2089 - 2089 |
Introduction: First Row Metals and Catalysis Beller M |
2090 - 2127 |
First-Row Transition-Metal-Catalyzed Carbonylative Transformations of Carbon Electrophiles Peng JB, Wu FP, Wu XF |
2128 - 2191 |
Catalytic Applications of Vanadium: A Mechanistic Perspective Langeslay RR, Kaphan DM, Marshall CL, Stair PC, Sattelberger AP, Delferro M |
2192 - 2452 |
3d Transition Metals for C-H Activation Gandeepan P, Muller T, Zell D, Cera G, Warratz S, Ackermann L |
2453 - 2523 |
Computational Approach to Molecular Catalysis by 3d Transition Metals: Challenges and Opportunities Vogiatzis KD, Polynski MV, Kirkland JK, Townsend J, Hashemi A, Liu C, Pidko EA |
2524 - 2549 |
3d-Metal Catalyzed N- and C-Alkylation Reactions via Borrowing Hydrogen or Hydrogen Autotransfer Irrgang T, Kempe R |
2550 - 2610 |
Iron Catalysis in Reduction and Hydrometalation Reactions Wei D, Darcel C |
2611 - 2680 |
Reduction of Nitro Compounds Using 3d-Non-Noble Metal Catalysts Formenti D, Ferretti F, Scharnagl FK, Beller M |
2681 - 2751 |
First-Row Transition Metal (De)Hydrogenation Catalysis Based On Functional Pincer Ligands Alig L, Fritz M, Schneider S |
2752 - 2875 |
Electro- and Solar-Driven Fuel Synthesis with First Row Transition Metal Complexes Dalle KE, Warnan J, Leung JJ, Reuillard B, Karmel IS, Reisner E |
2876 - 2953 |
Hydride Transfer Reactions Catalyzed by Cobalt Complexes Ai WY, Zhong R, Liu XF, Liu Q |
2954 - 3031 |
Copper-Promoted Functionalization of Organic Molecules: from Biologically Relevant Cu/O-2 Model Systems to Organometallic Transformations Trammell R, Rajabimoghadam K, Garcia-Bosch I |