
Scientific Achievement
A bottom-up approach for coupling graphene nanodots (GND) covalently at the edges of graphene nanoribbons (GNR) to create quantum-well-like states for well-defined narrow-band light emission.
Significance and Impact
This work establishes a new strategy to achieve narrow-band emission by engineering interface states of mixed-dimensional GNR-GND heterojunctions with atomic precision.
Research Details
– Covalent heterostructures are formed by fusing GNDs to the edges of GNRs via controlled on-surface reactions of molecular precursors.
– Scanning tunneling microscopy (STM) reveals the quantum-well-like electronic states and photoluminescence (PL) spectra show a defined optical transition energy with an ultra-narrow linewidth.
C. Ma, Z. Xiao, A. A. Puretzky, H. Wang, A. Mohsin, J. Huang, L. Liang, Y. Luo, B. J. Lawrie, G. Gu, W. Lu, K. Hong, J. Bernholc, and A.-P. Li, “Engineering Edge States of Graphene Nanoribbons for Narrow-Band Photoluminescence,” ACS Nano 14, 5090-5098 (2020). DOI: 10.1021/acsnano.0c01737
Related Researchers