Mn(III)‐Porphyrin Containing Heterogeneous Catalyst based on Microporous Polymeric Constituents as a New Class of Catalyst Support
暂无分享,去创建一个
Ha Young Jeong | S. Lee | Cheal Kim | D. Shin | Jigyoung Yi
[1] Justin M. Notestein,et al. Ni(II) complex on a bispyridine-based porous organic polymer as a heterogeneous catalyst for ethylene oligomerization , 2017 .
[2] Ha Young Jeong,et al. Synthesis, Characterization, and Efficient Catalytic Activities of a Nickel(II) Porphyrin: Remarkable Solvent and Substrate Effects on Participation of Multiple Active Oxidants. , 2017, Chemistry.
[3] Guangxing Li,et al. Promoting a non-heme manganese complex catalyzed oxygen transfer reaction by both lewis acid and Brønsted acid: Similarities and distinctions , 2017 .
[4] Youngmee Kim,et al. Synthesis, Characterization, and Catalytic Activities of A Nickel(II) Monoamido-Tetradentate Complex: Evidence For NiIII -Oxo and NiIV -Oxo Species. , 2017, Chemistry.
[5] Kai-xi Li,et al. Biomimetic oxidative desulfurization of fuel oil in ionic liquids catalyzed by Fe (III) porphyrins , 2017 .
[6] S. Qiu,et al. Porous Organic Materials: Strategic Design and Structure-Function Correlation. , 2017, Chemical reviews.
[7] Jiayin Yuan,et al. Click-based porous cationic polymers for enhanced carbon dioxide capture , 2017, 1701.06616.
[8] Jinheung Kim,et al. Nonheme iron complex-catalyzed efficient alcohol oxidation by t-BuOOH with N-hydroxyphthalimide (NHPI) as co-catalyst: Implication of high valent iron-oxo species , 2016 .
[9] M. Louloudi,et al. Mn-Schiff base modified MCM-41, SBA-15 and CMK-3 NMs as single-site heterogeneous catalysts: Alkene epoxidation with H2O2 incorporation , 2016 .
[10] M. Clémancey,et al. Mononuclear Nonheme High-Spin Iron(III)-Acylperoxo Complexes in Olefin Epoxidation and Alkane Hydroxylation Reactions. , 2016, Journal of the American Chemical Society.
[11] R. Hill,et al. The ability of a nano hydroxyapatite toothpaste and oral rinse containing fluoride to protect enamel during an acid challenge using 19F solid state NMR spectroscopy , 2015 .
[12] F. Xiao,et al. Porous polymer catalysts with hierarchical structures. , 2015, Chemical Society reviews.
[13] Hong‐Cai Zhou,et al. Design and fabrication of mesoporous heterogeneous basic catalysts. , 2015, Chemical Society reviews.
[14] J. Hupp,et al. Metal-organic framework nodes as nearly ideal supports for molecular catalysts: NU-1000- and UiO-66-supported iridium complexes. , 2015, Journal of the American Chemical Society.
[15] T. Marks,et al. Supported Single-Site Organometallic Catalysts for the Synthesis of High-Performance Polyolefins , 2015, Catalysis Letters.
[16] Jung Kyoo Lee,et al. Preparation and catalytic application of Mn(III)-porphyrin based micro sized porous coordination polymers , 2014 .
[17] H. Zhou,et al. Metal-organic frameworks (MOFs). , 2014, Chemical Society reviews.
[18] SonBinh T. Nguyen,et al. Vanadium-Node-Functionalized UiO-66: A Thermally Stable MOF- Supported Catalyst for the Gas-Phase Oxidative Dehydrogenation of Cyclohexene , 2014 .
[19] J. Yano,et al. Preparation and Properties of an MnIV-Hydroxide Complex: Proton and Electron Transfer at a Mononuclear Manganese Site and its Relationship to the Oxygen Evolving Complex within Photosystem II. , 2014, Chemical science.
[20] Ying Shirley Meng,et al. Reusable oxidation catalysis using metal-monocatecholato species in a robust metal-organic framework. , 2014, Journal of the American Chemical Society.
[21] A. Bell,et al. Selective Propene Oligomerization with Nickel(II)-Based Metal–Organic Frameworks , 2014 .
[22] Sang-Eun Bae,et al. Morphological diversity of Mn(III) metalloporphyrin-based nano- and microsized CPAs assembled via kinetic and thermodynamic controls and their application in heterogeneous catalysis , 2013 .
[23] Michael O’Keeffe,et al. The Chemistry and Applications of Metal-Organic Frameworks , 2013, Science.
[24] SonBinh T. Nguyen,et al. Design, Synthesis, Characterization, and Catalytic Properties of a Large-Pore Metal-Organic Framework Possessing Single-Site Vanadyl(monocatecholate) Moieties , 2013 .
[25] S. Nguyen,et al. Stabilizing unstable species through single-site isolation: a catalytically active TaV trialkyl in a porous organic polymer , 2013 .
[26] SonBinh T. Nguyen,et al. Synthesis and Metalation of Catechol-Functionalized Porous Organic Polymers , 2012 .
[27] SonBinh T. Nguyen,et al. Porous organic polymers in catalysis: Opportunities and challenges , 2011 .
[28] Seth M Cohen,et al. Photochemical activation of a metal-organic framework to reveal functionality. , 2010, Angewandte Chemie.
[29] W. Zhou,et al. Structural stability and elastic properties of prototypical covalent organic frameworks , 2010 .
[30] Arne Thomas,et al. Micropore analysis of polymer networks by gas sorption and 129Xe NMR spectroscopy: toward a better understanding of intrinsic microporosity. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[31] Neil B. McKeown,et al. Exploitation of Intrinsic Microporosity in Polymer-Based Materials , 2010 .
[32] S. Deng,et al. Structural Stability of Metal Organic Framework MOF-177 , 2010 .
[33] X. Fontrodona,et al. Efficient and selective peracetic Acid epoxidation catalyzed by a robust manganese catalyst. , 2008, Organic letters.
[34] Youngmee Kim,et al. Biomimetic hydrocarbon oxidation catalyzed by nonheme iron(III) complexes with peracids: evidence for an Fe(V)=O species. , 2007, Chemistry.
[35] R. Scopelliti,et al. Enhanced hydrolytic activity of Cu(II) and Zn(II) complexes in highly cross-linked polymers. , 2006, Dalton transactions.
[36] A. Gavezzotti,et al. Molecular Shape and Crystal Packing: a Study of C12H12 Isomers, Real and Imaginary , 2000 .
[37] J. Groves,et al. Epoxidation reactions catalyzed by iron porphyrins. Oxygen transfer from iodosylbenzene , 1983 .
[38] E. P. Talsi,et al. Chiral Manganese Aminopyridine Complexes: the Versatile Catalysts of Chemo- and Stereoselective Oxidations with H2 O2. , 2018, Chemical record.
[39] P. Budd,et al. Porphyrin-based nanoporous network polymers. , 2002, Chemical communications.