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Abstract
Charged block copolymers that can self-assemble into a host of nanostructures offer a great opportunity as next-generation battery electrolytes with outstanding ionic conductivity and mechanical robustness. The impact of ions on the self-assembly of charged block copolymers, however, remains to be fully understood. In this article, we report the phase behavior of charged-neutral block copolymers where a relatively nonpolar matrix was employed in the charged block to boost the strength of electrostatic interaction. The phase behavior was established using small-angle X-ray scattering (SAXS). We found that the overall shape of the phase boundary between ordered and disordered states is asymmetric, tilting toward the charged block-lean side of the phase portrait. However, the composition windows of the ordered phases, such as lamellae and hexagonally packed cylinders observed in this study, are comparable to those of neutral diblock copolymers and are not obviously affected by the incorporation of charges. The results obtained in this work provide insight into the impact of ions on the self-assembly of charged block copolymers as well as the design of nanostructured polymer electrolytes.
Original language | English (US) |
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Pages (from-to) | 2223-2229 |
Number of pages | 7 |
Journal | ACS Applied Polymer Materials |
Volume | 5 |
Issue number | 3 |
DOIs | |
State | Published - Mar 10 2023 |
Bibliographical note
Funding Information:This work was supported by the Office of Basic Energy Sciences (BES) of the U.S. Department of Energy (DoE), under Contract No. DE-SC0017809. Parts of this work were carried out in the Characterization Facility at the University of Minnesota, which receives partial support from the NSF through the MRSEC program (DMR-2011401).
Publisher Copyright:
© 2023 American Chemical Society. All rights reserved.
Keywords
- X-ray scattering
- charged block copolymers
- ionomers
- phase behavior
- polymer electrolytes
- self-assembly
- single-ion conductors
MRSEC Support
- Shared
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Dive into the research topics of 'Self-Assembly of Charged Diblock Copolymers with Reduced Backbone Polarity'. Together they form a unique fingerprint.Projects
- 2 Active
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University of Minnesota Materials Research Science and Engineering Center (DMR-2011401)
Leighton, C. (PI) & Lodge, T. (CoI)
THE NATIONAL SCIENCE FOUNDATION
9/1/20 → 8/31/26
Project: Research project
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IRG-2: Mesoscale Network Materials
Mahanthappa, M. (Senior Investigator), Bates, F. S. (Senior Investigator), Calabrese, M. A. (Senior Investigator), Dorfman, K. (Senior Investigator), Ellison, C. J. (Senior Investigator), Ferry, V. E. (Senior Investigator), Lozano, K. (Senior Investigator), Reineke, T. M. (Senior Investigator) & Siepmann, I. (Senior Investigator)
9/1/20 → 8/31/26
Project: IRG