Spatial Resolution of a Type II Heterojunction in a Single Bipolar Molecule

Tao C, Sun J, Zhang X, Yamachika R, Wegner D, Bahri Y, Samsonidze G, Cohen ML, Louie SG, Tilley TD, Segalman RA, Crommie MF

Research article (journal) | Peer reviewed

Abstract

Bipolar molecules incorporating donor and acceptor components within a single molecule create exciting device opportunities due to their possible use as nanoscale p-n heterojunctions. Here we report a direct characterization of the internal electronic structure of a single bipolar molecular heterojunction, including subnanometer features of the intramolecular donor-acceptor interface. Angstrom-resolved scanning tunneling spectroscopy was used to map the energy levels and spatial extent of molecular orbitals across the surface of an individual bipolar molecule, bithiophene naphthalene diimide (BND). We find that individual BND molecules exhibit type II heterojunction behavior with orbital energy shifts occurring over subnanometer intramolecular interface distances. Comparison of this behavior with first-principles theoretical modeling provides new insights into the optimization of these molecular systems.

Details about the publication

JournalNano Letters (Nano Lett.)
Volume9
Issue12
Page range3963-3967
StatusPublished
Release year2009
Language in which the publication is writtenEnglish
DOI10.1021/nl901860n

Authors from the University of Münster

Wegner, Daniel
Institute of Physics (PI)