Graphoepitaxy of Self-Assembled Block Copolymers on Two-Dimensional Periodic Patterned Templates
Massachusetts Institute of Technology
Abstract
Self-assembling materials are the building blocks of bottom-up nanofabrication processes, but they need to be templated to impose long-range order and eliminate defects. In this work, the self-assembly of a thin film of a spherical-morphology block copolymer is templated using an array of nanoscale topographical elements that act as surrogates for the minority domains of the block copolymer. The orientation and periodicity of the resulting array of spherical microdomains are governed by the commensurability between the block copolymer period and the template period and is accurately described by a free-energy model. This method, which forms high-spatial-frequency arrays using a lower-spatial-frequency…
Citation impact
- FWCI
- 35.89
- Percentile
- 100%
- References
- 28
Authors
6- IBIon BitaCorresponding
Massachusetts Institute of Technology
- JKJoel K. W. YangCorresponding
Massachusetts Institute of Technology
- YSYeon Sik JungCorresponding
Massachusetts Institute of Technology
- CACaroline A. RossCorresponding
Massachusetts Institute of Technology
- ELEdwin L. ThomasCorresponding
Massachusetts Institute of Technology
Topics & keywords
- Copolymer
- Nanolithography
- Template
- Materials science
- Microelectronics
- Self-assembly
- Nanoscopic scale
- Nanotechnology
- Sustainable cities and communities