Works matching DE "CATALYTIC polymerization"
Results: 132
胺基双酚 Fe<sup>III</sup> 配合物催化环状酸酐和 环氧化物聚合制备聚酯.
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- Journal of China University of Petroleum, 2025, v. 49, n. 1, p. 201, doi. 10.3969/j.issn.1673-5005.2025.01.022
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A Comprehensive Review on Barrelene-Derived α-Diimine Nickel and Palladium Olefin Polymerization Catalysts.
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- Catalysts (2073-4344), 2025, v. 15, n. 2, p. 127, doi. 10.3390/catal15020127
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Cocrystallization of Polyethylene Blends during TREF–GPC Cross‐Fractionation Characterization.
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- Macromolecular Chemistry & Physics, 2022, v. 223, n. 21, p. 1, doi. 10.1002/macp.202200200
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Transesterification in Alcohol‐Initiated ROPs of l‐ and meso‐Lactide Catalyzed by Sn(II) and Sn(IV) Compounds at Low Temperatures.
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- Macromolecular Chemistry & Physics, 2018, v. 219, n. 24, p. N.PAG, doi. 10.1002/macp.201800445
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Impact of the Catalytic System on the Formation of Structural Defects for the Synthesis of Well-Defined Donor-Acceptor Semiconducting Polymers.
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- Macromolecular Chemistry & Physics, 2017, v. 218, n. 23, p. n/a, doi. 10.1002/macp.201700283
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Influence of Temperature on the Regioselectivity of Highly Isospecific C<sub>2</sub>-Symmetric Zirconocenes in Propene Polymerization.
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- Macromolecular Chemistry & Physics, 2016, v. 217, n. 21, p. 2415, doi. 10.1002/macp.201600088
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Catalytic Precision Polymerization: Rare Earth Metal-Mediated Synthesis of Homopolymers, Block Copolymers, and Polymer Brushes.
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- Macromolecular Chemistry & Physics, 2014, v. 215, n. 20, p. 1946, doi. 10.1002/macp.201400271
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Contents: Macromol. Chem. Phys. 20/2014.
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- Macromolecular Chemistry & Physics, 2014, v. 215, n. 20, p. 1931, doi. 10.1002/macp.201470065
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Activation and Deactivation of the Polymerization of Ethylene over rac‐EtInd<sub>2</sub>ZrCl<sub>2</sub> and (nBuCp)<sub>2</sub>ZrCl<sub>2</sub> on an Activating Silica Support.
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- Macromolecular Chemistry & Physics, 2014, v. 215, n. 14, p. 1358, doi. 10.1002/macp.201400023
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Heterogenization of Palladium Trimer and Nanoparticles Through Polymerization Boosted Catalytic Efficiencies in Recyclable Coupling and Reduction Reactions.
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- Chemistry - A European Journal, 2024, v. 30, n. 72, p. 1, doi. 10.1002/chem.202403447
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100 μs Luminescence Lifetime Boosts the Excited State Reactivity of a Ruthenium(II)‐Anthracene Complex in Photon Upconversion and Photocatalytic Polymerizations with Red Light.
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- Chemistry - A European Journal, 2024, v. 30, n. 70, p. 1, doi. 10.1002/chem.202402679
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Bimetallic Manganese Catalysts: A Route to Controlled and Switchable Polymerization of Lactones.
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- Chemistry - A European Journal, 2024, v. 30, n. 2, p. 1, doi. 10.1002/chem.202302884
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Leveraging Electron Push‐Pull Effect for Catalytic Polymerization and Degradation of a Cyclobutane Monomer System.
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- Angewandte Chemie, 2024, v. 136, n. 30, p. 1, doi. 10.1002/ange.202405408
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CO<sub>2</sub>‐Fueled Transient Breathing Nanogels that Couple Nonequilibrium Catalytic Polymerization.
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- Angewandte Chemie, 2023, v. 135, n. 14, p. 1, doi. 10.1002/ange.202217001
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Hypervalent Chalcogenonium⋅⋅⋅π Bonding Catalysis.
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- Angewandte Chemie, 2022, v. 134, n. 35, p. 1, doi. 10.1002/ange.202208009
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Suppression of Chain Transfer at High Temperature in Catalytic Olefin Polymerization.
