Marangoni‐Driven Patterning in Polymer Thin Film Supported on Shrinking Substrate for Resolution Enhancement

Author:

Choi Subin1,Min Seong‐Bae1,Jeon Dupyo1ORCID,Kim Chae Bin12ORCID

Affiliation:

1. School of Chemical Engineering Pusan National University Busandaehak‐ro 63 beon‐gil 2 Busan Geumjeong‐gu 46241 Republic of Korea

2. Department of Polymer Science and Engineering Pusan National University Busandaehak‐ro 63 beon‐gil 2 Busan Geumjeong‐gu 46241 Republic of Korea

Abstract

AbstractThe Marangoni effect causes liquids to flow toward localized regions with higher surface tension. In a polymer thin film, the flow induced by photochemically programmed surface tension gradients can be harnessed to manufacture patterned surfaces. Patterned polymer films are particularly useful for controlling adhesion, improving photonic device efficiency, and directing cellular alignment. In general, a broader range of accessible pattern resolutions and/or aspect ratios ensures a broader range of applications. However, because of the process flow for pattern formation, the final pattern periodicity of the Marangoni‐driven features matches that of the initially prescribed surface energy pattern. To achieve better resolution without using sophisticated and complex tools, a shrinking (or pre‐strained) polymer film is used as a substrate. The shrinking substrate can “contract or densify” the features along the substrate plane. Consequently, the resolution of the patterns formed on the shrinking substrate is improved by the shrinkage rate of the substrate compared with those formed on the non‐shrinking substrate (i.e., silicon wafer).

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry,Condensed Matter Physics

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