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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Characterization of porphyrin surface orientation in monolayers on au(111) and si(100) using spectroscopically labeled molecules
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Characterization of porphyrin surface orientation in monolayers on au(111) and si(100) using spectroscopically labeled molecules

机译:使用光谱标记的分子表征au(111)和si(100)上单层中的卟啉表面取向

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摘要

The synthesis and surface IR characterization are reported for a series of porphyrins bearing vibrational spectroscopic labels that afford distinction of the two in-plane axes of the porphyrin ring. The labeled porphyrins include three different types of tethers for surface attachment, those containing either methylthio (-CH2S-) or benzylthio (-BzS-) for attachment to either Au or Si and a tripodal alkenyl group for attachment to Si. The spectroscopic labels are placed so as to enable distinction between the methyl group of a p-tolyl substituent that lies along the molecular axis distal to the tether versus the p-tolyl substituents that lie along the orthogonal in-plane axis lateral to the tether. The porphyrins include isotopically labeled species containing CD3 and species wherein a CF3 replaces CH3. The spectroscopically labeled molecules allow evaluation of both the tilt angle (theta) with respect to the surface normal and the rotation angle (phi) about the molecular axis. These two angles cannot be uniquely determined for typical porphyrins because the in-plane modes of the porphyrin are (nearly) degenerate, and unique vibrational signatures cannot be identified that define the two orthogonal in-plane axes. The surface IR studies suggest that all of the porphyrins on both Au and Si exhibit a distribution of tilt and rotation angles. The distribution of phi angles is (nearly) random about the molecular axis; the distribution of tilt angles is less broad, owing to steric interactions between the porphyrin substituents and the surface. The surface coverage affects the distribution of both the tilt and rotation angles. At lower surface coverage, the molecules exhibit larger tilt angles and rotation angles, that is, the porphyrin is more coplanar with the surface. The fact that all of the porphyrins, which bear structurally different types of tethers, on both Au and Si exhibit qualitatively similar surface orientation characteristics suggests that the adsorption geometry is primarily controlled by properties intrinsic to the porphyrin macrocycle rather than by properties of the tether and/or the surface.
机译:报道了一系列带有振动光谱标记的卟啉的合成和表面红外表征,这些标记提供了卟啉环的两个平面内轴的区别。标记的卟啉包括三种不同类型的用于表面附着的系链,其中含有甲硫基(-CH2S-)或苄硫基(-BzS-)用于附着在Au或Si上以及三脚架烯基用于附着在Si上。放置光谱标记以便能够区分沿着系绳远端的分子轴位于对甲苯基取代基的甲基和沿着系绳侧面的正交平面内轴位于对甲苯基取代基上。卟啉包括含有CD3的同位素标记的物质和其中CF3代替CH3的物质。光谱标记的分子可以评估相对于表面法线的倾斜角(θ)和绕分子轴的旋转角(phi)。对于典型的卟啉,这两个角度无法唯一确定,因为卟啉的面内模态(几乎)已退化,并且无法识别定义两个正交面内轴的独特振动特征。表面红外研究表明,金和硅上的所有卟啉均表现出倾斜角和旋转角的分布。 phi角的分布在分子轴上几乎是随机的。由于卟啉取代基和表面之间的空间相互作用,倾斜角的分布较宽。表面覆盖率会影响倾斜角度和旋转角度的分布。在较低的表面覆盖率下,分子表现出较大的倾斜角和旋转角,也就是说,卟啉与表面更共面。所有在Au和Si上都带有结构不同类型的系链的卟啉均显示出在质量上相似的表面取向特性,这一事实表明,吸附几何形状主要由卟啉大环固有的性质控制,而不是由系链和/或表面。

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