Oxidative Addition of Hydridic, Protic, and Nonpolar E-H Bonds (E = Si, P, N, or O) to an Aluminyl Anion release_iwmmbatigzdajp34m4jls6dnnq

by Matthew J Evans, Mathew Anker, Martyn Coles

References

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Showing 1 - 30 of 47 references (in 160ms)
[ref1/cit1]

via crossref
The Tetrameric Aluminum(I) Compound[{Al(η5-C5Me5)}4]
Carsten Dohmeier, Christian Robl, Matthias Tacke, Hansgeorg Schnöckel
1991   Angewandte Chemie International Edition in English
doi:10.1002/anie.199105641 
[ref2/cit2]

via crossref
Synthesis and Structure of a Monomeric Aluminum(I) Compound [{HC(CMeNAr)2}Al] (Ar=2,6–iPr2C6H3): A Stable Aluminum Analogue of a Carbene
Chunming Cui, Herbert W. Roesky, Hans-Georg Schmidt, Mathias Noltemeyer, Haijun Hao, Fanica Cimpoesu
2000   Angewandte Chemie International Edition
doi:10.1002/1521-3773(20001201)39:23<4274::aid-anie4274>3.0.co;2-k  pmid:29711904 
[ref3/cit3]

via crossref
The Unique β-diketiminate Ligand in Aluminum(I) and Gallium(I) Chemistry
Zhong Mingdong, Soumen Sinhababu, Herbert W Roesky
2020   Dalton Transactions
doi:10.1039/c9dt04763h  pmid:31942579 
web.archive.org [PDF]
[ref4/cit4]

via crossref
The chemistry of aluminum(I) with β-diketiminate ligands and pentamethylcyclopentadienyl-substituents: Synthesis, reactivity and applications
Yashuai Liu, Jia Li, Xiaoli Ma, Zhi Yang, Herbert W. Roesky
2018   Coordination chemistry reviews
doi:10.1016/j.ccr.2018.07.004 
[ref5/cit5]

via crossref
Cyclopentadiene Based Low-Valent Group 13 Metal Compounds: Ligands in Coordination Chemistry and Link between Metal Rich Molecules and Intermetallic Materials
Sandra González-Gallardo, Timo Bollermann, Roland A. Fischer, Ramaswamy Murugavel
2012   Chemical Reviews
doi:10.1021/cr2001146  pmid:22364369 
[ref6/cit6]

via crossref
The Chemistry of Aluminum(I), Silicon(II), and Germanium(II)
Selvarajan Nagendran, Herbert W. Roesky
2008   Organometallics
doi:10.1021/om7007869 
[ref7/cit7]

via crossref
Chemistry of aluminium(i)
Herbert W. Roesky, S. Shravan Kumar
2005   Chemical Communications
doi:10.1039/b505307b  pmid:16091791 
[ref8/cit8]

via crossref
Synthesis, structure and reaction chemistry of a nucleophilic aluminyl anion
Jamie Hicks, Petra Vasko, Jose M. Goicoechea, Simon Aldridge
2018   Nature
doi:10.1038/s41586-018-0037-y  pmid:29662211 
web.archive.org [PDF]
[ref9/cit9]

via crossref
The Aluminyl Anion: A New Generation of Aluminium Nucleophile
Jamie Hicks, Petra Vasko, Jose M. Goicoechea, Simon Aldridge
2020   Angewandte Chemie International Edition
doi:10.1002/anie.202007530  pmid:32567755 
[ref10/cit10]

via crossref
Reduction vs. Addition: The Reaction of an Aluminyl Anion with 1,3,5,7-Cyclooctatetraene
Ryan J. Schwamm, Mathew D. Anker, Matthias Lein, Martyn P. Coles
2018   Angewandte Chemie International Edition
doi:10.1002/anie.201811675 
[ref11/cit11]

via crossref
A Stable Calcium Aluminyl
Michael Stephen Hill, Ryan Schwamm, Martyn Coles, Mary Mahon, Claire McMullin, Nasir Rajabi, Andrew Wilson
2019   Angewandte Chemie International Edition
doi:10.1002/anie.201914986  pmid:31830364 
[ref12/cit12]

via crossref
An alkyl-substituted aluminium anion with strong basicity and nucleophilicity
Satoshi Kurumada, Shuhei Takamori, Makoto Yamashita
2019   Nature Chemistry
doi:10.1038/s41557-019-0365-z  pmid:31767993 
[ref13/cit13]

via crossref
Construction of σ-aromatic AlB2 ring via A Borane Coupling with A Dicoordinate Cyclic (Alkyl)(Amino)Aluminyl Anion
Kota Koshino, Rei Kinjo
2020   Journal of the American Chemical Society
doi:10.1021/jacs.0c03179  pmid:32321239 
[ref100/cit100]

via crossref
Boosting Low Valent Al(I) Reactivity with a Potassium Reagent
Sjoerd Harder, Samuel Grams, Jonathan Eyselein, Jens Langer, Christian Färber
2020   Angewandte Chemie International Edition
doi:10.1002/anie.202006693  pmid:32449816 
[ref14/cit14]

