Works by Wai-Yeung Wong
Results: 240
Metallopolymers with Ferrocenyl and TEMPO Radical Units and Thermoelectric Properties of their Composites with Single‐Wall Carbon Nanotubes.
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- Macromolecular Chemistry & Physics, 2023, v. 224, n. 3, p. 1, doi. 10.1002/macp.202200419
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- Article
Emerging Organic Thermoelectric Applications from Conducting Metallopolymers.
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- Macromolecular Chemistry & Physics, 2020, v. 221, n. 12, p. 1, doi. 10.1002/macp.202000115
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Efficient Polymer Solar Cells Based on New Random Copolymers with Porphyrin‐Incorporated Side Chains.
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- Macromolecular Chemistry & Physics, 2020, v. 221, n. 1, p. N.PAG, doi. 10.1002/macp.201900446
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- Article
Optical and Electroluminescent Studies of White-Light-Emitting Copolymers Based on Poly(9,9-dioctylfluorene) and Fluorenone Derivatives.
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- Macromolecular Chemistry & Physics, 2014, v. 215, n. 11, p. 1060, doi. 10.1002/macp.201400070
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- Article
Efficient Red Organic Light Emitting Diodes of Nona Coordinate Europium Tris(β‐Diketonato) Complexes Bearing 4′‐Phenyl‐2,2′:6′,2′′‐Terpyridine.
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- Chemistry - A European Journal, 2023, v. 29, n. 37, p. 1, doi. 10.1002/chem.202300376
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- Article
Photoactivated Circularly Polarized Luminescent Organic Radicals in Doped Amorphous Polymer.
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- Angewandte Chemie, 2024, v. 136, n. 22, p. 1, doi. 10.1002/ange.202403660
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- Article
Integrating Asymmetric O−B−N Unit in Multi‐Resonance Thermally Activated Delayed Fluorescence Emitters towards High‐Performance Deep‐Blue Organic Light‐Emitting Diodes.
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- Angewandte Chemie, 2023, v. 135, n. 18, p. 1, doi. 10.1002/ange.202218947
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Constructing 2D Sandwich‐like MOF/MXene Heterostructures for Durable and Fast Aqueous Zinc‐Ion Batteries.
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- Angewandte Chemie, 2023, v. 135, n. 8, p. 1, doi. 10.1002/ange.202218343
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Near‐Infrared‐Excited Multicolor Afterglow in Carbon Dots‐Based Room‐Temperature Afterglow Materials.
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- Angewandte Chemie, 2021, v. 133, n. 41, p. 22427, doi. 10.1002/ange.202108696
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- Article
Metallated Graphynes as a New Class of Photofunctional 2D Organometallic Nanosheets.
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- Angewandte Chemie, 2021, v. 133, n. 20, p. 11427, doi. 10.1002/ange.202014835
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Nickel‐ and Palladium‐Catalyzed Cross‐Coupling Reactions of Organostibines with Organoboronic Acids.
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- Angewandte Chemie, 2021, v. 133, n. 6, p. 3141, doi. 10.1002/ange.202011491
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- Article
Nanoimprint Lithography‐Directed Self‐Assembly of Bimetallic Iron–M (M=Palladium, Platinum) Complexes for Magnetic Patterning.
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- Angewandte Chemie, 2020, v. 132, n. 28, p. 11618, doi. 10.1002/ange.202002685
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Solvent‐Induced Cluster‐to‐Cluster Transformation of Homoleptic Gold(I) Thiolates between Catenane and Ring‐in‐Ring Structures.
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- Angewandte Chemie, 2019, v. 131, n. 45, p. 16443, doi. 10.1002/ange.201909980
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Excitation Wavelength Dependent Fluorescence of an ESIPT Triazole Derivative for Amine Sensing and Anti‐Counterfeiting Applications.
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- Angewandte Chemie, 2019, v. 131, n. 26, p. 8865, doi. 10.1002/ange.201902890
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Facile Generation of L1<sub>0</sub>-FePt Nanodot Arrays from a Nanopatterned Metallopolymer Blend of Iron and Platinum Homopolymers.
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- Advanced Functional Materials, 2014, v. 24, n. 6, p. 857, doi. 10.1002/adfm.201301143
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- Article
White Organic Light-Emitting Diodes with Evenly Separated Red, Green, and Blue Colors for Efficiency/Color-Rendition Trade-Off Optimization.
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- Advanced Functional Materials, 2011, v. 21, n. 19, p. 3785, doi. 10.1002/adfm.201100895
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Optical Power Limiters: Symmetric Versus Unsymmetric Platinum(II) Bis(aryleneethynylene)s with Distinct Electronic Structures for Optical Power Limiting/Optical Transparency Trade-off Optimization (Adv. Mater. 8/2009).
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- Advanced Functional Materials, 2009, v. 19, n. 4, p. n/a, doi. 10.1002/adfm.200800856
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Symmetric Versus Unsymmetric Platinum(II) Bis(aryleneethynylene)s with Distinct Electronic Structures for Optical Power Limiting/Optical Transparency Trade-off Optimization.
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- Advanced Functional Materials, 2009, v. 19, n. 4, p. 531, doi. 10.1002/adfm.200800856
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- Article
Effect of Oligothienyl Chain Length on Tuning the Solar Cell Performance in Fluorene-Based Polyplatinynes.
