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Updated: Jun 7, 2025

Preparation and Reactivity of a Triphosphenium Bromide Salt: A Convenient and Stable Source of PhosphorusI
Published on: November 22, 2016
Closing the Loop: Low-Waste Phosphorus Functionalization Enabled by Simple Disulfides.
Thomas M Horsley Downie1, Ajdin Velić1, Luis A Coelho1,2
1Institute of Inorganic Chemistry, University of Regensburg, 93040, Regensburg, Germany.
Chemists can now directly transform white and red phosphorus into valuable monophosphorus products using a new, simple strategy. This method uses inexpensive reagents and creates minimal waste, offering a greener alternative for phosphorus functionalization.
Area of Science:
- Organophosphorus Chemistry
- Green Chemistry
- Synthetic Methodology
Background:
- Direct functionalization of elemental phosphorus (white and red) is challenging and often relies on inefficient, hazardous multi-step processes.
- Existing methods for phosphorus transformation typically generate significant waste, posing environmental concerns.
Purpose of the Study:
- To develop a straightforward and efficient strategy for the direct transformation of elemental phosphorus.
- To provide access to diverse organophosphorus compounds with P-C, P-N, and P-O bonds.
- To establish a sustainable synthetic route with minimal waste generation.
Main Methods:
- Oxidation of white and red phosphorus using aryl disulfides.
- Quenching of the oxidized intermediates with various nucleophiles.
- Isolation and recycling of thiolate byproducts to create a closed-loop system.
Main Results:
- Successful synthesis of useful monophosphorus products, including those with P-C, P-N, and P-O bonds, in good yields.
- Demonstration of a simple, closed-loop process using inexpensive and easy-to-handle reagents.
- Establishment of a pathway towards a potential (electro)catalytic cycle for phosphorus functionalization.
Conclusions:
- The developed strategy offers a practical and environmentally benign approach to elemental phosphorus functionalization.
- This method overcomes the limitations of traditional multi-step and hazardous routes.
- The potential for a closed-loop or catalytic system highlights its significance for sustainable organophosphorus chemistry.
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