure, because of its better correlation between high coverage and preservation of the Si surface from both oxidation and contamination. The corresponding Si-bipyridine hybrid was reacted in a solution of CH3CN containing Cu-1 ions coordinatively bound to the anchored ligands, as evidenced from the XPS binding-energy shift of the N atom donor functions. The reaction gave a 1:2 Cu-bipyridine surface complex, in which two ligands couple to a single Cut ion. The surface complex was characterized by the Cu Auger parameter and Cu/N XPS atomic-ratio values coincident with those for pure, unsupported Cut complex with the same 2,2'bipyridine. Further support for such a specific metal-ligand interaction at the functionalized Si surface came from the distinct values of Cu2p binding energy and the Cu Auger parameter, which were obtained for the species resulting from Cu-1 ion uptake on hydrogen-terminated Si(100)
2007
The Chemistry category includes resources that are general in nature and cover a broad spectrum of topics in the chemical sciences. Resources specifically covering analytical chemistry, inorganic and nuclear chemistry, organic chemistry, physical chemistry, and polymer science will be placed in those particular categories. Miscellaneous and applied chemistry resources may be placed in this category when not appropriate for specific subfields in chemistry.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
13
4
1240
1250
Tematica Ex SIR: Sintesi e caratterizzazione di sistemi molecolari multicentrici (supramolecolari) e di sensori fluorescenti per cationi ed anioni e per il riconoscimento di molecole di interesse biologico (Classif. Ex SIR:Articoli su riviste ISI )
monolayers; photoelectron spectroscopy; scanning probe microscopy; silicon; surface chemistry; coordination chemistry; Cu(I)
http://onlinelibrary.wiley.com/doi/10.1002/chem.200600780/abstract
10
info:eu-repo/semantics/article
262
Pallavicini, Piersandro; Mangano, CARLO PAOLO; Annalisa, Aurora; Fabrizio, Cattaruzza; Carlo, Coluzza; Claudio Della, Volpe; Giovanni Di, Santo; Alber...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/34850
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