Bottom-up approach to engineer a molybdenum-doped covalent-organic framework catalyst for selective oxidation reaction
暂无分享,去创建一个
Jian Zhang | Weijie Zhang | Pingbo Zhang | P. Jiang | Ying Wang | Pingping Jiang | Weijie Zhang | Pingbo Zhang | Yongxue Gao | Jian Zhang | Ying Wang | Yongxue Gao
[1] M. Bagherzadeh,et al. Immobilization of dioxomolybdenum(VI) complex bearing salicylidene 2-picoloyl hydrazone on chloropropyl functionalized SBA-15: A highly active, selective and reusable catalyst in olefin epoxidation , 2014 .
[2] Abdolreza Rezaeifard,et al. Economical Oxygenation of Olefins and Sulfides Catalyzed by New Molybdenum(VI) Tridentate Schiff Base Complexes: Synthesis and Crystal Structure , 2012 .
[3] G. Fortunato,et al. Molybdenum-Pterin Chemistry. 3. Use of X-ray Photoelectron Spectroscopy To Assign Oxidation States in Metal Complexes of Noninnocent Ligands , 1999 .
[4] Banglin Chen,et al. Highly efficient C-H oxidative activation by a porous Mn(III) -porphyrin metal-organic framework under mild conditions. , 2013, Chemistry.
[5] C. G. Young,et al. New insights into the Berg-Holm oxomolybdoenzyme model , 1999 .
[6] S. Deng,et al. Selective CO2 capture in an imine linked porphyrin porous polymer , 2013 .
[7] Liuyi Li,et al. Urea-based porous organic frameworks: effective supports for catalysis in neat water. , 2014, Chemistry.
[8] Yanyan Zhang,et al. Aerobic selective oxidation of benzyl alcohols to benzaldehyde catalyzed by bidentate Schiff base dioxomolybdenum(VI) complex immobilized on CPS microspheres , 2012 .
[9] R. Banerjee,et al. Construction of crystalline 2D covalent organic frameworks with remarkable chemical (acid/base) stability via a combined reversible and irreversible route. , 2012, Journal of the American Chemical Society.
[10] Yuan Zhang,et al. Construction of covalent organic framework for catalysis: Pd/COF-LZU1 in Suzuki-Miyaura coupling reaction. , 2011, Journal of the American Chemical Society.
[11] A. Valente,et al. Dioxomolybdenum(VI) Epoxidation Catalyst Supported on Mesoporous Silica Containing Phosphane Oxide Groups , 2010 .
[12] S. Tangestaninejad,et al. MoO2(acac)2 supported on multi-wall carbon nanotubes: Highly efficient and reusable catalysts for alkene epoxidation with tert-BuOOH , 2012 .
[13] Weijie Zhang,et al. Selective oxidation over a metalloporphyrinic metal–organic framework catalyst and insights into the mechanism of bicarbonate ion as co-catalyst , 2014 .
[14] Zehui Zhang,et al. Aerobic oxidation of biomass derived 5-hydroxymethylfurfural into 5-hydroxymethyl-2-furancarboxylic acid catalyzed by a montmorillonite K-10 clay immobilized molybdenum acetylacetonate complex , 2014 .
[15] R. Banerjee,et al. Mechanochemical synthesis of chemically stable isoreticular covalent organic frameworks. , 2013, Journal of the American Chemical Society.
[16] Michael O'Keeffe,et al. Porous, Crystalline, Covalent Organic Frameworks , 2005, Science.
[17] Wei Wang,et al. Covalent organic frameworks (COFs): from design to applications. , 2013, Chemical Society reviews.
[18] W. Wang,et al. Covalent organic frameworks. , 2012, Chemical Society reviews.
[19] J. Ziółkowski,et al. Molybdenum complex-catalysed epoxidation of unsaturated fatty acids by organic hydroperoxides , 2003 .
[20] Xiong Chen,et al. Towards covalent organic frameworks with predesignable and aligned open docking sites. , 2014, Chemical communications.
[21] A. Adesina,et al. Improved alkene selectivity in carbon monoxide hydrogenation over silica supported cobalt-molybdenum catalyst , 1994 .
[22] M. Maurya. Catalytic Applications of Polymer-Supported Molybdenum Complexes in Organic Transformations , 2012 .
[23] J. Simpson,et al. Synthesis, crystal structure and catalytic activity of a new Mo Schiff base complex with Mo histidine immobilized on Al-MCM-41 for oxidation of sulfides , 2014 .
[24] Robert Huber,et al. Crystal Structure of the Xanthine Oxidase-Related Aldehyde Oxido-Reductase from D. gigas , 1995, Science.