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Supramolecular Chalcogen‐Bonded Shape Memory Actuators

Year of publication

2025

Authors

Guo, Hongshuang; Rautiainen, J. Mikko; Zeng, Hao; Rissanen, Kari; Priimagi, Arri; Puttreddy, Rakesh

Abstract

Supramolecular liquid crystal elastomers (LCEs) incorporating chalcogen bonds (ChBs) have been synthesized and investigated for shape memory and actuation properties. LCEs featuring strong Se∙∙∙N ChBs (–40 to –43 kJ/mol) exhibit both shape memory effects (SME) and reversible actuation, while those with weaker S∙∙∙N ChBs (–32 to –34 kJ/mol) do not. The Se∙∙∙N-based LCEs transition from one-way to two-way SME after three days at room temperature, enabling programmable 2D/3D shape transformations and rewritable surface patterns. They also enable the fabrication of light-powered crawling robots as well as temperature-responsive knot-like actuators. These results highlight the critical role of the ChB strength and specificity in designing functional materials. Solid-state NMR, Raman spectroscopy, and density functional theory calculations provide further molecular-level insights into ChB interactions, laying the groundwork for advanced supramolecular actuators and shape-morphing LCEs.
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Organizations and authors

University of Jyväskylä

Rissanen Kari Orcid -palvelun logo

Rautiainen Mikko Orcid -palvelun logo

Puttreddy Rakesh Orcid -palvelun logo

Tampere University

Priimagi Arri Orcid -palvelun logo

Zeng Hao Orcid -palvelun logo

Guo Hongshuang

Publication type

Publication format

Article

Parent publication type

Journal

Article type

Original article

Audience

Scientific

Peer-reviewed

Peer-Reviewed

MINEDU's publication type classification code

A1 Journal article (refereed), original research

Publication channel information

Journal/Series

Angewandte Chemie

Volume

64

Issue

30

Article number

e202508101

​Publication forum

51107

​Publication forum level

3

Open access

Open access in the publisher’s service

Yes

Open access of publication channel

Partially open publication channel

Self-archived

Yes

Other information

Fields of science

Chemical sciences; Chemical engineering; Materials engineering

Identified topic

[object Object]

Publication country

Germany

Internationality of the publisher

International

Language

English

International co-publication

No

Co-publication with a company

No

DOI

10.1002/anie.202508101

The publication is included in the Ministry of Education and Culture’s Publication data collection

Yes