Cyganik Piotr, Buck Manfred, Wilton-Ely James D E T, Wöll Christof
School of Chemistry, University of St. Andrews, North Haugh, St. Andrews, KY16 9ST, UK.
J Phys Chem B. 2005 Jun 2;109(21):10902-8. doi: 10.1021/jp051378s.
Self-assembled monolayers of omega-(4'-methylbiphenyl-4-yl) alkane thiols CH3(C6H4)2(CH2)(n)SH (BPn, n = 2, 3, and 5) on Au(111) substrates, prepared at room and elevated temperatures, were studied using scanning tunneling microscopy. In contrast to the biphenyl thiol analogues with n = 0 or 1, ordered domains of large size are formed which exhibit small, periodic height variations on a length scale of several nanometers. These are attributed to solitons (or domain walls), resulting from structural mismatch between the molecular adlayer and the gold substrate. The implications of these results for the design of aromatic thiols to cope with stress and yield low-defect density self-assembled monolayers are discussed.
使用扫描隧道显微镜研究了在室温及高温下制备的ω-(4'-甲基联苯-4-基)烷硫醇CH3(C6H4)2(CH2)(n)SH(BPn,n = 2、3和5)在Au(111)衬底上的自组装单分子层。与n = 0或1的联苯硫醇类似物不同,形成了大尺寸的有序畴,在几纳米的长度尺度上呈现出小的周期性高度变化。这些归因于孤子(或畴壁),其由分子吸附层与金衬底之间的结构不匹配产生。讨论了这些结果对设计用于应对应力并产生低缺陷密度自组装单分子层的芳香硫醇的意义。