Double-negative-index ceramic aerogels for thermal superinsulation
- Xiang Xu
- Qiangqiang Zhang
- Menglong Hao
- Yuan Hu
- Zhaoyang Lin
- Lele Peng
- Tao Wang
- Xuexin Ren
- Chen Wang
- Zipeng Zhao
- Chengzhang Wan
- Huilong Fei
- Lei Wang
- Jian Zhu
- Hongtao Sun
- Wen‐Li Chen
- Tao Du
- Biwei Deng
- Gary J. Cheng
- Imran Shakir
- Chris Dames
- Timothy S. Fisher
- Xiang Zhang
- HLHui Li
- Yu Huang
- Xiangfeng Duan
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
- HLHui Li
Science · 2019 · American Association for the Advancement of Science
5 views · 0 downloads
Abstract
Elastic ceramics Aerogels hold promise as lightweight replacements for thermal insulation. However, poor mechanical stability has hampered progress in moving toward commercialization. Xu et al. designed a mechanical metamaterial that pinches in a small amount when you compress it (see the Perspective by Chhowalla and Jariwala). This is characteristic of materials with a negative Poisson's ratio and dramatically improves mechanical stability. The trick was using three-dimensional graphene structures to template the ceramic aerogels, thus producing a superinsulating material endowed with excellent mechanical properties. Science , this issue p. 723 ; see also p. 694
