Related Experiment Video
Updated: Jun 6, 2026

Probing C84-embedded Si Substrate Using Scanning Probe Microscopy and Molecular Dynamics
Published on: September 28, 2016
Steric-Induced Bending and Energy Level Shifts Induced by Covalently Bonding Anthracene to Si(111)
Sina G Lewis1, Celena L Marsters2, D E Cotton2
1Department of Physics, University of Colorado Boulder, Boulder, Colorado 80309, United States.
Abstract:
Hybrid structures, formed by joining organic and inorganic semiconductors, can harness the unique photophysical properties of each material to achieve new functionality. In these hybrid systems, the interface between disparate materials must be carefully structured to dictate the properties of the whole. When exciton transfer between materials is the goal, the interface must be crafted to promote electronic coupling between the energy-donating and -accepting layers. Here, we study how covalent attachment of anthracene to a Si(111) surface influences the molecular and electronic structure of the molecule-solid interface. Using a combination of density functional theory (DFT) geometry optimizations and Born-Oppenheimer molecular dynamics (BOMD), we find anthracene molecules twist and distort after bonding to the silicon surface, lowering their symmetry and widening their HOMO-LUMO gap by approximately 160 meV. Electronic sum frequency generation (ESFG) measurements of anthracene-functionalized Si(111) surfaces identify anthracene-associated electronic resonances that are blue-shifted relative to the linear absorption features of anthracene in solution, supporting the predictions. These findings highlight the critical role of molecular distortion in tuning electronic properties at hybrid interfaces, offering insight into the design of functional organic/inorganic materials for optoelectronic applications.
More Related Videos
08:18Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry
Published on: March 4, 2021
08:43Effect of Bending on the Electrical Characteristics of Flexible Organic Single Crystal-based Field-effect Transistors
Published on: November 7, 2016
Related Concept Videos
Conformations of Cycloalkanes
Thermal Sigmatropic Reactions: Overview
Sigmatropic shifts are classified based on an order term [i, j ], where i and j indicate the number of atoms across which each end of the σ bond migrates. Below are examples of a [3,3] sigmatropic shift in 1,5-hexadiene, referred to as...
Conformations of Cyclohexane
The chair form is the most stable and derives its name from its resemblance to the “easy chair.” In the chair conformation, two carbon atoms are arranged out-of-plane — one above and one below, minimizing the torsional strain. In the chair form, the bond angle is very close to the ideal tetrahedral value,...
Chair Conformation of Cyclohexane
The hydrogen atoms linked to carbons are arranged in two different axial and equatorial orientations to achieve this staggered...
[3,3] Sigmatropic Rearrangement of 1,5-Dienes: Cope Rearrangement
π Molecular Orbitals of 1,3-Butadiene
The simplest conjugated diene is 1,3-butadiene: a four-carbon system where each carbon is sp2-hybridized and has an unhybridized p orbital that contains an unpaired electron. According to molecular orbital theory, atomic orbitals combine to form molecular orbitals such that the number...