• 文献标题:   On-Surface Polymerization: From Polyarylenes to Graphene Nanoribbons and Two-Dimensional Networks
  • 文献类型:   Review, Book Chapter
  • 作  者:   KOCH M, HECHT S, GRILL L
  • 作者关键词:   carbonbased material, cc coupling reaction, molecular conductance, onsurface polymerization, onsurface synthesi, scanning tunneling microscopy, stepgrowth polymerization, surface chemistry, surface science
  • 出版物名称:   FROM POLYPHENYLENES TO NANOGRAPHENES GRAPHENE NANORIBBONS
  • ISSN:   0065-3195 EI 1436-5030 BN 978-3-319-64170-6; 978-3-319-64169-0
  • 通讯作者地址:   Karl Franzens Univ Graz
  • 被引频次:   1
  • DOI:   10.1007/12_2017_4
  • 出版年:   2017

▎ 摘  要

On-surface polymerization is a novel technique for the fabrication of one-and two-dimensional molecular networks confined on a surface and is a rapidly developing field in surface science. The molecular building blocks exhibit pre-defined connection sites at which, after thermal activation and diffusion on the surface, the molecules are linked in a clean environment. Depending on the position and number of these connection sites, activated molecules polymerize to yield chains or two-dimensional networks. The chemical composition of the resulting polymer is precisely defined by the precursor molecules. We review current developments in the field of on-surface polymerization and present different examples, including the fabrication of graphene nanoribbons. We introduce reductive Ullmann-type coupling as well as Scholl-type cyclodehydrogenation for fabrication of graphene nanoribbons of increasing width. The surface plays a crucial role during the activation and polymerization processes because it serves as a catalyst, promotes molecular diffusion, and has a huge influence on the final molecular architecture. One-dimensional polymers can act as molecular wires and their conductance has been studied at the level of individual chains. In addition, we discuss two-dimensional networks and describe recent progress in attempts to improve their quality using sequential activation or defect-healing.