Trapped Topologies in Semiflexible Diblock Copolymer Melts

Abstract Diblock copolymer melts with roughly symmetric composition produce a fluctuating, network-like morphology in the disordered state that converts to lamellae upon cooling through the order–disorder transition. Using dissipative particle dynamics simulations, we document the long-time trapping of a single bicontinuous, disordered network phase for a semiflexible diblock copolymer with a persistence length commensurate with the block contour length. The equilibrium lamellar phase is recovered upon subsequent thermal cycling near the equilibrium order–disorder condition. These insights suggest that a disordered network phase could be realized via the controlled cooling of a bottlebrush diblock copolymer melt possessing a modest backbone degree of polymerization.

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Publication Details

Journal
ACS Macro Letters
Published
2026-09-30
DOI
https://doi.org/10.1021/acsmacrolett.6c00373
Primary Topic
Block Copolymer Self-Assembly
Type
article
Field-Weighted Citation Impact
0.00
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article

Trapped Topologies in Semiflexible Diblock Copolymer Melts

Frank S. Bates, Kevin D. Dorfman, Luyang Li
ACS Macro Letters
Block Copolymer Self-Assembly
article

Trapped Topologies in Semiflexible Diblock Copolymer Melts

Frank S. Bates, Kevin D. Dorfman, Luyang Li
article en

Abstract

Abstract Diblock copolymer melts with roughly symmetric composition produce a fluctuating, network-like morphology in the disordered state that converts to lamellae upon cooling through the order–disorder transition. Using dissipative particle dynamics simulations, we document the long-time trapping of a single bicontinuous, disordered network phase for a semiflexible diblock copolymer with a persistence length commensurate with the block contour length. The equilibrium lamellar phase is recovered upon subsequent thermal cycling near the equilibrium order–disorder condition. These insights suggest that a disordered network phase could be realized via the controlled cooling of a bottlebrush diblock copolymer melt possessing a modest backbone degree of polymerization.

ACS Macro Letters
Twin Cities Orthopedics (US)
Openalex Percentile: Top 26%
Block Copolymer Self-Assembly
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