Institute of Particle Technology (LFG) and Cluster of Excellence - Engineering of Advanced Materials (EAM), Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Cauerstrasse 4, Erlangen 91058, Germany.
Phys Chem Chem Phys. 2018 Jul 25;20(29):19382-19389. doi: 10.1039/c8cp02391c.
The formation of octadecylphosphonic acid (ODPA) self-assembled monolayers (SAMs) from 2-propanol solutions on hydroxylated α-Al2O3(0001) surfaces was studied in situ and in real time at the solid/liquid interface. Time-resolved vibrational spectra from sum-frequency generation (SFG) of C-H stretching modes revealed contributions from ODPA's alkyl backbone and the terminal methyl group as well as vibrational bands that originated from the presence of 2-propanol molecules at the α-Al2O3 surface. 2-Propanol signatures in SFG spectra decreased during SAM formation. This is due to adsorption of ODPA molecules which trigger desorption of 2-propanol from the α-Al2O3(0001) surface, so that these sites can be occupied by ODPA molecules. SAM formation was studied for different bulk concentrations of ODPA which changed substantially both the quality and the coverage of the final SAM. At initial stages of SAM growth, SFG spectra are dominated by methylene contributions and are indicative for a low molecular order and coverage of ODPA molecules. For concentrations of ODPA ≤2 mM this situation did not change within reasonable adsorption times (∼16 h) while for 5 and 30 mM concentrations a dramatic increase in molecular order and coverage within the first 2 h of adsorption is observed. Thermodynamic analysis using Langmuir adsorption kinetics provided equilibrium constants and the Gibbs free energy of adsorption between -24 and -28 kJ mol-1.
十八烷基磷酸(ODPA)自组装单分子层(SAM)在氧化α-Al2O3(0001)表面上从异丙醇溶液中的形成在固/液界面上进行了原位和实时研究。来自 C-H 伸缩模式的和频产生(SFG)的时间分辨振动光谱揭示了 ODPA 的烷基主链和末端甲基以及源自 2-丙醇分子在α-Al2O3 表面存在的振动带的贡献。SFG 光谱中 2-丙醇的特征在 SAM 形成过程中减少。这是由于 ODPA 分子的吸附触发了 2-丙醇从α-Al2O3(0001)表面的解吸,因此这些位点可以被 ODPA 分子占据。研究了不同的 ODPA 体浓度对最终 SAM 的质量和覆盖率有很大影响的 SAM 形成。在 SAM 生长的初始阶段,SFG 光谱主要由亚甲基贡献主导,表明 ODPA 分子的低分子有序性和覆盖率。对于浓度为 ODPA≤2mM 的情况,在合理的吸附时间(约 16 小时)内这种情况没有变化,而对于 5 和 30mM 浓度,在吸附的前 2 小时内观察到分子有序性和覆盖率的急剧增加。使用 Langmuir 吸附动力学的热力学分析提供了平衡常数和吸附吉布斯自由能为-24 至-28 kJ mol-1。