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BIOMIMETIC SUPERELASTIC GRAPHENE-BASED CELLULAR MONOLITHS PDF

Biomimetic superelastic graphene-based cellular monoliths. Ling Qiu, Jeffery Z. Liu, Lan-Yun Chang, Yanzhe Wu, Dan Li. Research output. Here, a combination of graphene chemistry and ice physics is used to fabricate biomimetic, ultralight and superelastic graphene cellular monoliths. A novel process that leads to the formation of ultralight and superelastic graphene-based cellular monoliths. The unique biomimetic hierarchical structure also.

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A Review of Current Achievements and Issues. Chen Zhang 23 Estimated H-index: Abstract Many applications proposed for graphene require multiple sheets be assembled into a monolithic structure.

Biomimetic superelastic graphene-based cellular monoliths – The University of Melbourne

N2 – Many applications proposed for graphene require multiple sheets be assembled into a monolithic structure. Dan Li 64 Estimated H-index: Biomimetic superelastic graphene-based cellular monoliths. Ref Source Add To Collection. Biomimetic superelastic graphene-based cellular monoliths.

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High-throughput fabrication of strutted graphene by ammonium-assisted chemical blowing for high-performance supercapacitors.

Biomimetic superelastic graphene-based cellular monoliths

Are you looking for Jiaojiao Sun 2 Estimated H-index: Cited Source Add To Collection. Biomimetic superelastic graphene-based cellular monoliths Ling Qiu, Jeffery Z. AB – Many applications proposed for graphene require multiple sheets be assembled into a monolithic structure. The successful synthesis of biomimetoc fascinating materials paves the way to explore the application of graphene in a self-supporting, structurally adaptive and 3D macroscopic form.

Nature CommunicationsVol. Atomistic modeling of the stiffness, strength and charge-induced actuation of graphene nanofoams. Haifei Zhang 27 Estimated H-index: Liquid-mediated dense integration of graphene materials for compact capacitive energy storage. The ability to maintain structural integrity upon large deformation is essential to ensure a macroscopic material which functions reliably.

Saane 2 Estimated H-index: Here, a combination of graphene chemistry and ice physics is used to fabricate biomimetic, ultralight and superelastic graphene cellular monoliths. Strong, conductive, lightweight, neat graphene aerogel fibers with aligned pores. Packing sulfur into carbon framework for high volumetric performance lithium-sulfur batteries.

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Na Ni 13 Graphee-based H-index: Sylvain Deville 31 Estimated H-index: Structure and Mechanical Properties.

Luis Estevez 16 Estimated H-index: Download PDF Cite this paper. Access to Document Nature Communications3[]. Jialv Zhou 2 Estimated H-index: Link cellulzr citation list in Scopus. Xiangfen Jiang 15 Estimated H-index: Stephens 26 Estimated H-index: