| Literature DB >> 30985848 |
Hyunsung Jung1, Won Ho Shin, Tae Wan Park, Young Joong Choi, Young Joon Yoon, Sung Heum Park, Jae-Hong Lim, Jung-Dae Kwon, Jung Woo Lee, Se-Hun Kwon, Gi Hun Seong, Kwang Ho Kim, Woon Ik Park.
Abstract
Uniform, well-ordered sub-20 nm patterns can be generated by the templated self-assembly of block copolymers (BCPs) with a high Flory-Huggins interaction parameter (χ). However, the self-assembled BCP monolayers remain limited in the possible structural geometries. Here, we introduce a multiple self-assembly method which uses di-BCPs to produce diverse morphologies, such as dot, dot-in-honeycomb, line-on-dot, double-dot, pondering, dot-in-pondering, and line-on-pondering patterns. To improve the diversity of BCP morphological structures, we employed sphere-forming and cylinder-forming poly(styrene-block-dimethylsiloxane) (PS-b-PDMS) BCPs with a high χ. The self-assembled mono-layer and double-layer SiOx dot patterns were modified at a high temperature (∼800 °C), showing hexagonally arranged (dot) and double-hexagonally arranged (pondering) SiOx patterns, respectively. We successfully obtained additional new nanostructures (big-dot, dot-in-honeycomb, line-on-dot, pondering, dot-in-pondering, and line-on-pondering types) through a second self-assembly of cylinder-forming BCPs using the dot and pondering patterns as guiding templates. This simple approach can likely be extended to the multiple self-assembly of many other BCPs with good functionality, significantly contributing to the development of various nanodevices.Entities:
Year: 2019 PMID: 30985848 DOI: 10.1039/c9nr00774a
Source DB: PubMed Journal: Nanoscale ISSN: 2040-3364 Impact factor: 7.790