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Ferroelastic ionic organic crystals that self-heal to 95%

Engineering and Technology

Ferroelastic ionic organic crystals that self-heal to 95%

M. B. Al-handawi, P. Commins, et al.

This groundbreaking research reveals how anilinium bromide crystals can recover up to 49% of their integrity in seconds and an impressive 95% after 100 minutes! Thanks to ferroelastic detwinning and strong ionic bonding, these findings open new horizons for organic crystals in the field of durable optoelectronics, conducted by a talented team of researchers.... show more
Abstract
The realm of self-healing materials integrates chemical and physical mechanisms that prevent wear and fracturing and extend the operational lifetime. Unlike the favorable rheology of amorphous soft materials that facilitates efficient contact between fragments, the efficiency of recovery of atomistically ordered materials is restricted by slower interfacial mass transport and the need for ideal physical alignment, which limits their real-world application. We report drastic enhancements in efficiency and recovery time in the self-healing of anilinium bromide, challenging these limitations. Crystals of this material recovered up to 49% within seconds and up to 95% after 100 min via ferroelastic detwinning. The spatial evolution of strain during cracking and healing was measured in real time using digital image correlation. Favorable alignment and strong ionic bonding across the interface of partially fractured crystals facilitate self-healing. This study elevates organic crystals close to the best-in-class self-healing polymers and sets an approach for durable crystal-based optoelectronics.
Publisher
Nature Communications
Published On
Sep 16, 2024
Authors
Marieh B. Al-Handawi, Patrick Commins, Ahmed S. Dalaq, Pedro A. Santos-Florez, Srujana Polavaram, Pascal Didier, Durga Prasad Karothu, Qiang Zhu, Mohammed Daqaq, Liang Li, Panče Naumov
Tags
self-healing
anilinium bromide
ferroelastic properties
ionic bonding
optoelectronics
crystal recovery
material science
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