Synthetic Approaches to Selenophosphates and Tellurophosphates

ABSTRACT Organoselenophosphates and tellurophosphates represent important structural motifs in organochalcogenophosphorus chemistry and exhibit unique electronic properties, distinctive biological activities, and versatile synthetic utility. This review provides a systematic overview of recent methodological advances in the synthesis of these two classes of compounds, with particular emphasis on the mechanistic features of key transformations. For selenophosphates, the synthetic strategies are categorized into seven classes based on the selenium source employed: selenohalides, selenophthalimides, selenocyanates, selenols, selenosulfonates, elemental selenium powder, and diselenides. The reaction characteristics and substrate scope of each approach are discussed in detail. In contrast, synthetic methods for tellurophosphates remain considerably less developed, primarily because of the inherent instability of P–Te bonds between air, moisture, and light. The available protocols for tellurophosphate construction are also comprehensively reviewed. Finally, future challenges and opportunities in this field are highlighted, including catalytic selenium/tellurium recycling, asymmetric synthesis, stability enhancement, and applications against drug‐resistant bacteria, with the aim of providing reference and inspiration for further research in this underexplored area.

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Publication Details

Journal
Asian Journal of Organic Chemistry
Published
2026-09-30
DOI
https://doi.org/10.1002/ajoc.70559
Primary Topic
Organoselenium and organotellurium chemistry
Type
article
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Synthetic Approaches to Selenophosphates and Tellurophosphates

Gong‐Qing Liu, Xin Li, Changjiang Wu
Asian Journal of Organic Chemistry
Organoselenium and organotellurium chemistry
article

Synthetic Approaches to Selenophosphates and Tellurophosphates

Gong‐Qing Liu, Xin Li, Changjiang Wu
article en

Abstract

ABSTRACT Organoselenophosphates and tellurophosphates represent important structural motifs in organochalcogenophosphorus chemistry and exhibit unique electronic properties, distinctive biological activities, and versatile synthetic utility. This review provides a systematic overview of recent methodological advances in the synthesis of these two classes of compounds, with particular emphasis on the mechanistic features of key transformations. For selenophosphates, the synthetic strategies are categorized into seven classes based on the selenium source employed: selenohalides, selenophthalimides, selenocyanates, selenols, selenosulfonates, elemental selenium powder, and diselenides. The reaction characteristics and substrate scope of each approach are discussed in detail. In contrast, synthetic methods for tellurophosphates remain considerably less developed, primarily because of the inherent instability of P–Te bonds between air, moisture, and light. The available protocols for tellurophosphate construction are also comprehensively reviewed. Finally, future challenges and opportunities in this field are highlighted, including catalytic selenium/tellurium recycling, asymmetric synthesis, stability enhancement, and applications against drug‐resistant bacteria, with the aim of providing reference and inspiration for further research in this underexplored area.

Asian Journal of Organic ChemistryVol. 15(10)
Nantong University (CN)
Industry, innovation and infrastructure
Openalex Percentile: Top 13%
Organoselenium and organotellurium chemistry
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Synthetic Approaches to Selenophosphates and Tellurophosphates — Gong‐Qing Liu, Xin Li, et al. · Asian Journal of Organic Chemistry (2026) | TGRS Research Map | TGRS