Fosser Kari A, Kang Joo H, Nuzzo Ralph G, Wöll Christof
Department of Chemistry and Frederick Seitz Materials Research Laboratory, University of Illinois, Urbana, Illinois 61801, USA.
J Chem Phys. 2007 May 21;126(19):194707. doi: 10.1063/1.2735595.
The vibrational spectra of linear alkanes, with lengths ranging from n-propane to n-octane, were examined on a copper surface by reflection-absorption infrared spectroscopy. The appearance and frequency of the "soft mode," a feature routinely seen in studies of saturated hydrocarbons adsorbed on metals, were examined and compared between the different adsorbates. The frequency of the mode was found to be dependent on both the number of methylene units of each alkane as well as specific aspects of the order of the monolayer phase. Studies of monolayer coverages at different temperatures provide insights into the nature of the two-dimensional (2D) melting transitions of these adlayer structures, ones that can be inferred from observed shifts in the soft vibrational modes appearing in the C-H stretching region of the infrared spectrum. These studies support recently reported hypotheses as to the origins of such soft modes: the metal-hydrogen interactions that mediate them and the dynamics that underlay their pronounced temperature dependencies. The present data strongly support a model for the 2D to one-dimensional order-order phase transition arising via a continuous rather than discrete first-order process.
通过反射吸收红外光谱法,在铜表面研究了链长从正丙烷到正辛烷的线性烷烃的振动光谱。对“软模式”的出现和频率进行了研究,“软模式”是吸附在金属上的饱和烃研究中经常出现的一个特征,并在不同吸附质之间进行了比较。发现该模式的频率既取决于每种烷烃的亚甲基单元数量,也取决于单层相序的特定方面。在不同温度下对单层覆盖度的研究,为这些吸附层结构的二维(2D)熔化转变的性质提供了见解,这些转变可以从红外光谱中C-H伸缩区域出现的软振动模式的观测位移推断出来。这些研究支持了最近关于此类软模式起源的假设:介导它们的金属-氢相互作用以及其明显温度依赖性背后的动力学。目前的数据有力地支持了一个二维到一维有序-有序相变的模型,该相变是通过连续而非离散的一级过程产生的。