Counterion Effects in Decatungstate Photocatalysis

Photocatalysis with decatungstate ([W 10 O 32 ] 4− , DT) is a versatile platform for hydrogen‐atom‐transfer (HAT)‐mediated CH functionalization under mild conditions. Decatungstate is valued for its ability to abstract hydrogen from strong aliphatic, benzylic, allylic, and α‐heteroatom CH bonds. Its efficiency is often attributed to the excited‐state reactivity of [W 10 O 32 ] 4− and substrate CH bond strength, but this view neglects the vital role of counterions, which are integral to the catalytic system and influence performance. In solution, DT forms dynamic ion‐paired ensembles where counterions affect solubility, substrate access, ion pairing, aggregation, and photostability. These factors impact activity, selectivity, productivity, and robustness. This perspective discusses counterion effects across various systems, including sodium, tetrabutylammonium, phosphonium derivatives, ionic liquids, and immobilized platforms. It highlights counterions as active components that govern catalytic parameters, aiding better catalyst design and system development.

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Publication Details

Journal
European Journal of Organic Chemistry
Published
2026-09-11
DOI
https://doi.org/10.1002/ejoc.70835
Primary Topic
Polyoxometalates: Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Counterion Effects in Decatungstate Photocatalysis

Florence Babawale, Indrajit Ghosh, Burkhard Koenig
European Journal of Organic Chemistry
Polyoxometalates: Synthesis and Applications
article

Counterion Effects in Decatungstate Photocatalysis

Florence Babawale, Indrajit Ghosh, Burkhard Koenig
article en

Abstract

Photocatalysis with decatungstate ([W 10 O 32 ] 4− , DT) is a versatile platform for hydrogen‐atom‐transfer (HAT)‐mediated CH functionalization under mild conditions. Decatungstate is valued for its ability to abstract hydrogen from strong aliphatic, benzylic, allylic, and α‐heteroatom CH bonds. Its efficiency is often attributed to the excited‐state reactivity of [W 10 O 32 ] 4− and substrate CH bond strength, but this view neglects the vital role of counterions, which are integral to the catalytic system and influence performance. In solution, DT forms dynamic ion‐paired ensembles where counterions affect solubility, substrate access, ion pairing, aggregation, and photostability. These factors impact activity, selectivity, productivity, and robustness. This perspective discusses counterion effects across various systems, including sodium, tetrabutylammonium, phosphonium derivatives, ionic liquids, and immobilized platforms. It highlights counterions as active components that govern catalytic parameters, aiding better catalyst design and system development.

European Journal of Organic Chemistry
VSB - Technical University of Ostrava (CZ), University of Regensburg (DE)
Deutsche Forschungsgemeinschaft
Decent work and economic growth
Openalex Percentile: Top 24%
Polyoxometalates: Synthesis and Applications
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Counterion Effects in Decatungstate Photocatalysis — Florence Babawale, Indrajit Ghosh, et al. · European Journal of Organic Chemistry (2026) | TGRS Research Map | TGRS