Selective Catalytic Hydrogenations of Nitriles, Ketones, and Aldehydes by Well-Defined Manganese Pincer Complexes.
暂无分享,去创建一个
R. Ludwig | M. Beller | C. Topf | H. Jiao | S. Fischer | K. Junge | W. Baumann | A. Spannenberg | Saravanakumar Elangovan
[1] G. Allmaier,et al. Synthesis, characterization and reactivity of vanadium, chromium, and manganese PNP pincer complexes , 2017 .
[2] Y. Diskin‐Posner,et al. Ketone hydrogenation catalyzed by a new iron(II)–PNN complex , 2016 .
[3] L. Shimon,et al. Manganese-Catalyzed Environmentally Benign Dehydrogenative Coupling of Alcohols and Amines to Form Aldimines and H2: A Catalytic and Mechanistic Study. , 2016, Journal of the American Chemical Society.
[4] B. Stöger,et al. Highly Efficient and Selective Hydrogenation of Aldehydes: A Well-Defined Fe(II) Catalyst Exhibits Noble-Metal Activity , 2016, ACS catalysis.
[5] M. Beller,et al. Improved Second Generation Iron Pincer Complexes for Effective Ester Hydrogenation , 2016 .
[6] T. Cundari,et al. Iron-Catalyzed Homogeneous Hydrogenation of Alkenes under Mild Conditions by a Stepwise, Bifunctional Mechanism , 2016 .
[7] G. Allmaier,et al. A Cobalt(I) Pincer Complex with an η(2) -C(aryl)-H Agostic Bond: Facile C-H Bond Cleavage through Deprotonation, Radical Abstraction, and Oxidative Addition. , 2016, Angewandte Chemie.
[8] N. Lugan,et al. Manganese organometallic compounds in homogeneous catalysis: Past, present, and prospects , 2016 .
[9] D. Milstein,et al. Selective hydrogenation of nitriles to primary amines catalyzed by a novel iron complex. , 2016, Chemical communications.
[10] Haijun Jiao,et al. A comparative computationally study about the defined m(II) pincer hydrogenation catalysts (m = fe, ru, os) , 2016, J. Comput. Chem..
[11] Xinzheng Yang,et al. Computational Mechanistic Study of the Hydrogenation and Dehydrogenation Reactions Catalyzed by Cobalt Pincer Complexes , 2015 .
[12] Yuanyuan Hu,et al. Manganese-Catalyzed Direct Nucleophilic C(sp(2))-H Addition to Aldehydes and Nitriles. , 2015, Angewandte Chemie.
[13] Neeraj Kumar,et al. Manganese-Based Molecular Electrocatalysts for Oxidation of Hydrogen , 2015 .
[14] B. de Bruin,et al. Hydrogenation of carboxylic acids with a homogeneous cobalt catalyst , 2015, Science.
[15] Y. Diskin‐Posner,et al. Cobalt-catalyzed hydrogenation of esters to alcohols: unexpected reactivity trend indicates ester enolate intermediacy. , 2015, Angewandte Chemie.
[16] Aaron Petronico,et al. A manganese catalyst for highly reactive yet chemoselective intramolecular C(sp3)–H amination , 2015, Nature Chemistry.
[17] S. Chakraborty,et al. Acceptorless, Reversible Dehydrogenation and Hydrogenation of N‑Heterocycles with a Cobalt Pincer Catalyst , 2015 .
[18] Cunyuan Zhao,et al. Unusual non-bifunctional mechanism for Co-PNP complex catalyzed transfer hydrogenation governed by the electronic configuration of metal center. , 2015, Dalton transactions.
[19] M. Beller,et al. Pincer-Type Complexes for Catalytic (De)Hydrogenation and Transfer (De)Hydrogenation Reactions: Recent Progress. , 2015, Chemistry.
[20] Yehoshoa Ben‐David,et al. Selective Hydrogenation of Nitriles to Primary Amines Catalyzed by a Cobalt Pincer Complex. , 2015, Journal of the American Chemical Society.
[21] C. Kubiak,et al. Electrocatalytic Dihydrogen Production by an Earth-Abundant Manganese Bipyridine Catalyst. , 2015, Inorganic chemistry.
[22] Shuang Gao,et al. Highly efficient oxidation of alcohols catalyzed by a porphyrin-inspired manganese complex. , 2015, Chemical communications.
[23] R. Kempe,et al. A Highly Active and Easily Accessible Cobalt Catalyst for Selective Hydrogenation of C═O Bonds. , 2015, Journal of the American Chemical Society.
[24] T. Zell,et al. Hydrogenation and dehydrogenation iron pincer catalysts capable of metal-ligand cooperation by aromatization/dearomatization. , 2015, Accounts of chemical research.
[25] J. Groves,et al. Manganese Catalyzed C-H Halogenation. , 2015, Accounts of chemical research.
[26] E. Hensen,et al. Heterogeneous and homogeneous catalysis for the hydrogenation of carboxylic acid derivatives: history, advances and future directions. , 2015, Chemical Society reviews.
[27] S. Hirano,et al. Hydrogenation of Carbon Dioxide to Formate Catalyzed by a Copper/1,8‐Diazabicyclo[5.4.0]undec‐7‐ene System , 2015 .
[28] R. Morris. Exploiting metal-ligand bifunctional reactions in the design of iron asymmetric hydrogenation catalysts. , 2015, Accounts of chemical research.