via crossref
Aluminium-Mediated Carbon Dioxide Reduction by an Isolated Monoalumoxane Anion
Mathew D Anker, Martyn P Coles
2019   Angewandte Chemie International Edition
doi:10.1002/anie.201911550  pmid:31568609 
[ref15/cit15]

via crossref
Trapping and Reactivity of a Molecular Aluminium Oxide Ion
Jamie Hicks, Andreas Heilmann, Petra Vasko, Jose Goicoechea, Simon Aldridge
2019   Angewandte Chemie International Edition
doi:10.1002/anie.201910509  pmid:31550066 
[ref16/cit16]

via crossref
Isoelectronic, aluminium analogues of carbonyls and dioxiranes
Mathew D Anker, Martyn P Coles
2019   Angewandte Chemie International Edition
doi:10.1002/anie.201907884  pmid:31295385 
[ref17/cit17]

via crossref
Double insertion of CO2 into an Al–Te multiple bond
Matthew J. Evans, Mathew David Anker, Claire L. McMullin, Nasir A. Rajabi, Martyn P Coles
2021   Chemical Communications
doi:10.1039/d0cc07448a  pmid:33594393 
[ref18/cit18]

via crossref
Synthesis and Reactivity of a Terminal Aluminium-Imide Bond
Mathew David Anker, Ryan James Schwamm, Martyn P Coles
2020   Chemical Communications
doi:10.1039/c9cc09214e  pmid:31984981 
[ref19/cit19]

via crossref
Carbon Monoxide Activation by a Molecular Aluminium Imide: C-O Bond Cleavage and C-C Bond Formation
Andreas Heilmann, Jamie Hicks, Petra Vasko, Jose Goicoechea, Simon Aldridge
2020   Angewandte Chemie International Edition
doi:10.1002/anie.201916073  pmid:31999037 
[ref20/cit20]

via crossref
A nucleophilic gold complex
Jamie Hicks, Akseli Mansikkamäki, Petra Vasko, Jose M. Goicoechea, Simon Aldridge
2019   Nature Chemistry
doi:10.1038/s41557-018-0198-1 
web.archive.org [PDF]
[ref21/cit21]

via crossref
An Alumanylyttrium Complex with an Absorption due to a Transition from the Al–Y Bond to an Unoccupied d‐Orbital
Kengo Sugita, Makoto Yamashita
2020   Chemistry - A European Journal
doi:10.1002/chem.202000752  pmid:32052882 
[ref22/cit22]

via crossref
Reversible, room-temperature C-C bond activation of benzene by an isolable metal complex
Jamie Hicks, Petra Vasko, Jose Manuel Goicoechea, Simon Aldridge
2019   Journal of the American Chemical Society
doi:10.1021/jacs.9b05925 
[ref23/cit23]

via crossref
Cycloaddition of Dialkylalumanyl Anion toward Unsaturated Hydrocarbons in (1+2) and (1+4) Modes
Makoto Yamashita, Kengo Sugita, Ryo Nakano
2019   Chemistry - A European Journal
doi:10.1002/chem.201905830  pmid:31880356 
[ref24/cit24]

via crossref
Fragmentation of White Phosphorus by a Cyclic (Alkyl)(Amino)Alumanyl Anion
Kota Koshino, Rei Kinjo
2020   Organometallics
doi:10.1021/acs.organomet.0c00444 
[ref25/cit25]

via crossref
Oxidative Addition of σ Bonds to an Al(I) Center
Terry Chu, Ilia Korobkov, Georgii I. Nikonov
2014   Journal of the American Chemical Society
doi:10.1021/ja5038337  pmid:24893309 
[ref26/cit26]

via crossref
Arene C‐H activation at aluminium(I): meta selectivity driven by the electronics of SNAr chemistry
Jamie Hicks, Petra Vasko, Andreas Heilmann, Jose Goicoechea, Simon Aldridge
2020   Angewandte Chemie International Edition
doi:10.1002/anie.202008557  pmid:32722863 
[ref27/cit27]

via crossref
A meta‐Selective C‐H Alumination of Mono‐Substituted Benzene by Using An Alkyl‐Substituted Al Anion through Hydride‐Eliminating SNAr Reaction
Satoshi Kurumada, Kengo Sugita, Ryo Nakano, Makoto Yamashita
2020   Angewandte Chemie International Edition
doi:10.1002/anie.202009138  pmid:32729647 
[ref28/cit28]

via crossref
Main-group elements as transition metals
Philip P. Power
2010   Nature
doi:10.1038/nature08634  pmid:20075912 
[ref29/cit29]

via crossref
The Road Travelled: After Main-Group Elements as Transition Metals
Catherine Weetman, Shigeyoshi Inoue
2018   ChemCatChem
doi:10.1002/cctc.201800963 
Showing 1 - 30 of 47 references  next »