Selective activation of four quasi-equivalent C–H bonds yields N-doped graphene nanoribbons with partial corannulene motifs

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

  • Yixuan Gao - , University of Chinese Academy of Sciences (Autor:in)
  • Li Huang - , University of Chinese Academy of Sciences (Autor:in)
  • Yun Cao - , University of Chinese Academy of Sciences (Autor:in)
  • Marcus Richter - , Professur für Molekulare Funktionsmaterialien (cfaed) (Autor:in)
  • Jing Qi - , University of Chinese Academy of Sciences (Autor:in)
  • Qi Zheng - , University of Chinese Academy of Sciences (Autor:in)
  • Huan Yang - , University of Chinese Academy of Sciences (Autor:in)
  • Ji Ma - , Professur für Molekulare Funktionsmaterialien (cfaed) (Autor:in)
  • Xiao Chang - , University of Chinese Academy of Sciences (Autor:in)
  • Xiaoshuai Fu - , University of Chinese Academy of Sciences (Autor:in)
  • Carlos Andres Palma - , University of Chinese Academy of Sciences (Autor:in)
  • Hongliang Lu - , University of Chinese Academy of Sciences (Autor:in)
  • Yu Yang Zhang - , University of Chinese Academy of Sciences (Autor:in)
  • Zhihai Cheng - , Renmin University of China (Autor:in)
  • Xiao Lin - , University of Chinese Academy of Sciences (Autor:in)
  • Min Ouyang - , University of Maryland, College Park (Autor:in)
  • Xinliang Feng - , Professur für Molekulare Funktionsmaterialien (cfaed), Max Planck Institute of Microstructure Physics (Autor:in)
  • Shixuan Du - , University of Chinese Academy of Sciences, Songshan Lake Materials Laboratory (Autor:in)
  • Hong Jun Gao - , University of Chinese Academy of Sciences, Songshan Lake Materials Laboratory (Autor:in)

Abstract

Selective C–H bond activation is one of the most challenging topics for organic reactions. The difficulties arise not only from the high C–H bond dissociation enthalpies but also the existence of multiple equivalent/quasi-equivalent reaction sites in organic molecules. Here, we successfully achieve the selective activation of four quasi-equivalent C–H bonds in a specially designed nitrogen-containing polycyclic hydrocarbon (N-PH). Density functional theory calculations reveal that the adsorption of N-PH on Ag(100) differentiates the activity of the four ortho C(sp3) atoms in the N-heterocycles into two groups, suggesting a selective dehydrogenation, which is demonstrated by sequential-annealing experiments of N-PH/Ag(100). Further annealing leads to the formation of N-doped graphene nanoribbons with partial corannulene motifs, realized by the C–H bond activation process. Our work provides a route of designing precursor molecules with ortho C(sp3) atom in an N-heterocycle to realize surface-induced selective dehydrogenation in quasi-equivalent sites.

Details

OriginalspracheEnglisch
Aufsatznummer6146
FachzeitschriftNature communications
Jahrgang13
Ausgabenummer1
PublikationsstatusVeröffentlicht - 17 Okt. 2022
Peer-Review-StatusJa

Externe IDs

PubMed 36253383