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- Angewandte Chemie, 2022, v. 134, n. 33, p. 1, doi. 10.1002/ange.202207363
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Catalytic DNA Polymerization Can Be Expedited by Active Product Release**.
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- Angewandte Chemie, 2022, v. 134, n. 24, p. 1, doi. 10.1002/ange.202114581
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Heterotrimetallic Carbon Dioxide Copolymerization and Switchable Catalysts: Sodium is the Key to High Activity and Unusual Selectivity.
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- Angewandte Chemie, 2021, v. 133, n. 24, p. 13484, doi. 10.1002/ange.202101180
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Chain Transfer to Toluene in Styrene Coordination Polymerization.
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- Angewandte Chemie, 2020, v. 132, n. 11, p. 4354, doi. 10.1002/ange.201914603
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Ajayan Vinu.
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- Angewandte Chemie, 2019, v. 131, n. 41, p. 14552, doi. 10.1002/ange.201903724
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Core/Shell and Hollow Ultra High Molecular Weight Polyethylene Nanofibers and Nanoporous Polyethylene Prepared by Mesoscopic Shape Replication Catalysis.
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- Advanced Functional Materials, 2014, v. 24, n. 19, p. 2860, doi. 10.1002/adfm.201303465
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Synthesis of CuBiS and AgBiS crystallites with controlled morphology using hypocrellin template and their catalytic role in the polymerization of alkylsilane.
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- Journal of Materials Science, 2012, v. 47, n. 9, p. 4159, doi. 10.1007/s10853-012-6270-0
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ASYMMETRIC MONO(IMINE)PYRROLE NICKEL PMMA CATALYSTS: SYNTHESIS, CRYSTAL STRUCTURE, AND DFT CALCULATION.
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- Journal of Structural Chemistry, 2021, v. 62, n. 7, p. 1094, doi. 10.1134/S0022476621070143
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Horseradish Peroksidaz Nano Biyokatalizörü İle Hidrokinon’un Polimerleştirilmesi.
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- Journal of the Institute of Science & Technology / Iğdır Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 2021, v. 11, n. 1, p. 384, doi. 10.21597/jist.743862
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Modification of the Acyl Chloride Quench-Labeling Method for Counting Active Sites in Catalytic Olefin Polymerization.
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- Catalysts (2073-4344), 2021, v. 11, n. 6, p. 683, doi. 10.3390/catal11060683
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Recent Advances in Rare Earth Complexes Containing N-Heterocyclic Carbenes: Synthesis, Reactivity, and Applications in Polymerization.
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- Catalysts (2073-4344), 2020, v. 10, n. 1, p. 71, doi. 10.3390/catal10010071
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Facile preparation of a novel nickel-containing metallopolymer via RAFT polymerization.
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- Designed Monomers & Polymers, 2017, v. 20, n. 1, p. 300, doi. 10.1080/15685551.2016.1257378
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Titanium amidate complexes as active catalysts for the synthesis of high molecular weight polyethylene.
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- Canadian Journal of Chemistry, 2015, v. 93, n. 7, p. 775, doi. 10.1139/cjc-2015-0081
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DNA polymerase mu (Pol μ), homologous to TdT, could act as a DNA mutator in eukaryotic cells.
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- EMBO Journal, 2000, v. 19, n. 7, p. 1731, doi. 10.1093/emboj/19.7.1731
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Polymerization compounding of hemp fibers to improve the mechanical properties of linear medium density polyethylene composites.
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- Polymer Composites, 2018, v. 39, n. 8, p. 2860, doi. 10.1002/pc.24279
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A Versatile Reversible, Degenerative Chain Transfer Mechanism for the Catalytic Living Ring‐Opening Metathesis Polymerization.
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- Angewandte Chemie, 2024, v. 136, n. 40, p. 1, doi. 10.1002/ange.202409781
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Synthesis of copolymers of ethylene and (meth)acrylates or styrene by an original dual radical/catalytic mechanism.
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- Pure & Applied Chemistry, 2012, v. 84, n. 10, p. 2113, doi. 10.1351/PAC-CON-11-10-05
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N,N′,X-bidentate versus N,N′,X-tridentate N-substituted 2-iminomethylpyridine- and 2-iminomethylquinoline-coordinated palladium(II) complexes.
