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Gold-Induced Desulfurization in a Bis(ferrocenyl) Alkane Dithiol (CROSBI ID 263724)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pensa, Evangelina ; Karpowicz, Rafal ; Jabłoński, Artur ; Trzybiński, Damian ; Woźniak, Krzysztof ; Šakić, Davor ; Vrček, Valerije ; Long, Nicholas J. ; Albrecht, Tim ; Kowalski, Konrad Gold-Induced Desulfurization in a Bis(ferrocenyl) Alkane Dithiol // Organometallics, 38 (2019), 9; 2227-2232. doi: 10.1021/acs.organomet.9b00175

Podaci o odgovornosti

Pensa, Evangelina ; Karpowicz, Rafal ; Jabłoński, Artur ; Trzybiński, Damian ; Woźniak, Krzysztof ; Šakić, Davor ; Vrček, Valerije ; Long, Nicholas J. ; Albrecht, Tim ; Kowalski, Konrad

engleski

Gold-Induced Desulfurization in a Bis(ferrocenyl) Alkane Dithiol

Thiol-modified ferrocenes on gold have been archetypical model systems for many fundamental charge transfer and other studies, since both thiol-gold and ferrocene redox chemistry are considered to be well-understood. Thus unexpectedly, we found that for a representative of a new class of flexibly linked bis-ferrocenyl compounds, namely, 1-10-bis(1-ferrocenyl)decane dithiol, surface immobilization on gold failed. Instead, in the presence of gold, molecular decomposition took place, resulting in sulfur-based adlayers and well-defined molecular elimination products, for which we provide spectroscopic evidence. Careful control experiments and comparison with related ferrocene compounds provide insight into the mechanism of the observed elimination reactions, as a combined effect of the molecular structure and the nature of the gold/sulfur bond. These findings, thus, have a broader impact on the design of molecular adlayers, for example, in the context of surface functionalization in sensing or the synthesis of gold nanoparticles.

ferrocene, gold, nanoparticles, sulfur

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Podaci o izdanju

38 (9)

2019.

2227-2232

objavljeno

0276-7333

1520-6041

10.1021/acs.organomet.9b00175

Povezanost rada

Kemija, Farmacija

Poveznice
Indeksiranost