TY - JOUR
T1 - Self-assembly of alkanedithiols on Au(111) from solution
T2 - Effect of chain length and self-assembly conditions
AU - Millone, María Antonieta Daza
AU - Hamoudi, Hicham
AU - Rodríguez, Luis
AU - Rubert, Aldo
AU - Benítez, Guillermo A.
AU - Vela, María Elena
AU - Salvarezza, Roberto C.
AU - Gayone, J. Esteban
AU - Sánchez, Esteban A.
AU - Grizzi, Oscar
AU - Dablemont, Céline
AU - Esaulov, Vladimir A.
PY - 2009/11/17
Y1 - 2009/11/17
N2 - A comparative study on the adsorption of buthanedithiol (BDT), hexanedithiol (HDT), and nonanedithiol (NDT) on Au(111) from ethanolic and n-hexane solutions and two different preparation procedures is presented. SAM characterization is based on reflection-absorption infrared spectroscopy, electrochemistry, X-ray photoelectron spectroscopy, and time of flight direct recoil spectroscopy. Results indicate that one can obtain a standing-up phase of dithiols and that the amount of the precursor lying-down phase decreases from BDT to NDT, irrespective of the solvent and self-assembly conditions. A good ordering of the hydrocarbon chains in the standing-up configuration is observed for HDT and NDT when the system is prepared in degassed n-hexane with all operations carried out in the dark. Disulfide bridges at the free SH terminal groups are formed for HDT and to a lesser extent for NDT prepared in ethanol in the presence of oxygen, but we found no evidence of ordered multilayer formation in our experiments. No disulfides were observed for BDT that only forms the lying-down phase. Our results demonstrate the key role of the chain length and the procedure (solvent nature and oxygen presence) in controlling the surface structure and chemistry of SAMs dithiols on Au(111).
AB - A comparative study on the adsorption of buthanedithiol (BDT), hexanedithiol (HDT), and nonanedithiol (NDT) on Au(111) from ethanolic and n-hexane solutions and two different preparation procedures is presented. SAM characterization is based on reflection-absorption infrared spectroscopy, electrochemistry, X-ray photoelectron spectroscopy, and time of flight direct recoil spectroscopy. Results indicate that one can obtain a standing-up phase of dithiols and that the amount of the precursor lying-down phase decreases from BDT to NDT, irrespective of the solvent and self-assembly conditions. A good ordering of the hydrocarbon chains in the standing-up configuration is observed for HDT and NDT when the system is prepared in degassed n-hexane with all operations carried out in the dark. Disulfide bridges at the free SH terminal groups are formed for HDT and to a lesser extent for NDT prepared in ethanol in the presence of oxygen, but we found no evidence of ordered multilayer formation in our experiments. No disulfides were observed for BDT that only forms the lying-down phase. Our results demonstrate the key role of the chain length and the procedure (solvent nature and oxygen presence) in controlling the surface structure and chemistry of SAMs dithiols on Au(111).
UR - http://www.scopus.com/inward/record.url?scp=71549133360&partnerID=8YFLogxK
U2 - 10.1021/la901601z
DO - 10.1021/la901601z
M3 - Article
AN - SCOPUS:71549133360
SN - 0743-7463
VL - 25
SP - 12945
EP - 12953
JO - Langmuir
JF - Langmuir
IS - 22
ER -