Super-elastic and fatigue resistant carbon material with lamellar  multi-arch microstructure

Super-elastic and fatigue resistant carbon material with lamellar multi-arch microstructure

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Crystals, Free Full-Text

Multifunctional protective aerogel with superelasticity over −196

Super strong, shear resistant, and highly elastic lamellar

Huai-Ling GAO, University of Science and Technology of China, Hefei, USTC, Department of Chemistry

Large-scale assembly of isotropic nanofiber aerogels based on columnar-equiaxed crystal transition

Highly Aligned Graphene Aerogels for Multifunctional Composites

Super-elastic and fatigue resistant carbon material with lamellar

Accurate additive manufacturing of lightweight and elastic carbons

Nanomaterials, Free Full-Text

PDF) Super-elastic and fatigue resistant carbon material with

Fig. S3 Compressive stress – strain curves of the CSSs and

Graphene oxide nanosheets augment silk fibroin aerogels for

Polymers, Free Full-Text

Polymers, Free Full-Text

PDF) Super-elastic and fatigue resistant carbon material with