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May 31, 2026Journal of Materials Chemistry A0 citationsOpen Access

Polyampholyte Graft Copolymers as Unimolecular Matrices for Noble Metal-Free and Visible Light-Driven Hydrogen Evolution by Eosin Y and Molybdenum Phosphide

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VSVathsalya T SundarrajLNLingli NiMHMarius Hermesdorf

Key Points

  • The study aims to explore the effectiveness of polyampholyte graft copolymers as matrices for visible light-driven hydrogen evolution.
  • Utilized polyampholyte graft copolymers for catalytically active site immobilization.
  • Investigated the catalytic activity of eosin Y and molybdenum phosphide under light irradiation.
  • Measured hydrogen production rates under varying conditions.
  • Demonstrated significant hydrogen production rates compared to traditional methods.
  • Achieved high efficiency in water splitting using the novel copolymer system.

Abstract

Light-driven water splitting is a promising way to produce hydrogen as a renewable energy carrier in a sustainable way. For this, immobilization of different catalytically active building blocks within soft...

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Cite This Study

Sundarraj et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2375783ba022b6fda40https://doi.org/10.1039/d6ta00720a
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Porous MoP network structure as co-catalyst for H2 evolution over g-C3N4 nanosheets2018 · 136 citations
  2. 2Visible-light-driven hydrogen evolution with polyoxometalate as electron relay2016 · 6 citations
  3. 3Carbon‐Tailored Semimetal MoP as an Efficient Hydrogen Evolution Electrocatalyst in Both Alkaline and Acid Media2018 · 173 citations
  4. 4Eosin Y: Homogeneous Photocatalytic In-Flow Reactions and Solid-Supported Catalysts for In-Batch Synthetic Transformations2020 · 30 citations
  5. 5Molybdenum phosphide: a new highly efficient catalyst for the electrochemical hydrogen evolution reaction2014 · 239 citations