Supporting Data for Mesoscopic Morphologies in Frustrated ABC Bottlebrush Block Terpolymers
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2023-5-29
2024-5-3
2024-5-3
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Supporting Data for Mesoscopic Morphologies in Frustrated ABC Bottlebrush Block Terpolymers
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2025-02-03
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Lodge, Timothy P
lodge@umn.edu
lodge@umn.edu
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Abstract
Bottlebrush block polymers, characterized by densely grafted side chains extending from a backbone, have recently garnered significant attention. A particularly attractive feature is the accessibility of ordered morphologies with domain spacings exceeding several hundred nanometers, a capability that is challenging to achieve with linear polymers. These large morphologies make bottlebrush block polymers promising for various applications, such as photonic crystals. However, the structures observed in AB diblock bottlebrushes are generally limited to simple lamellae and cylindrical phases, which restricts their use in many applications. In this study, we synthesized a large library of 50 ABC bottlebrush triblock terpolymers, poly(DL-lactide)-b-poly(ethylene-alt-propylene)-b-polystyrene (PLA-PEP-PS), spanning a wide range of compositions using ring-opening metathesis polymerization (ROMP) of norbornene-functionalized macromonomers. This constitutes a frustrated system, in that the mandatory internal interfaces (PLA/PEP) have larger interfacial energies than PLA/PS. We systematically explored phase behavior using small-angle X-ray scattering (SAXS) and transmission electron microscopy (TEM). Morphological characterization revealed a series of intriguing mesoscopic structures, including layered microstructures, core-shell hexagonally packed cylinders (CSHEX, plane group p6mm), alternating tetragonally packed cylinders (ATET, plane group p4mm), and an unprecedented morphology, rectangular centered cylinders-in-undulating-lamellae (RCCUL, plane group c2mm). Adjustments in molecular weight resulted in a wide range of unit cell dimensions (exemplified by RCCUL), from 40 nm to over 130 nm. This work demonstrates that multiblock bottlebrushes offer promising opportunities for developing materials with novel diverse structures and a broad range of domain dimensions.
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The data folder contains all data of the figures in the article and SI appendix, including nuclear magnetic resonance (NMR), size exclusion chromatography (SEC), differential scanning calorimetry (DSC), small-angle X-ray scattering (SAXS), transmission electron microscopy (TEM). See the readme.txt file for further details.
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Cui S., Murphy E. A., Santra S., Bates F. S., Lodge T. P., Mesoscopic morphologies in frustrated ABC bottlebrush block terpolymers, ACS Nano, 2025, 19, 1211-1221. https://pubs.acs.org/doi/10.1021/acsnano.4c13416
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This work was supported by the National Science Foundation (NSF) through the University of Minnesota MRSEC under Award DMR-2011401. Parts of this work were carried out in the Characterization Facility, University of Minnesota, which receives partial support from the NSF through the MRSEC (Award Number DMR-2011401) and the NNCI (Award Number ECCS-2025124) programs. The research reported here was partially supported by the BioPACIFIC Materials Innovation Platform of the National Science Foundation under Award No. DMR-1933487 (equipment and characterization). This research also used resources from Sector 11-BM CMS beamline of the National Synchrotron Light Source II, a U.S. Department of Energy (DOE) Office of Science User Facility operated for the DOE Office of Science by Brookhaven National Laboratory under Contract no. DE-SC0012704.
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Cui, Shuquan; Murphy, Elizabeth A; Santra, Subrata; Bates, Frank S; Lodge, Timothy P. (2025). Supporting Data for Mesoscopic Morphologies in Frustrated ABC Bottlebrush Block Terpolymers. Retrieved from the Data Repository for the University of Minnesota (DRUM), https://doi.org/10.13020/s6pf-4e24.
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