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- Journal of Coordination Chemistry, 2014, v. 67, n. 13, p. 2312, doi. 10.1080/00958972.2014.947971
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Piezoelectric Zinc Oxides with High Polar Facets Ratios for Mechanically Controlled RAFT Polymerization<sup>†</sup>.
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- Chinese Journal of Chemistry, 2023, v. 41, n. 20, p. 2691, doi. 10.1002/cjoc.202300273
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Positional heterogenization effect in salicylaldimine nickel catalyzed ethylene polymerization.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 28, p. 1, doi. 10.1002/app.55643
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Effects of ionic liquids as catalysts on liquid crystal aromatic polyester based on thin‐film polymerization technique.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 9, p. 1, doi. 10.1002/app.55012
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In Situ polymerization of propylene with carbon nanoparticles. Effect of catalytic system and graphene type.
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- Polymer Engineering & Science, 2018, v. 58, n. 9, p. 1461, doi. 10.1002/pen.24644
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Cationic Zirconocene-Mediated Catalytic H-Shuttling Polymerization of Polar Vinyl Monomers: Scopes of Catalyst, Chain-Transfer Agent, and Monomer.
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- Macromolecular Symposia, 2015, v. 349, n. 1, p. 104, doi. 10.1002/masy.201400018
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Q&A: A sustainable chemist.
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- Nature, 2013, v. 502, n. 7471, p. S59, doi. 10.1038/502S59a
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In-Situ Polymerization for Catalytic Graphitization of Boronated PAN Using Aluminum and Zirconium Containing Co-Catalysts.
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- Inorganics, 2025, v. 13, n. 1, p. 16, doi. 10.3390/inorganics13010016
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Late Transition Metal Olefin Polymerization Catalysts Derived from 8-Arylnaphthylamines.
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- Inorganics, 2024, v. 12, n. 11, p. 277, doi. 10.3390/inorganics12110277
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Advancing catalytic fast pyrolysis through integrated multiscale modeling and experimentation: Challenges, progress, and perspectives.
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- WIREs: Energy & Environment, 2018, v. 7, n. 4, p. 1, doi. 10.1002/wene.297
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Preparation of Poly(Butadiene–Styrene–Vinyl Pyridine)/Poly(Acrylonitrile–Butadiene) Core–Shell Nanoparticles by Intermittent Seeded Emulsion Polymerization and Their Catalytic Latex Hydrogenation.
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- Catalysts (2073-4344), 2024, v. 14, n. 4, p. 277, doi. 10.3390/catal14040277
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The Role of Undecenoic Acid on the Preparation of Decorated MCM-41/Polyethylene Hybrids by In Situ Polymerization: Catalytic Aspects and Properties of the Resultant Materials.
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- Catalysts (2073-4344), 2023, v. 13, n. 8, p. 1182, doi. 10.3390/catal13081182
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Hydrodeoxygenation of Bio-Oil over an Enhanced Interfacial Catalysis of Microemulsions Stabilized by Amphiphilic Solid Particles.
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- Catalysts (2073-4344), 2023, v. 13, n. 3, p. 573, doi. 10.3390/catal13030573
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Ring-Opening Polymerization of rac -Lactide Catalyzed by Octahedral Nickel Carboxylate Complexes.
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- Catalysts (2073-4344), 2023, v. 13, n. 2, p. 304, doi. 10.3390/catal13020304
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Homogeneous Group IVB Catalysts of New Generations for Synthesis of Ethylene-Propylene-Diene Rubbers: A Mini-Review.
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- Catalysts (2073-4344), 2022, v. 12, n. 7, p. N.PAG, doi. 10.3390/catal12070704
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Study of electronic effect in bifunctional catalysts for the copolymerization of CO<sub>2</sub> and PO/CHO.
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- Journal of the Chinese Chemical Society, 2020, v. 67, n. 10, p. 1818, doi. 10.1002/jccs.202000103
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Facile synthesis of zwitterionic organoaluminum complexes containing formally dianionic homoscorpionate ligands.
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- Journal of the Chinese Chemical Society, 2019, v. 66, n. 9, p. 1078, doi. 10.1002/jccs.201900159
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Water and Carbon Dioxide: A Unique Solvent for the Catalytic Polymerization of Ethylene in Miniemulsion.
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- Chemistry - An Asian Journal, 2017, v. 12, n. 16, p. 2057, doi. 10.1002/asia.201700669
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