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A Ni(OH 2-graphene hybrid with a three dimensiOH 2-grapheneerconnected graphybridetwith was prepared by a simple one-pothreerothermal methodimensional
The special porous material with three dimensional (3D) interconnected pore structure is beneficial to enhance the adsorption of lithium polysulfides and accommodate the volume expansion of active materials.
We report a green approach for synthesis of graphene carbon nanotube aerogels with three dimensional (3D) interconnected networks prepared from natural graphite rocks.
With future improvement in lowering the driving voltage and increasing the modulation depth, this hybrid organic/plasmonic modulator can readily expand into modulator arrays for three dimensional optical interconnects.
To exploit the inherent properties fully, 2D graphene sheets are often fabricated or assembled into functional architectures (e.g. hydrogels, aerogels) with desired three dimensional (3D) interconnected porous microstructures.
Here, three dimensional (3D) interconnected graphene networks in natural rubber (NR) matrix are framed with self-assembly integrating latex compounding technology by employing electrostatic adsorption between poly(diallyldimethylammonium chloride) modified graphene (positively charged) and NR latex particles (negatively charged) as the driving force.
Highly interconnected three dimensional (3D) wound dressing material with enhanced structural integrity was synthesized from Arothron stellatus fish skin (AsFS) collagen for tissue engineering applications.
We report fabrication of three dimensional scaffolds with well interconnected matrix of high porosity using keratin, chitosan and gelatin for tissue engineering and other biomedical applications.
A facile multilayer fabrication method using gelatin sacrificial molding and layer-by-layer assembly was implemented to construct interconnected, three dimensional (3D) microchannel networks in silk hydrogels at 100 μm minimum feature resolution.
Second, two-layered (2L) scaffolds with fully interconnected three dimensional pore networks were fabricated by oxygen plasma treatment of 1L scaffolds followed by stacking with off-set laminae to produce a tightly bonded composite.
All the coordination polymers exhibit the same metal-to-ligand molar ratio of 1 1 and the semirigid exo-bidentate ligand as a bridging ligand, reacts with lanthanide nitrates forming a zigzag chain which further interconnected to three dimensional supramolecular structure in aid of cooperative C H⋯O hydrogen bond and π π stacking interactions.
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