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In this work, we present the synthesis and detailed characterization of a low-valent phosphorus compound, mesoionic N-heterocyclic phosphinidene (mNHP, ), stabilized by an abnormal N-heterocyclic carbene (aNHC). Natural resonance theory analysis and the formation of a bis-borane adduct (confirmed by a single-crystal X-ray diffraction study) revealed that the phosphorus center in mNHP has access to two lone pairs of electrons, as expected for a P(I) species. Beyond its structural characterization, we also investigated both the nucleophilic and redox reactivity of mNHP. Its interactions with CO and CS demonstrated its nucleophilic capabilities, while its reaction with a C(Ar)-F bond highlighted its redox behavior through oxidative addition at the P(I) center, transforming it into a P(III) species. These dual reactivities were subsequently integrated into catalytic cycles, positioning mNHP as an effective low-valent, metal-free catalyst for the formylation of thiols using CO via nucleophilicity and hydrodefluorination of aryl fluoride compounds via the P(I)/P(III) redox cycle. Various spectroscopic investigations, including X-ray photoelectron spectroscopy (XPS), trapping of intermediates, and detailed DFT studies, helped us to understand the dual reactivity of this low-valent phosphorus compound.
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http://dx.doi.org/10.1021/jacs.5c05832 | DOI Listing |
Angew Chem Int Ed Engl
September 2025
Inorganic and Organometallic Chemistry, Universität Erlangen Nürnberg, Egerlandstrasse1, Erlangen, 91058, Germany.
Traditional bulk syntheses of phosphorus compounds start with P to PCl oxidation but more sustainable methods cleave P─P bonds reductively. This generally results in larger polyphosphide Zintl anions: P -. We report a relatively selective full reduction of P at room temperature to give a unique hydrocarbon-soluble s-block metal complex of the P- anion.
View Article and Find Full Text PDFDalton Trans
August 2025
Leibniz-Institut für Katalyse e.V. (LIKAT Rostock), Albert-Einstein-Str. 29a, 18059 Rostock, Germany.
Phosphaalkenes are an underrepresented class of phosphorus-based ligands that hold great potential for the stabilisation of low-valent transition metal and main group fragments. We present the synthesis of a monoanionic PNP-type bis-phosphaalkene ligand and its reactions with [Rh(cod)(Cl)], which furnish two unique dinuclear Rh(I) complexes. These complexes show C-H activation of the Mes* groups of the PNP ligand and the presence of three different phosphaalkene coordination modes, respectively.
View Article and Find Full Text PDFJ Am Chem Soc
July 2025
Department of Chemical Sciences, Indian Institute of Science Education and Research-Kolkata, Mohanpur, Kolkata 741246, India.
In this work, we present the synthesis and detailed characterization of a low-valent phosphorus compound, mesoionic N-heterocyclic phosphinidene (mNHP, ), stabilized by an abnormal N-heterocyclic carbene (aNHC). Natural resonance theory analysis and the formation of a bis-borane adduct (confirmed by a single-crystal X-ray diffraction study) revealed that the phosphorus center in mNHP has access to two lone pairs of electrons, as expected for a P(I) species. Beyond its structural characterization, we also investigated both the nucleophilic and redox reactivity of mNHP.
View Article and Find Full Text PDFFacile one and two site reduction of hexachlorophosphazene using cyclic (alkyl)(amino)carbene substituents are shown to yield -CAAC--(PNP(Cl)NP(Cl)N) 1 and ,'-bis-CAAC--(PNPNP(Cl)N) 2 (CAAC = 1-[2,6-bis(isopropyl)phenyl]-3,3,5,5-tetramethyl-2-pyrrolidinylidene), respectively. Compound 1 is characterized by its predominantly phosphorus-centered HOMO, which results in typical phosphine-type nucleophilic and reductive reactivity; however, the resultant compounds of such reactions feature properties distinct from their classical phosphine analogues due to the CAAC-centered LUMO, which acts as an acceptor for both intramolecular interactions and photophysical excitations. In contrast, compound 2 exhibits π-conjugation spanning the endocyclic PNP moiety and the two CAAC substituents, despite its non-planar structure.
View Article and Find Full Text PDFOrg Biomol Chem
September 2024
Gansu International Scientific and Technological Cooperation Base of Water-Retention Chemical Functional Materials, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, China.
Aromatic 1,2,4-diazaphospholes featuring distinct hybrid-mode nitrogen atoms (N(λσ), N(λσ)) and low-valent phosphorus atoms (λσ) exhibited the characteristic of serving as unique hybrid ligands. This study presented a one-pot reaction involving the base-promoted stepwise cyclization of hydrazonoyl chlorides and [BuN][P(SiCl)] to yield 1,2,4-diazaphospholes, providing an effective method for synthesizing such compounds.
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