Dimensionality-dependent electronic and vibrational dynamics in low-dimensional organic-inorganic tin halides

Y Yanmei He X Xinyi Cai (Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering) R Rafael B. Araujo Y Yibo Wang S Sankaran Ramesh J Junsheng Chen M Muyi Zhang T Tomas Edvinsson F Feng Gao T Tõnu Pullerits (Chemical Physics and NanoLund, Lund University , Box 124, 22100 Lund,)

Abstract

Abstract Photo-induced dynamics of electronic processes are driven by the coupling between electronic and nuclear degrees of freedom. Here, we construct one- and two-dimensional organic-inorganic tin halides to investigate how dimensionality controls exciton-phonon coupling and exciton self-trapping. The results show that a one-dimensional system has strong exciton-phonon coupling leading to excitation-independent self-trapped exciton emission, whereas a two-dimensional system exhibits over ten times weaker coupling resulting in free exciton emission. The difference originates from enhanced Anderson localization in a one-dimensional system. Femtosecond transient absorption experiments directly resolve room-temperature vibrational wavepackets in a one-dimensional system, some of which propagate along the self-trapped-exciton potential energy surface. A combination of wagging and asymmetric stretching motions (~106 cm -1 ) in tin iodide is identified as such a mode, inducing exciton self-trapping. While no room-temperature wavepackets are observed in a two-dimensional system. These findings uncover the interplay between dimensionality-dependent exciton-phonon coupling and electronic/nuclear dynamics, offering constructive guidance to develop multifunctional organic-inorganic metal halides.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 15, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

Y

Yanmei He

X

Xinyi Cai

Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering

R

Rafael B. Araujo

Y

Yibo Wang

S

Sankaran Ramesh

J

Junsheng Chen

M

Muyi Zhang

T

Tomas Edvinsson

F

Feng Gao

T

Tõnu Pullerits

Chemical Physics and NanoLund, Lund University , Box 124, 22100 Lund,