Microdomain patterns from directional eutectic solidification and epitaxy
Top Cited Papers
- 1 May 2000
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 405 (6785) , 433-437
- https://doi.org/10.1038/35013018
Abstract
Creating a regular surface pattern on the nanometre scale is important for many technological applications, such as the periodic arrays constructed by optical microlithography that are used as separation media in electrophoresis1, and island structures used for high-density magnetic recording devices2. Block copolymer patterns can also be used for lithography on length scales below 30 nanometres (refs 3,4,5). But for such polymers to prove useful for thin-film technologies, chemically patterned surfaces need to be made substantially defect-free over large areas, and with tailored domain orientation and periodicity. So far, control over domain orientation has been achieved by several routes6,7,8,9, using electric fields, temperature gradients, patterned substrates and neutral confining surfaces. Here we describe an extremely fast process that leads the formation of two-dimensional periodic thin films having large area and uniform thickness, and which possess vertically aligned cylindrical domains each containing precisely one crystalline lamella. The process involves rapid solidification of a semicrystalline block copolymer from a crystallizable solvent between glass substrates using directional solidification and epitaxy. The film is both chemically and structurally periodic, thereby providing new opportunities for more selective and versatile nanopatterned surfaces.Keywords
This publication has 19 references indexed in Scilit:
- Nanometer-Scale Surface Patterns with Long-Range Order Created by Crystallization of Diblock CopolymersPhysical Review Letters, 1999
- Single-Grain Lamellar Microdomain from a Diblock CopolymerMacromolecules, 1999
- Kinetic Constraints on the Development of Surface Microstructure in SBS Thin FilmsMacromolecules, 1998
- Observed Substrate Topography-Mediated Lateral Patterning of Diblock Copolymer FilmsPhysical Review Letters, 1997
- Block Copolymer Lithography: Periodic Arrays of ~10 11 Holes in 1 Square CentimeterScience, 1997
- Local Control of Microdomain Orientation in Diblock Copolymer Thin Films with Electric FieldsScience, 1996
- Epitaxy and structure of paraffin-diluent eutecticsMacromolecules, 1989
- Epitaxial crystallization of polymers onto benzoic acid: Polyethylene and paraffins, aliphatic polyesters, and polyamidesJournal of Polymer Science: Polymer Physics Edition, 1983
- Eutectic crystallization of pseudo binary systems of polyethylene and high melting diluentsPolymer, 1974
- Image intensification and the electron microscopy of radiation sensitive polymersPolymer, 1974