Macroscopic 10-Terabit–per–Square-Inch Arrays from Block Copolymers with Lateral Order

Author:

Park Soojin123,Lee Dong Hyun123,Xu Ji123,Kim Bokyung123,Hong Sung Woo123,Jeong Unyong123,Xu Ting123,Russell Thomas P.123

Affiliation:

1. Department of Polymer Science and Engineering, University of Massachusetts, Amherst, MA 01003, USA.

2. Department of Materials Science and Engineering, Yonsei University, Seoul 120-749, Korea.

3. Department of Materials Science and Engineering, Department of Chemistry, University of Berkeley, and Material Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

Abstract

Generating laterally ordered, ultradense, macroscopic arrays of nanoscopic elements will revolutionize the microelectronic and storage industries. We used faceted surfaces of commercially available sapphire wafers to guide the self-assembly of block copolymer microdomains into oriented arrays with quasi–long-range crystalline order over arbitrarily large wafer surfaces. Ordered arrays of cylindrical microdomains 3 nanometers in diameter, with areal densities in excess of 10 terabits per square inch, were produced. The sawtoothed substrate topography provides directional guidance to the self-assembly of the block copolymer, which is tolerant of surface defects, such as dislocations. The lateral ordering and lattice orientation of the single-grain arrays of microdomains are maintained over the entire surface. The approach described is parallel, applicable to different substrates and block copolymers, and opens a versatile route toward ultrahigh-density systems.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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