[29] J. Groves,et al. Targeted fluorination with the fluoride ion by manganese-catalyzed decarboxylation. , 2015, Angewandte Chemie.
[30] T. Zell,et al. Highly efficient, general hydrogenation of aldehydes catalyzed by PNP iron pincer complexes , 2015 .
[31] E. Bielinski,et al. Well-Defined Iron Catalysts for the Acceptorless Reversible Dehydrogenation-Hydrogenation of Alcohols and Ketones , 2014 .
[32] M. Beller,et al. Hydrogenation of esters to alcohols with a well-defined iron complex. , 2014, Angewandte Chemie.
[33] E. Bielinski,et al. Lewis acid-assisted formic acid dehydrogenation using a pincer-supported iron catalyst. , 2014, Journal of the American Chemical Society.
[34] M. Beller,et al. Mild and selective hydrogenation of aromatic and aliphatic (di)nitriles with a well-defined iron pincer complex , 2014, Nature Communications.
[35] Michael J. Rose,et al. Tuning coordination modes of pyridine/thioether Schiff base (NNS) ligands to mononuclear manganese carbonyls. , 2014, Dalton transactions.
[36] Scott P. Semproni,et al. Four-coordinate cobalt pincer complexes: electronic structure studies and ligand modification by homolytic and heterolytic pathways. , 2014, Journal of the American Chemical Society.
[37] S. Chakraborty,et al. A molecular iron catalyst for the acceptorless dehydrogenation and hydrogenation of N-heterocycles. , 2014, Journal of the American Chemical Society.
[38] S. Chakraborty,et al. Iron-based catalysts for the hydrogenation of esters to alcohols. , 2014, Journal of the American Chemical Society.
[39] T. Zell,et al. Unprecedented iron-catalyzed ester hydrogenation. Mild, selective, and efficient hydrogenation of trifluoroacetic esters to alcohols catalyzed by an iron pincer complex. , 2014, Angewandte Chemie.
[40] Kyle A. Grice,et al. Manganese catalysts with bulky bipyridine ligands for the electrocatalytic reduction of carbon dioxide: eliminating dimerization and altering catalysis. , 2014, Journal of the American Chemical Society.
[41] T. Ikariya,et al. Synthesis, structures, and reactivities of iron, cobalt, and manganese complexes bearing a pincer ligand with two protic pyrazole arms , 2014 .
[42] N. Lugan,et al. Hydrosilylation of Aldehydes and Ketones Catalyzed by Half‐Sandwich Manganese(I) N‐Heterocyclic Carbene Complexes , 2014 .
[43] Jianliang Xiao,et al. Iron catalyzed asymmetric hydrogenation of ketones. , 2014, Journal of the American Chemical Society.
[44] Matthias Beller,et al. Catalytic Hydrogenation of Carboxylic Acid Esters, Amides, and Nitriles with Homogeneous Catalysts , 2014 .
[45] R. Morris,et al. Iron(II) complexes containing unsymmetrical P-N-P' pincer ligands for the catalytic asymmetric hydrogenation of ketones and imines. , 2014, Journal of the American Chemical Society.
[46] T. Groy,et al. A highly active manganese precatalyst for the hydrosilylation of ketones and esters. , 2014, Journal of the American Chemical Society.
[47] M. Beller,et al. Selective hydrogen production from methanol with a defined iron pincer catalyst under mild conditions. , 2013, Angewandte Chemie.
[48] R. Bullock. Abundant Metals Give Precious Hydrogenation Performance , 2013, Science.
[49] D. Stephan,et al. H2 cleavage, hydride formation, and catalytic hydrogenation of imines with zinc complexes of C5Me5 and N-heterocyclic carbenes. , 2013, Angewandte Chemie.
[50] M. Beller,et al. Low-temperature aqueous-phase methanol dehydrogenation to hydrogen and carbon dioxide , 2013, Nature.
[51] B. Scott,et al. Mild and homogeneous cobalt-catalyzed hydrogenation of C=C, C=O, and C=N bonds. , 2012, Angewandte Chemie.
[52] M. Clarke. Recent developments in the homogeneous hydrogenation of carboxylic acid esters , 2012 .
[53] B. Scott,et al. Alkene Hydrogenation Catalyzed by Nickel Hydride Complexes of an Aliphatic PNP Pincer Ligand , 2012 .
[54] N. Coombs,et al. Iron nanoparticles catalyzing the asymmetric transfer hydrogenation of ketones. , 2012, Journal of the American Chemical Society.
[55] B. Foxman,et al. High-spin manganese(II) complexes of an amido/bis(phosphine) PNP ligand. , 2010, Inorganic chemistry.
[56] D. Nocera,et al. Ligand reactivity in diarylamido/bis(phosphine) PNP complexes of Mn(CO)3 and Re(CO)3. , 2009, Inorganic chemistry.
[57] P. Andersson,et al. Modern Reduction Methods , 2008 .
[58] C. Casey,et al. An efficient and chemoselective iron catalyst for the hydrogenation of ketones. , 2007, Journal of the American Chemical Society.
[59] Ryoji Noyori,et al. Asymmetric catalysis: science and opportunities (Nobel lecture). , 2002, Angewandte Chemie.
[60] J. Halpern,et al. Hydrogenation of .alpha.-methylstyrene by hydridopentacarbonylmanganese (I). Evidence for a free-radical mechanism , 2002 .
[61] R. Danheiser. Catalytic hydrogenation in organic synthesis - procedures and commentary , 1979 .