Halide Effects on Platinum Co-Catalysts Govern Photocatalytic Hydrogen Evolution in Organic Semiconductor Nanoparticles

Abstract Platinum cocatalysts are essential for photocatalytic hydrogen evolution by organic semiconductor (OSC) bulk-heterojunction nanoparticles (BHJ NPs), yet the surface chemistry of photodeposited Pt remains poorly understood. Here, we show that the halide ligand in hexahaloplatinate(IV) precursors (K2PtX6, X = Cl, Br, I) critically governs both the kinetics of Pt photodeposition and the resulting photocatalytic performance. Chloroplatinate precursors leave partially reduced [PtClx]n species adsorbed on the Pt surface, poisoning active sites and severely suppressing H2 evolution rates in BHJ systems that generate low photopotential, which is confirmed by photoelectrochemical measurements and Kelvin-probe force microscopy. Bromo- and iodoplatinate precursors reduce more readily, largely avoiding this poisoning. Remarkably, the addition of iodide ions to the photocatalytic mixture provides a substantial and general boost to H2 evolution rates, reaching an apparent quantum yield of 17% at 700 nm (among the highest reported for BHJ NP photocatalysts) attributed to beneficial iodide adsorption on the Pt surface.

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Publication Details

Journal
ACS Energy Letters
Published
2026-09-29
DOI
https://doi.org/10.1021/acsenergylett.6c01928
Primary Topic
Advanced Photocatalysis Techniques
Type
article
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article

Halide Effects on Platinum Co-Catalysts Govern Photocatalytic Hydrogen Evolution in Organic Semiconductor Nanoparticles

Arthur E. Bouchez, Jun‐Ho Yum, Melanie Johanning, Arnau Bertran et al.
ACS Energy Letters
Advanced Photocatalysis Techniques
article

Halide Effects on Platinum Co-Catalysts Govern Photocatalytic Hydrogen Evolution in Organic Semiconductor Nanoparticles

Arthur E. Bouchez, Jun‐Ho Yum, Melanie Johanning, Arnau Bertran, Kevin Sivula, Jin Su Park, Colin Jeanguenat, Aurélie Célérien
article en

Abstract

Abstract Platinum cocatalysts are essential for photocatalytic hydrogen evolution by organic semiconductor (OSC) bulk-heterojunction nanoparticles (BHJ NPs), yet the surface chemistry of photodeposited Pt remains poorly understood. Here, we show that the halide ligand in hexahaloplatinate(IV) precursors (K2PtX6, X = Cl, Br, I) critically governs both the kinetics of Pt photodeposition and the resulting photocatalytic performance. Chloroplatinate precursors leave partially reduced [PtClx]n species adsorbed on the Pt surface, poisoning active sites and severely suppressing H2 evolution rates in BHJ systems that generate low photopotential, which is confirmed by photoelectrochemical measurements and Kelvin-probe force microscopy. Bromo- and iodoplatinate precursors reduce more readily, largely avoiding this poisoning. Remarkably, the addition of iodide ions to the photocatalytic mixture provides a substantial and general boost to H2 evolution rates, reaching an apparent quantum yield of 17% at 700 nm (among the highest reported for BHJ NP photocatalysts) attributed to beneficial iodide adsorption on the Pt surface.

ACS Energy Letters
École Polytechnique Fédérale de Lausanne (CH)
Openalex Percentile: Top 31%
Advanced Photocatalysis Techniques
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Halide Effects on Platinum Co-Catalysts Govern Photocatalytic Hydrogen Evolution in Organic Semiconductor Nanoparticles — Arthur E. Bouchez, Jun‐Ho Yum, et al. · ACS Energy Letters (2026) | TGRS Research Map | TGRS