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Graphene (Gr)–polystyrene (PS) and graphene (Gr)–ultra-high molecular weight polyethylene (UHMW PE) laminates were fabricated using a transfer print approach that relies on differential adhesion to remove graphene from Cu foil without chemical etching.
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The precise deposition achievable with an inkjet printing approach reported here avoids those inherent materials wastage and accumulation problems.
Regardless of the printing approach the surface resistivity of the polymer was decreased by 16 orders of magnitude.
Very recently, the ink-jet printing approach has opened new frontiers for noncontact printing and high-resolution dispensing.
Our inkjet printing approach permits the systematic study of cellular responses to defined spatial surface concentrations of immobilized growth factors.
To demonstrate the utility of the bitmap printing approach we apply it to the design of a customized prosthetic socket.
Recently, there has been a tremendous interest in 3D printing which is one of research branches in additive direct printing approach of functional materials.
Results presented in this work prove the performance of the DLP printer we build up and show the convenience of fabricating micro soft pneumatic actuators integrally using DLP 3D printing approach with fast speed and high precision.
The advantages of the ink-jet printing approach also have been expanded by the invention of 3D printers actually used to synthesize a three-dimensional object through the new concept of additive manufacturing process.
In the first method, octadecyltrichlorosilane (OTS) gradient surfaces were generated via the contact printing approach, and then spaces un-occupied by OTS molecules were back-filled with an amine-terminated silane, which allows the grafting of nanoparticles that were surface functionalized with carboxylic acid.
A defect free electrode of 5 × 5 cm2 of dimensions with smoothed surface (necessary for the electrolyte deposition) was obtained through a careful design of the thickness and the composition of the Ni-GDC layers and using (first time for this application) the stencil printing approach.
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