Litcius/Paper detail

Highly cross-linked carbon tube aerogels with enhanced elasticity and fatigue resistance

Lei Zhuang, De Lu, Jijun Zhang, Pengfei Guo, Lei Su, Yuanbin Qin, Peng Zhang, Liang Xu, Min Niu, Kang Peng, Hongjie Wang

2023Nature Communications81 citationsDOIOpen Access PDF

Abstract

Carbon aerogels are elastic, mechanically robust and fatigue resistant and are known for their promising applications in the fields of soft robotics, pressure sensors etc. However, these aerogels are generally fragile and/or easily deformable, which limits their applications. Here, we report a synthesis strategy for fabricating highly compressible and fatigue-resistant aerogels by assembling interconnected carbon tubes. The carbon tube aerogels demonstrate near-zero Poisson's ratio, exhibit a maximum strength over 20 MPa and a completely recoverable strain up to 99%. They show high fatigue resistance (less than 1.5% permanent degradation after 1000 cycles at 99% strain) and are thermally stable up to 2500 °C in an Ar atmosphere. Additionally, they possess tunable conductivity and electromagnetic shielding. The combined mechanical and multi-functional properties offer an attractive material for the use in harsh environments.

Topics & Concepts

Materials scienceComposite materialAerogelTube (container)Carbon fibersElasticity (physics)Poisson's ratioPoisson distributionComposite numberStatisticsMathematicsAerogels and thermal insulationSupercapacitor Materials and FabricationAdvanced Sensor and Energy Harvesting Materials