日本語
 
Help Privacy Policy ポリシー/免責事項
  詳細検索ブラウズ

アイテム詳細


公開

学術論文

N-Heterocyclic Olefins on a Metallic Surface – Adsorption, Orientation and Electronic Influence

MPS-Authors
/persons/resource/persons274001

Landwehr,  Felix       
Interface Science, Fritz Haber Institute, Max Planck Society;

/persons/resource/persons227635

Navarro,  Juan Jesus
Interface Science, Fritz Haber Institute, Max Planck Society;

/persons/resource/persons21628

Heyde,  Markus       
Interface Science, Fritz Haber Institute, Max Planck Society;

/persons/resource/persons22020

Roldan Cuenya,  Beatriz       
Interface Science, Fritz Haber Institute, Max Planck Society;

External Resource
There are no locators available
Fulltext (restricted access)
There are currently no full texts shared for your IP range.
フルテキスト (公開)
公開されているフルテキストはありません
付随資料 (公開)
There is no public supplementary material available
引用

Landwehr, F., Das, M., Tosoni, S., Navarro, J. J., Das, A., Koy, M., Heyde, M., Pacchioni, G., Glorius, F., & Roldan Cuenya, B. (2024). N-Heterocyclic Olefins on a Metallic Surface – Adsorption, Orientation and Electronic Influence. Advanced Materials Interfaces,. doi:10.1002/admi.202400378.


引用: https://hdl.handle.net/21.11116/0000-000F-45AB-3
要旨
N-Heterocyclic olefins (NHOs), possessing highly polarizable and remarkably electron-rich double bonds, have been effectively utilized as exceptional anchors for surface modifications. Herein, the adsorption, orientation, and electronic properties of NHOs on a metal surface are investigated. On Cu(111), the sterically low-demanding IMe-NHO is compared to its analogous IMe-NHC counterpart. High-resolution electron energy-loss spectroscopy (HREELS) measurements show for both molecules a flat-lying ring adsorption configuration. While the NHC adopts a dimer configuration including a Cu adatom, the NHO chemisorbs over a C–Cu bond perpendicular to the surface. This distinct difference leads for the IMe-NHOs to have a higher thermal stability on the surface. Moreover, IMe-NHOs introduce a higher net electron transfer to the surface compared to the IMe-NHCs, which results in a stronger effect on the work function. These results highlight the role of NHOs in surface science as they extend the functionalization capabilities of NHCs into stronger electronic modification.