Excited to share our latest work in @MaterHoriz collaborating with Tae Ann Kim research group in KIST. This work highlights the novel ways to dissipate high strain rate stress wave by harnessing accelerated disulfide bond exchange reactions with the addition of a catalyst.
Check out this issue 21 front cover article by Jaejun Lee, Tae Ann Kim et al. on 'Principles for designing sustainable and high-strain rate stress wave dissipating materials' 👉https://t.co/dwKlTgLMbc…
📷
Check out this issue 21 front cover article by Jaejun Lee, Tae Ann Kim et al. on 'Principles for designing sustainable and high-strain rate stress wave dissipating materials' 👉https://t.co/dwKlTgLMbc…
📷
Check out the recent paper of our research group on the micropattern formation of closed packed particle monolayers harnessing laser-induced shockwave.
The first step in a series dedicated to tailored removal of particles using laser shock.
https://t.co/ILUX3EiMH1
@APriimagi @HaoZeng_Group@SuomenAkatemia I thought that the final demonstration of LC actuator is a flying robot. It seems like one step close to that. Great work! Very inspirational.
Nancy Sottos of @UofIllinois@IllinoisMatSE has been elected to the National Academy of Sciences for outstanding contributions to the field of self-healing materials. Sottos is also a @theNAEng member.
Read more: https://t.co/UBhu0rnCaw #NAS159
Our work, led by @shucong_li_hhh and @Lerch_Lab, is published on @Nature today. Micropillars made of liquid crystal elastomers and exposed to light exhibiting complex dynamic pattern evolution and collective communication in arrays. Congratulations!
https://t.co/ZVou0ERwNW