Uranium nitride complexes are of high interest because of their ability to effect dinitrogen reduction and functionalization and to promote magnetic communication, but studies of their properties and reactivity remain rare. Here we have prepared in 73% yield the diuranium(v) bis-nitride complex [K{[U(OSi(O Bu))](μ-N)}], , from the thermal decomposition of the nitride-, azide-bridged diuranium(iv) complex [K{[U(OSi(O Bu))](μ-N)(μ-N)}], The bis-nitride reacts in ambient conditions with 1 equiv. of CS and 1 equiv. of CO resulting in N-C bond formation to afford the diuranium(v) complexes [K{[U(OSi(O Bu))](μ-N)(μ-S)(μ-NCS)}], and [K{[U(OSi(O Bu))](μ-N)(μ-O)(μ-NCO)}], , respectively. Both nitrides in react with CO resulting in oxidative addition of CO to one nitride and CO cleavage by the second nitride to afford the diuranium(iv) complex [K{[U(OSi(O Bu))](μ-CN)(μ-O)(μ-NCO)}], . Complex also effects the remarkable oxidative cleavage of H in mild conditions to afford the bis-imido bridged diuranium(iv) complex [K{[U(OSi(O Bu))](μ-NH)}], that can be further protonated to afford ammonia in 73% yield. Complex provides a good model for hydrogen cleavage by metal nitrides in the Haber-Bosch process. The measured magnetic data show an unusually strong antiferromagnetic coupling between uranium(v) ions in the complexes and with Neel temperatures of 77 K and 60 K respectively, demonstrating that nitrides are attractives linkers for promoting magnetic communication in uranium complexes.
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http://dx.doi.org/10.1039/c8sc05721d | DOI Listing |
Chem Sci
October 2021
Institut des Sciences et Ingénierie Chimiques, École Polytechnique Fédérale de Lausanne (EPFL) 1015 Lausanne Switzerland
The conversion of metal nitrides to NH is an essential step in dinitrogen fixation, but there is limited knowledge of the reactivity of nitrides with protons (H). Herein, we report comparative studies for the reactions of H and NH with uranium nitrides, containing different types of ancillary ligands. We show that the differences in ancillary ligands, leads to dramatically different reactivity.
View Article and Find Full Text PDFChem Sci
April 2021
Insititut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL) 1015 Lausanne Switzerland
Uranium nitride compounds are important molecular analogues of uranium nitride materials such as UN and UN which are effective catalysts in the Haber-Bosch synthesis of ammonia, but the synthesis of molecular nitrides remains a challenge and studies of the reactivity and of the nature of the bonding are poorly developed. Here we report the synthesis of the first nitride bridged uranium complexes containing U(vi) and provide a unique comparison of reactivity and bonding in U(vi)/U(vi), U(vi)/U(v) and U(v)/U(v) systems. Oxidation of the U(v)/U(v) bis-nitride [K{U(OSi(O Bu))(μ-N)}], , with mild oxidants yields the U(v)/U(vi) complexes [K{U(OSi(O Bu))(μ-N)}], and [K{U(OSi(O Bu))}(μ-N)(μ-I)], while oxidation with a stronger oxidant ("magic blue") yields the U(vi)/U(vi) complex [{U(OSi(O Bu))}(μ-N)(μ-thf)], .
View Article and Find Full Text PDFChem Sci
October 2019
Institut des Sciences et Ingénierie Chimiques , Ecole Polytechnique Fédérale de Lausanne (EPFL) , 1015 Lausanne , Switzerland . Email:
Molecular uranium nitride complexes were prepared to relate their small molecule reactivity to the nature of the U[double bond, length as m-dash]N[double bond, length as m-dash]U bonding imposed by the supporting ligand. The U-U nitride complexes, [NBu][{(( BuO)SiO)U}(μ-N)], , and [NBu][((MeSi)N)U}(μ-N)], , were synthesised by reacting NBuN with the U complexes, [U(OSi(O Bu))(μ-OSi(O Bu))] and [U(N(SiMe))], respectively. Oxidation of with AgBPh gave the U-U analogue, [((MeSi)N)U}(μ-N)], .
View Article and Find Full Text PDFJ Am Chem Soc
June 2019
Institut des Sciences et Ingénierie Chimiques , Ecole Polytechnique Fédérale de Lausanne (EPFL) , CH-1015 Lausanne , Switzerland.
Here we show that a scaffold combining siloxide ligands and a bridging oxide allows the synthesis and characterization of the stable dinuclear uranium(IV) hydride complex [K{[U(OSi(O Bu))](μ-O)(μ-H)}], 2, which displays high reductive reactivity. The dinuclear bis-hydride 2 effects the reductive coupling of acetonitrile by hydride transfer to yield [K{[U(OSi(O Bu))](μ-O)(μ-κ-NC(CH)NCHCH)}], 3. Under ambient conditions, the reaction of 2 with CO affords the oxomethylene reduction product [K{[U(OSi(O Bu))](μ-CHO)(μ-O)}], 4, that can further add H to afford the methoxide hydride complex [K{[U(OSi(O Bu))](μ-OCH)(μ-O)(μ-H)}], 5, from which methanol is released in water.
View Article and Find Full Text PDFChem Sci
March 2019
Institut des Sciences et Ingénierie Chimiques , Ecole Polytechnique Fédérale de Lausanne (EPFL) , CH-1015 Lausanne , Switzerland . Email:
Uranium nitride complexes are of high interest because of their ability to effect dinitrogen reduction and functionalization and to promote magnetic communication, but studies of their properties and reactivity remain rare. Here we have prepared in 73% yield the diuranium(v) bis-nitride complex [K{[U(OSi(O Bu))](μ-N)}], , from the thermal decomposition of the nitride-, azide-bridged diuranium(iv) complex [K{[U(OSi(O Bu))](μ-N)(μ-N)}], The bis-nitride reacts in ambient conditions with 1 equiv. of CS and 1 equiv.
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