Real-time time-dependent density functional theory implementation of electronic circular dichroism applied to nanoscale metal-organic clusters
Artikel i vetenskaplig tidskrift, 2021

Electronic circular dichroism (ECD) is a powerful spectroscopy method for investigating chiral properties at the molecular level. ECD calculations with the commonly used linear-response time-dependent density functional theory (LR-TDDFT) framework can be prohibitively costly for large systems. To alleviate this problem, we present here an ECD implementation within the projector augmented-wave method in a real-time-propagation TDDFT framework in the open-source GPAW code. Our implementation supports both local atomic basis sets and real-space finite-difference representations of wave functions. We benchmark our implementation against an existing LR-TDDFT implementation in GPAW for small chiral molecules. We then demonstrate the efficiency of our local atomic basis set implementation for a large hybrid nanocluster and discuss the chiroptical properties of the cluster.

Författare

Esko Makkonen

Aalto-Yliopisto

Tuomas Rossi

Aalto-Yliopisto

Chalmers, Fysik, Kondenserad materie- och materialteori

A. H. Larsen

Simune Atomistics S.L.

O. Lopez-Acevedo

Universidad de Antioquia

Patrick Rinke

Aalto-Yliopisto

Mikael Juhani Kuisma

Jyväskylän Yliopisto

Xi Chen

Aalto-Yliopisto

Journal of Chemical Physics

0021-9606 (ISSN) 1089-7690 (eISSN)

Vol. 154 11 114102

Ämneskategorier

Atom- och molekylfysik och optik

Teoretisk kemi

Datavetenskap (datalogi)

DOI

10.1063/5.0038904

PubMed

33752382

Mer information

Senast uppdaterat

2021-04-22