Sebastien Monfette, Zoë R. Turner, Scott P. Semproni, Paul J. Chirik:Enantiopure C 1 -Symmetric Bis(imino)pyridine Cobalt Complexes for Asymmetric Alkene Hydrogenation. In: Journal of the American Chemical Society. Band134, Nr.10, 14.März 2012, S.4561–4564, doi:10.1021/ja300503k.
Suzanne C.Bart,EmilLobkovsky,Paul J.Chirik:Preparation and Molecular and Electronic Structures of Iron(0) Dinitrogen and Silane Complexes and Their Application to Catalytic Hydrogenation and Hydrosilation. In: Journal of the American Chemical Society. 126. Jahrgang, Nr.42, 1.Oktober 2004, S.13794–13807, doi:10.1021/ja046753t, PMID 15493939 (englisch).
A. M. Tondreau, C. C. H. Atienza, K. J. Weller, S. A. Nye, K. M. Lewis:Iron Catalysts for Selective Anti-Markovnikov Alkene Hydrosilylation Using Tertiary Silanes. In: Science. Band335, Nr.6068, 3.Februar 2012, S.567–570, doi:10.1126/science.1214451.
Jennifer V. Obligacion, Paul J. Chirik:Bis(imino)pyridine Cobalt-Catalyzed Alkene Isomerization–Hydroboration: A Strategy for Remote Hydrofunctionalization with Terminal Selectivity. In: Journal of the American Chemical Society. Band135, Nr.51, 26.Dezember 2013, S.19107–19110, doi:10.1021/ja4108148.
Sarah K. Russell, Emil Lobkovsky, Paul J. Chirik:Iron-Catalyzed Intermolecular [2π + 2π] Cycloaddition. In: Journal of the American Chemical Society. Band133, Nr.23, 15.Juni 2011, S.8858–8861, doi:10.1021/ja202992p.
J. M. Hoyt, V. A. Schmidt, A. M. Tondreau, P. J. Chirik:Iron-catalyzed intermolecular [2+2] cycloadditions of unactivated alkenes. In: Science. Band349, Nr.6251, 28.August 2015, S.960–963, doi:10.1126/science.aac7440.
M. R. Friedfeld, M. Shevlin, J. M. Hoyt, S. W. Krska, M. T. Tudge:Cobalt Precursors for High-Throughput Discovery of Base Metal Asymmetric Alkene Hydrogenation Catalysts. In: Science. Band342, Nr.6162, 29.November 2013, S.1076–1080, doi:10.1126/science.1243550.
Max R. Friedfeld, Hongyu Zhong, Rebecca T. Ruck, Michael Shevlin, Paul J. Chirik:Cobalt-catalyzed asymmetric hydrogenation of enamides enabled by single-electron reduction. In: Science. Band360, Nr.6391, 25.Mai 2018, S.888–893, doi:10.1126/science.aar6117.
Renyuan Pony Yu, David Hesk, Nelo Rivera, István Pelczer, Paul J. Chirik:Iron-catalysed tritiation of pharmaceuticals. In: Nature. Band529, Nr.7585, Januar 2016, S.195–199, doi:10.1038/nature16464.
Jennifer V. Obligacion, Scott P. Semproni, Paul J. Chirik:Cobalt-Catalyzed C–H Borylation. In: Journal of the American Chemical Society. Band136, Nr.11, 19.März 2014, S.4133–4136, doi:10.1021/ja500712z.
Jamie M. Neely, Máté J. Bezdek, Paul J. Chirik:Insight into Transmetalation Enables Cobalt-Catalyzed Suzuki–Miyaura Cross Coupling. In: ACS Central Science. Band2, Nr.12, 28.Dezember 2016, S.935–942, doi:10.1021/acscentsci.6b00283, PMID 28058283, PMC5200927(freier Volltext).
Asbjørn Klerke, Claus Hviid Christensen, Jens K. Nørskov, Tejs Vegge:Ammonia for hydrogen storage: challenges and opportunities. In: Journal of Materials Chemistry. Band18, Nr.20, 2008, S.2304, doi:10.1039/b720020j.
Donald J. Knobloch, Emil Lobkovsky, Paul J. Chirik:Dinitrogen cleavage and functionalization by carbon monoxide promoted by a hafnium complex. In: Nature Chemistry. Band2, Nr.1, Januar 2010, S.30–35, doi:10.1038/nchem.477.
Scott P. Semproni, Paul J. Chirik:Synthesis of a Base-Free Hafnium Nitride from N 2 Cleavage: A Versatile Platform for Dinitrogen Functionalization. In: Journal of the American Chemical Society. Band135, Nr.30, 31.Juli 2013, S.11373–11383, doi:10.1021/ja405477m.
Iraklis Pappas, Paul J. Chirik:Ammonia Synthesis by Hydrogenolysis of Titanium–Nitrogen Bonds Using Proton Coupled Electron Transfer. In: Journal of the American Chemical Society. Band137, Nr.10, 18.März 2015, S.3498–3501, doi:10.1021/jacs.5b01047.
Máté J. Bezdek, Sheng Guo, Paul J. Chirik:Coordination-induced weakening of ammonia, water, and hydrazine X–H bonds in a molybdenum complex. In: Science. Band354, Nr.6313, 11.November 2016, S.730–733, doi:10.1126/science.aag0246.
Grant W. Margulieux, Máté J. Bezdek, Zoë R. Turner, Paul J. Chirik:Ammonia Activation, H 2 Evolution and Nitride Formation from a Molybdenum Complex with a Chemically and Redox Noninnocent Ligand. In: Journal of the American Chemical Society. Band139, Nr.17, 3.Mai 2017, S.6110–6113, doi:10.1021/jacs.7b03070.
Suzanne C.Bart,EmilLobkovsky,Paul J.Chirik:Preparation and Molecular and Electronic Structures of Iron(0) Dinitrogen and Silane Complexes and Their Application to Catalytic Hydrogenation and Hydrosilation. In: Journal of the American Chemical Society. 126. Jahrgang, Nr.42, 1.Oktober 2004, S.13794–13807, doi:10.1021/ja046753t, PMID 15493939 (englisch).
Jamie M. Neely, Máté J. Bezdek, Paul J. Chirik:Insight into Transmetalation Enables Cobalt-Catalyzed Suzuki–Miyaura Cross Coupling. In: ACS Central Science. Band2, Nr.12, 28.Dezember 2016, S.935–942, doi:10.1021/acscentsci.6b00283, PMID 28058283, PMC5200927(freier Volltext).