Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide

Two-electron reductive carbonylation of the uranium(VI) nitride [U(TrenTIPS)(N)] (2, TrenTIPS=N(CH2CH2NSiiPr3)3) with CO gave the uranium(IV) cyanate [U(TrenTIPS)(NCO)] (3). KC8 reduction of 3 resulted in cyanate dissociation to give [U(TrenTIPS)] (4) and KNCO, or cyanate retention in [U(TrenTIPS)(N...

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Main Authors: Cleaves, Peter A., King, David M., Kefalidis, Christos E., Maron, Laurent, Tuna, Floriana, McInnes, Eric J.L., McMaster, Jonathan, Lewis, William, Blake, Alexander J., Liddle, Stephen T.
Format: Article
Published: Wiley-VCH Verlag 2014
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Online Access:https://eprints.nottingham.ac.uk/46634/
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author Cleaves, Peter A.
King, David M.
Kefalidis, Christos E.
Maron, Laurent
Tuna, Floriana
McInnes, Eric J.L.
McMaster, Jonathan
Lewis, William
Blake, Alexander J.
Liddle, Stephen T.
author_facet Cleaves, Peter A.
King, David M.
Kefalidis, Christos E.
Maron, Laurent
Tuna, Floriana
McInnes, Eric J.L.
McMaster, Jonathan
Lewis, William
Blake, Alexander J.
Liddle, Stephen T.
author_sort Cleaves, Peter A.
building Nottingham Research Data Repository
collection Online Access
description Two-electron reductive carbonylation of the uranium(VI) nitride [U(TrenTIPS)(N)] (2, TrenTIPS=N(CH2CH2NSiiPr3)3) with CO gave the uranium(IV) cyanate [U(TrenTIPS)(NCO)] (3). KC8 reduction of 3 resulted in cyanate dissociation to give [U(TrenTIPS)] (4) and KNCO, or cyanate retention in [U(TrenTIPS)(NCO)][K(B15C5)2] (5, B15C5=benzo-15-crown-5 ether) with B15C5. Complexes 5 and 4 and KNCO were also prepared from CO and the uranium(V) nitride [{U(TrenTIPS)(N)K}2] (6), with or without B15C5, respectively. Complex 5 can be prepared directly from CO and [U(TrenTIPS)(N)][K(B15C5)2] (7). Notably, 7 reacts with CO much faster than 2. This unprecedented f-block reactivity was modeled theoretically, revealing nucleophilic attack of the π* orbital of CO by the nitride with activation energy barriers of 24.7 and 11.3 kcal mol−1 for uranium(VI) and uranium(V), respectively. A remarkably simple two-step, two-electron cycle for the conversion of azide to nitride to cyanate using 4, NaN3 and CO is presented.
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spelling nottingham-466342020-05-04T16:53:53Z https://eprints.nottingham.ac.uk/46634/ Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide Cleaves, Peter A. King, David M. Kefalidis, Christos E. Maron, Laurent Tuna, Floriana McInnes, Eric J.L. McMaster, Jonathan Lewis, William Blake, Alexander J. Liddle, Stephen T. Two-electron reductive carbonylation of the uranium(VI) nitride [U(TrenTIPS)(N)] (2, TrenTIPS=N(CH2CH2NSiiPr3)3) with CO gave the uranium(IV) cyanate [U(TrenTIPS)(NCO)] (3). KC8 reduction of 3 resulted in cyanate dissociation to give [U(TrenTIPS)] (4) and KNCO, or cyanate retention in [U(TrenTIPS)(NCO)][K(B15C5)2] (5, B15C5=benzo-15-crown-5 ether) with B15C5. Complexes 5 and 4 and KNCO were also prepared from CO and the uranium(V) nitride [{U(TrenTIPS)(N)K}2] (6), with or without B15C5, respectively. Complex 5 can be prepared directly from CO and [U(TrenTIPS)(N)][K(B15C5)2] (7). Notably, 7 reacts with CO much faster than 2. This unprecedented f-block reactivity was modeled theoretically, revealing nucleophilic attack of the π* orbital of CO by the nitride with activation energy barriers of 24.7 and 11.3 kcal mol−1 for uranium(VI) and uranium(V), respectively. A remarkably simple two-step, two-electron cycle for the conversion of azide to nitride to cyanate using 4, NaN3 and CO is presented. Wiley-VCH Verlag 2014-09-17 Article PeerReviewed Cleaves, Peter A., King, David M., Kefalidis, Christos E., Maron, Laurent, Tuna, Floriana, McInnes, Eric J.L., McMaster, Jonathan, Lewis, William, Blake, Alexander J. and Liddle, Stephen T. (2014) Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide. Angewandte Chemie International Edition, 53 (39). pp. 10412-10415. ISSN 1521-3773 carbon monoxide; carbonylation; cyanates; nitrides; uranium http://onlinelibrary.wiley.com/doi/10.1002/anie.201406203/abstract doi:10.1002/anie.201406203 doi:10.1002/anie.201406203
spellingShingle carbon monoxide; carbonylation; cyanates; nitrides; uranium
Cleaves, Peter A.
King, David M.
Kefalidis, Christos E.
Maron, Laurent
Tuna, Floriana
McInnes, Eric J.L.
McMaster, Jonathan
Lewis, William
Blake, Alexander J.
Liddle, Stephen T.
Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title_full Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title_fullStr Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title_full_unstemmed Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title_short Two-electron reductive carbonylation of terminal uranium(V) and uranium(VI) nitrides to cyanate by carbon monoxide
title_sort two-electron reductive carbonylation of terminal uranium(v) and uranium(vi) nitrides to cyanate by carbon monoxide
topic carbon monoxide; carbonylation; cyanates; nitrides; uranium
url https://eprints.nottingham.ac.uk/46634/
https://eprints.nottingham.ac.uk/46634/
https://eprints.nottingham.ac.uk/46634/