Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Langmuir. 2010 Feb 2;26(3):1420-3. doi: 10.1021/la9032282.
Reductive desorption of alkanethiols is a tool for spatially and temporally controlled release of small molecules or particles from individually addressable gold electrodes. Here we report on the dynamics of release using fluorophore-terminated C6 or C11 thiols. We show that the release kinetics for C6 thiols are determined solely by diffusive transport, whereas for C11 thiols the release kinetics are attenuated by the low solubility that limits the rate at which the desorbed thiols can diffuse away from the surface. The release of multiple different molecules from the same electrode is demonstrated using red- and green-emitting fluorophores. The fraction of the monolayer released is dependent on the electrode potential.
烷硫醇的还原解吸是一种从可单独寻址的金电极上空间和时间控制释放小分子或粒子的工具。在这里,我们报告了使用荧光团末端的 C6 或 C11 硫醇的释放动力学。我们表明,C6 硫醇的释放动力学仅由扩散输运决定,而对于 C11 硫醇,释放动力学受到低溶解度的限制,这限制了解吸的硫醇从表面扩散的速度。使用红、绿两种荧光染料从同一电极上释放出多种不同的分子。释放的单层部分取决于电极电势。