JOURNAL ARTICLE

Correlation Between Substrate Morphology and the Initial Stages of Epitaxial Organic Growth: PTCDA/Ag(111)

Pierre L. LévesqueHelder MarchettoThomas SchmidtFlorian MaierHans‐Joachim FreundE. Umbach

Year: 2016 Journal:   The Journal of Physical Chemistry C Vol: 120 (34)Pages: 19271-19279   Publisher: American Chemical Society

Abstract

We have investigated the initial growth of the first two epitaxial layers of PTCDA on a Ag(111) surface consisting of a distribution of flat (111) terraces, separated by single atomic steps or step bunches with a few point defects. By utilizing the low-energy electron microscopy (LEEM) technique in both bright and dark field modes, we are able not only to follow the growth of the first layers but also to distinguish between different rotational and mirror domains and their influence on the growth of subsequent layers. Thus, we learn much about diffusion lengths and barriers, domain sizes, and about the influence of domain boundaries and nucleation centers. The results give deep insight into the growth dynamics, the influence of step orientation, and the quality of the resulting epitaxial layers and lead to the conclusion that the morphology of the substrate surface is likely to be the most influential parameter for the homogeneity of epitaxial layers.

Keywords:
Epitaxy Nucleation Low-energy electron microscopy Materials science Crystallography Substrate (aquarium) Condensed matter physics Morphology (biology) Chemical physics Surface diffusion Homogeneity (statistics) Electron microscope Optoelectronics Optics Nanotechnology Chemistry Layer (electronics) Geology Physics

Metrics

14
Cited By
1.84
FWCI (Field Weighted Citation Impact)
48
Refs
0.86
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

nanoparticles nucleation surface interactions
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Surface and Thin Film Phenomena
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Molecular Junctions and Nanostructures
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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