Demonstrates directed self-assembly of copolymers via thermal annealing, achieving sub-10 nm patterns on defined chemical surfaces.
Directed self-assembly (DSA) of block copolymers in combination with 193 nm immersion lithography (193i) is one of the potential solutions for sub-10 nm patterning. Here we report the synthesis and DSA of a high-χ miktoarm star block copolymer, polystyrene-(poly(methyl acrylate)2 (PS–PMA2), for sub-10 nm nanolithography. Compared with diblock PS-b-PMA, PS–PMA2 has a higher effective χ value (0.095@150 °C) and a smaller period with the same molecular weights. The smallest achievable period (L0) was 12.8 nm for PS–PMA2, while a perpendicular orientation of lamellar domains was obtained in PS–PMA2 films with L0 down to 14.1 nm. DSA of PS–PMA2 with 5× density multiplication was successfully achieved on chemical patterns with the pattern period (LS) of 80–90 nm defined by 193i with a feature size down to 8 nm. In addition, DSA of PS-b-PMA was also demonstrated on 193i-defined patterns with a feature size of 9 nm.
No takes yet. Share an insight, caveat, or question.
Zhang et al. (2026) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: