Hydrophobic Monomer Incorporation Tunes the pH Responsivity of Polycationic Brushes

Abstract We tune the pH-responsive swelling response of polycationic brushes via the incorporation of hydrophobic repeat units. Careful compositional tuning realizes apparent brush pKa values, which we term pKa*, between 5.0 and 5.7. Further, we observed monotonic decreases in pKa* with an increase in hydrophobic monomer incorporation. Although brush pKa* was readily tuned with composition, the cooperativity of deprotonation was influenced only by polycation identity and not hydrophobic monomer incorporation. Interestingly, hydrophobicity-driven pKa* decreases were observed exclusively for brushes and not untethered, compositionally matched polymers, suggesting that confining polymers in the form of nanoparticle-tethered brushes might grant more fine-tuned control over pH-responsivity than the tunability offered by free polymers alone. We readily reproduced pKa* trends from planar substrates to nanoparticle-tethered brushes, potentiating applications in intracellular pH sensing and nucleic acid delivery that demand precise pKa tuning. We will apply pKa*-tuned brush-grafted nanoparticles to overcome intracellular barriers that have previously hindered free polymers.

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Publication Details

Journal
ACS Macro Letters
Published
2026-09-25
DOI
https://doi.org/10.1021/acsmacrolett.6c00398
Primary Topic
Polymer Surface Interaction Studies
Type
article
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article

Hydrophobic Monomer Incorporation Tunes the pH Responsivity of Polycationic Brushes

Ramya Kumar, Adam P. Humpal, Alexander Dhupar, Pethuel Ofori
ACS Macro Letters
Polymer Surface Interaction Studies
article

Hydrophobic Monomer Incorporation Tunes the pH Responsivity of Polycationic Brushes

Ramya Kumar, Adam P. Humpal, Alexander Dhupar, Pethuel Ofori
article en

Abstract

Abstract We tune the pH-responsive swelling response of polycationic brushes via the incorporation of hydrophobic repeat units. Careful compositional tuning realizes apparent brush pKa values, which we term pKa*, between 5.0 and 5.7. Further, we observed monotonic decreases in pKa* with an increase in hydrophobic monomer incorporation. Although brush pKa* was readily tuned with composition, the cooperativity of deprotonation was influenced only by polycation identity and not hydrophobic monomer incorporation. Interestingly, hydrophobicity-driven pKa* decreases were observed exclusively for brushes and not untethered, compositionally matched polymers, suggesting that confining polymers in the form of nanoparticle-tethered brushes might grant more fine-tuned control over pH-responsivity than the tunability offered by free polymers alone. We readily reproduced pKa* trends from planar substrates to nanoparticle-tethered brushes, potentiating applications in intracellular pH sensing and nucleic acid delivery that demand precise pKa tuning. We will apply pKa*-tuned brush-grafted nanoparticles to overcome intracellular barriers that have previously hindered free polymers.

ACS Macro Letters
Colorado School of Mines (US)
Openalex Percentile: Top 26%
Polymer Surface Interaction Studies
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Hydrophobic Monomer Incorporation Tunes the pH Responsivity of Polycationic Brushes — Ramya Kumar, Adam P. Humpal, et al. · ACS Macro Letters (2026) | TGRS Research Map | TGRS