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Wubo Wan

Researcher at Dalian University of Technology

Publications -  14
Citations -  1579

Wubo Wan is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Graphene & Oxide. The author has an hindex of 8, co-authored 11 publications receiving 1363 citations. Previous affiliations of Wubo Wan include Commonwealth Scientific and Industrial Research Organisation & Zhejiang University of Technology.

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Ultralight and Highly Compressible Graphene Aerogels

TL;DR: The resulting graphene aerogels with density as low as 3 mg cm(-3) show excellent resilience and can completely recover after more than 90% compression.
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Polymer/graphene hybrid aerogel with high compressibility, conductivity, and "sticky" superhydrophobicity.

TL;DR: These outstanding properties qualify the PDMS/CGA composites developed here as promising candidates for a wide range of applications such as in sensors, actuators, and materials used for biochemical separation and tissue engineering.
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Highly controllable and green reduction of graphene oxide to flexible graphene film with high strength

TL;DR: Graphene film with high strength was fabricated by the assembly of graphene sheets derived from graphene oxide (GO) in an effective and environmentally friendly approach as discussed by the authors, which was achieved with sodium citrate as a facile reductant, in which the reduction process was monitored by XRD analysis and UV-vis absorption spectra.
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Multifunctional nitrogen-doped graphene nanoribbon aerogels for superior lithium storage and cell culture

TL;DR: Cell culture experiments with the GNRAs as human medulloblastoma DAOY cell scaffolds demonstrate their good biocompatibility, inferring potential applications in the biomedical field.
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Graphene oxide liquid crystal Pickering emulsions and their assemblies

TL;DR: In this article, the authors reported for the first time the fabrication of graphene-based liquid crystal Pickering emulsions (LCPEs) by promoting the localized alignment of GO nanosheets at the oil/water interfaces using poly(oxypropylene)diamine (D400) to stabilize as well as to cross-link the GO assembly around the oil droplets.