A Thermosalient and Mechanically Compliant Organic Crystalline Optical Waveguide Switcher

Author:

Di Qi1,Al‐Handawi Marieh B.2,Li Liang23,Naumov Panče2456ORCID,Zhang Hongyu1ORCID

Affiliation:

1. State Key Laboratory of Supramolecular Structure and Materials College of Chemistry Jilin University 130012 Changchun China

2. Smart Materials Lab New York University Abu Dhabi 38044 Abu Dhabi UAE

3. Department of Science and Engineering Sorbonne University Abu Dhabi 38044 Abu Dhabi UAE

4. Center for Smart Engineering Materials New York University Abu Dhabi 129188 Abu Dhabi UAE

5. Research Center for Environment and Materials Macedonian Academy of Sciences and Arts Bul. Krste Misirkov 2 MK-1000 Skopje Macedonia

6. Molecular Design Institute Department of Chemistry New York University 100 Washington Square East 10003 New York USA

Abstract

AbstractThe dense and ordered molecular arrangements endow dynamic molecular crystals with fast response, rapid energy conversion, low energy dissipation, and strong coupling between heat/light and mechanical energy. Most of the known dynamic crystals can only respond to a single stimulus, and materials that can respond to multiple stimuli are rare. Here, we report an organic crystalline material that can be bent plastically and is also thermosalient, as its crystals can move when they undergo a reversible phase transition. The crystals transmit light regardless of their shape or crystalline phase. The combination of light transduction and reversible thermomechanical deformation provides an opportunity to switch the waveguiding capability of the material in a narrow temperature range, which holds a tremendous potential for applications in heat‐averse electronic components, such as central processing units. Unlike existing electronics, the material we report here is completely organic and therefore much lighter, potentially reducing the overall weight of electronic circuits.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jilin Province

Publisher

Wiley

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