Gonella Grazia, Terreni Silvana, Cvetko Dean, Cossaro Albano, Mattera Lorenzo, Cavalleri Ornella, Rolandi Ranieri, Morgante Alberto, Floreano Luca, Canepa Maurizio
Dipartimento di Fisica, Università di Genova, via Dodecaneso 33, 16146 Genova, Italy.
J Phys Chem B. 2005 Sep 29;109(38):18003-9. doi: 10.1021/jp051549t.
We report on a high-resolution X-ray photoemission spectroscopy study on molecular-thick layers of L-cysteine deposited under ultrahigh vacuum conditions on Au(110). The analysis of core level shifts allowed us to distinguish unambiguously the states of the first-layer molecules from those of molecules belonging to the second layer. The first-layer molecules strongly interact with the metal through their sulfur headgroup. The multipeaked structure of the N 1s, O 1s, and C 1s core levels is interpreted in terms of different molecular moieties. The neutral acidic fraction (HSCH2CH(NH2)COOH) is abundant at low coverage likely associated with isolated molecules or dimers. The zwitterionic phase (HSCH2CH(NH3+)COO-) is largely dominant as the coverage approaches the monolayer limit and is related to the formation of ordered self-assembled molecular structures indicated by electron diffraction patterns. The occurrence of a small amount of cationic molecules (HSCH2CH(NH3+)COOH) is also discussed. The second-layer molecules mainly display zwitterionic character and are weakly adsorbed. Mild annealing up to 100 degrees C leads to the desorption of the second-layer molecules leaving electronic states of the first layer unaltered.
我们报告了一项关于在超高真空条件下沉积在Au(110)上的L-半胱氨酸分子层的高分辨率X射线光电子能谱研究。通过对芯能级位移的分析,我们能够明确区分第一层分子的状态与第二层分子的状态。第一层分子通过其硫端基与金属强烈相互作用。N 1s、O 1s和C 1s芯能级的多峰结构是根据不同的分子部分来解释的。中性酸性部分(HSCH2CH(NH2)COOH)在低覆盖率下含量丰富,可能与孤立分子或二聚体有关。两性离子相(HSCH2CH(NH3+)COO-)在覆盖率接近单层极限时占主导地位,并且与电子衍射图所示的有序自组装分子结构的形成有关。还讨论了少量阳离子分子(HSCH2CH(NH3+)COOH)的出现。第二层分子主要表现出两性离子特征且吸附较弱。高达100摄氏度的温和退火导致第二层分子解吸,而第一层的电子态保持不变。