Improved Pattern Transfer in Soft Lithography Using Composite Stamps
Teri W. Odom, J. Christopher Love, Daniel B. Wolfe, Kateri E. Paul, George M. Whitesides
Abstract
Teri W. Odom, J. Christopher Love, Daniel B. Wolfe, Kateri E. Paul, George M. Whitesides
Abstract
Composite stamps composed of two layers a stiff layer supported by a flexible layer extend the capabilities of soft lithography to the generation of 50−100-nm features. The preparation of these stamps was adapted from a procedure originally developed by Schmid et al. ( Macromolecules 2000, 33, 3042) for microcontact printing. This paper demonstrates how pattern transfer using other soft lithographic techniques micromolding in capillaries, microtransfer molding, and phase-shifting lithography can be improved using two-layer stamps relative to stamps made of Sylgard 184 poly(dimethylsiloxane).
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Composite stamps composed of two layers a stiff layer supported by a flexible layer extend the capabilities of soft lithography to the generation of 50−100-nm features. The preparation of these stamps was adapted from a procedure originally developed by Schmid et al. ( Macromolecules 2000, 33, 3042) for microcontact printing. This paper demonstrates how pattern transfer using other soft lithographic techniques micromolding in capillaries, microtransfer molding, and phase-shifting lithography can be improved using two-layer stamps relative to stamps made of Sylgard 184 poly(dimethylsiloxane).
Key concepts: Soft lithography, PDMS stamp, Lithography, Microcontact printing, Transfer printing, Composite number, Layer (electronics), Molding (decorative)