4.8 Article

Controlling the Dimensionality of On-Surface Coordination Polymers via Endo- or Exoligation

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 136, 期 26, 页码 9355-9363

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ja5020103

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资金

  1. National Centre of Competence in Research Nanoscience (NCCR-Nano)
  2. Swiss Nanoscience Institute (SNI)
  3. Swiss National Science Foundation [200020-149713, 206021-113149, 206021-121461]
  4. Sao Paulo Research Foundation [2013/04855-0]
  5. University of Heidelberg
  6. The Netherlands Organization for Scientific Research (Chemical Sciences, VIDI Grant) [700.10.424]
  7. European Research Council [ERC-2012-StG 307760-SURFPRO]
  8. Swiss National Science Foundation (SNF) [200020_149713] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

The formation of on-surface coordination polymers is controlled by the interplay of chemical reactivity and structure of the building blocks, as well as by the orientating role of the substrate registry. Beyond the predetermined patterns of structural assembly, the chemical reactivity of the reactants involved may provide alternative pathways in their aggregation. Organic molecules, which are transformed in a surface reaction, may be subsequently trapped via coordination of homo- or heterometal adatoms, which may also play a role in the molecular transformation. The amino-functionalized perylene derivative, 4,9-diaminoperylene quinone-3,10-diimine (DPDI), undergoes specific levels of dehydrogenation (-1 H-2 or -3 H-2) depending on the nature of the present adatoms (Fe, Co, Ni or Cu). In this way, the molecule is converted to an endo- or an exoligand, possessing a concave or convex arrangement of ligating atoms, which is decisive for the formation of either ID or 2D coordination polymers.

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