Smart molecular crystal switches

Author:

Hou Ian Cheng‐Yi1ORCID,Li Liang1ORCID,Zhang Hongyu2ORCID,Naumov Panče1345ORCID

Affiliation:

1. Smart Materials Lab New York University Abu Dhabi Abu Dhabi United Arab Emirates

2. State Key Laboratory of Supramolecular Structure and Materials College of Chemistry Jilin University Changchun China

3. Center for Smart Engineering Materials New York University Abu Dhabi Abu Dhabi United Arab Emirates

4. Research Center for Environment and Materials Macedonian Academy of Sciences and Arts Skopje Macedonia

5. Department of Chemistry Molecular Design Institute New York University New York USA

Abstract

AbstractThe multifaceted switches are part of our everyday life from the macroscopic to the molecular world. A molecular switch operating in the solution and in the crystalline state is very different. In this review, we summarize the state‐of‐the‐art of smart molecular crystal switches based on molecular martensites. These crystal switches respond to external stimuli and reversibly change between states, retaining their macroscopic integrity. The operation of the switches predominantly relies on temperature alterations or mechanical stress, with emerging methods based on photothermal effects, photoisomerization, and host‐guest chemistry. The capability of changing the molecular orientation and interaction in smart molecular crystal switches offers opportunities in several applications, including actuators, reversibly shaping structural materials, optoelectronic and magnetic materials, as well as switchable porous materials. Smart molecular crystal switches have vast potential in modern scientific and technological progress. The ongoing research shapes a rich landscape for innovation and future scientific exploration across diverse disciplines.

Publisher

Wiley

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