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Lamellar Orientation and Transition Behavior of PS-b-P2VP Copolymers Supported on Physically Adsorbed Layers

Title
Lamellar Orientation and Transition Behavior of PS-b-P2VP Copolymers Supported on Physically Adsorbed Layers
Authors
Kim, YeongsikLee, WooseopJo, SeungyunAhn, HyungjuKim, KyungkonKim, Jaeup U.Ryu, Du Yeol
Ewha Authors
김경곤
SCOPUS Author ID
김경곤scopus
Issue Date
2020
Journal Title
MACROMOLECULES
ISSN
0024-9297JCR Link

1520-5835JCR Link
Citation
MACROMOLECULES vol. 53, no. 15, pp. 6213 - 6219
Publisher
AMER CHEMICAL SOC
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
A simple approach to utilizing physically adsorbed layers consisting of nonfunctional random and block copolymer chains is suggested for surface neutrality toward lamella-forming polystyrene-b-poly(2-vinylpyridine) (PS-b-P2VP) films. A chemically identical, low-molecular-weight (LMW) random copolymer of P(S-r-2VP) and block copolymer (BCP) of PS-b-P2VP are used to form the adsorbed layers on an impenetrable solid substrate. We investigate lamellar orientation and transition behavior of the overlying PS-b-P2VP films with respect to the thickness (h(ad)) of the adsorbed copolymer layers. As the h(ad) of P(S-r-2VP ) increases to 4.0 nm, an increasing population of perpendicular lamellae in high-molecular-weight (HMW) PS-b-P2VP films is attributed to the corresponding increase in the surface neutrality toward the BCP films. Meanwhile, an extremely thin adsorbed layer at h(ad) = 1.7 nm, obtained from LMW PS-b-P2VP, is superior in terms of surface neutrality to produce perpendicular lamellae in HMW PS-b-P2VP films. Such a thickness corresponds presumably to the minimum thickness for surface coverage on the solid substrate. The trends for the formation of perpendicular lamellae in HMW PS-b-P2VP films are well consistent with those for lowering the order-to-disorder transition temperature (T-ODT) in LMW PS-b-P2VP films with respect to h(ad). Furthermore, the film thickness dependence on T-ODT of BCP films confined in the best neutral layers reveals that the physically adsorbed layers prepared from the BCP itself provide more balanced interfacial interactions toward the overlying BCP films than the adsorbed random copolymer layers.
DOI
10.1021/acs.macromol.0c00794
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
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