Langmuir · 2004 · 41 citations · 15 references
Materials ScienceChemical EngineeringPolymer MaterialEngineeringPolymer TechnologyMicrofabricationRepetitive PrintingPolymer SciencePrinted ElectronicsHydrophilic ElastomersPolymer PropertyPolar Ink3D PrintingRelief Structure
A moderately hydrophilic, thermoplastic elastomer (poly(ether-ester)) was investigated as a stamp material for microcontact printing of a polar ink: pentaerythritol-tetrakis-(3-mercaptopropionate). Stamps with a relief structure were produced from this polymer by hot embossing, and a comparison was made with conventional poly(dimethylsiloxane) (PDMS) and oxygen-plasma-treated PDMS. It is shown that the hydrophilic stamps can be used for the repetitive printing (without re-inking) of at least 10 consecutive patterns, which preserve their etch resistance, and this in rather sharp contrast to conventional and oxygen plasma-treated PDMS stamps. It is argued that these enhanced printing characteristics of the hydrophilic stamps originate from an improved wetting and solubility of polar inks in the hydrophilic stamp.
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Younan Xia, George M. Whitesides · Annual Review of Materials Science · 1998 · 4.6K citations
Engineering, Biomimetic Materials, Biomedical Engineering +17
Constraints on Microcontact Printing Imposed by Stamp Deformation
Chung‐Yuen Hui, Anand Jagota, Y.Y. Lin et al. · Langmuir · 2002 · 419 citations
Golden interfaces: The Surface of Self‐Assembled Monolayers
Emmanuel Delamarche, Bruno Michel, Hans A. Biebuyck et al. · Advanced Materials · 1996 · 309 citations