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- Advanced Functional Materials, 2008, v. 18, n. 18, p. 2824, doi. 10.1002/adfm.200800439
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- Article
A Multifunctional Iridium-Carbazolyl Orange Phosphor for High-Performance Two-Element WOLED Exploiting Exciton-Managed Fluorescence/Phosphorescence.
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- Advanced Functional Materials, 2008, v. 18, n. 6, p. 928, doi. 10.1002/adfm.200701115
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Manipulating Charge-Transfer Character with Electron-Withdrawing Main-Group Moieties for the Color Tuning of Iridium Electrophosphors.
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- Advanced Functional Materials, 2008, v. 18, n. 3, p. 499, doi. 10.1002/adfm.200700719
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- Article
A Pure Blue Phosphorescent Organic Light‐Emitting Diode with an External Quantum Efficiency of Over 30% by Using a Tandem Device Architecture.
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- Advanced Materials Interfaces, 2022, v. 9, n. 28, p. 1, doi. 10.1002/admi.202200932
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- Article
Enhancing the Light Output‐Coupling of Inverted Top‐Emitting Organic Light‐Emitting Diodes by Using the Localized Surface Plasmon Resonance of Ag Nanoparticles.
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- Advanced Materials Interfaces, 2022, v. 9, n. 15, p. 1, doi. 10.1002/admi.202200244
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- Article
An Efficient Hole Transporting Polymer for Quantum Dot Light‐Emitting Diodes.
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- Advanced Materials Interfaces, 2021, v. 8, n. 15, p. 1, doi. 10.1002/admi.202100731
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- Article
MOLECULAR DESIGN, SYNTHESIS AND STRUCTURE-PROPERTY RELATIONSHIP OF OLIGOTHIOPHENE-DERIVED METALLAYNES.
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- Comments on Inorganic Chemistry, 2005, v. 26, n. 1-2, p. 39, doi. 10.1080/02603590590920514
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SYNTHESIS, CHARACTERIZATION AND PHOTOLUMINESCENT PROPERTIES OF NEW PLATINUM-CONTAINING POLY(FLUORENYLENEETHYNYLENE) ANCHORED WITH CARBAZOLE PENDANTS.
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- Chinese Journal of Polymer Science (World Scientific Publishing Company), 2009, v. 27, n. 4, p. 455, doi. 10.1142/S0256767909004126
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Platinum-Based Poly(Aryleneethynylene) Polymers Containing Thiazolothiazole Group with High Hole Mobilities for Field-Effect Transistor Applications.
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- Macromolecular Rapid Communications, 2012, v. 33, n. 6/7, p. 603, doi. 10.1002/marc.201200018
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Tuning the Donor-Acceptor Strength of Low-Bandgap Platinum-Acetylide Polymers for Near-Infrared Photovoltaic Applications.
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- Macromolecular Rapid Communications, 2011, v. 32, n. 18, p. 1472, doi. 10.1002/marc.201100247
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Very-Low-Bandgap Metallopolyynes of Platinum with a Cyclopentadithiophenone Ring for Organic Solar Cells Absorbing Down to the Near-Infrared Spectral Region.
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- Macromolecular Rapid Communications, 2010, v. 31, n. 9/10, p. 861, doi. 10.1002/marc.200900885
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Macromol. Rapid Commun. 8/2010.
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- Macromolecular Rapid Communications, 2010, v. 31, n. 8, p. n/a, doi. 10.1002/marc.201090021
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Recent Progress on the Photonic Properties of Conjugated Organometallic Polymers Built Upon the trans-Bis( para-ethynylbenzene)bis(phosphine)platinum( II) Chromophore and Related Derivatives.
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- Macromolecular Rapid Communications, 2010, v. 31, n. 8, p. 671, doi. 10.1002/marc.200900690
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Cover Picture: Macromol. Rapid Commun. 5/2005.
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- Macromolecular Rapid Communications, 2005, v. 26, n. 5, p. 337, doi. 10.1002/marc.200590008
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Low-Band Gap Polyplatinaynes with Electron‐Accepting Silole Units.
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- Macromolecular Rapid Communications, 2005, v. 26, n. 5, p. 376, doi. 10.1002/marc.200400588
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- Article
Synthesis, Redox and Optical Properties of Low-Bandgap Platinum(II) Polyynes with 9-Dicyanomethylene-Substituted Fluorene Acceptors.
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- Macromolecular Rapid Communications, 2001, v. 22, n. 6, p. 461, doi. 10.1002/1521-3927(20010301)22:6<461::AID-MARC461>3.0.CO;2-F
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Synthesis, optical and photoconducting properties of platinum poly-yne polymers functionalized with electron-donating and electron-withdrawing bithiazole units.
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- Macromolecular Rapid Communications, 2000, v. 21, n. 8, p. 453, doi. 10.1002/(SICI)1521-3927(20000501)21:8<453::AID-MARC453>3.0.CO;2-7
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A Robust Yellow-Emitting Metallophosphor with Electron-Injection/-Transporting Traits for Highly Efficient White Organic Light-Emitting Diodes.
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- ChemPhysChem, 2011, v. 12, n. 15, p. 2836, doi. 10.1002/cphc.201100259
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Efficient Polymer White-Light-Emitting Devices for Solid-State Lighting.
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- Advanced Materials, 2009, v. 21, n. 41, p. 4181, doi. 10.1002/adma.200900638
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The Puzzling Issue of 'Vehicle-Treated Control' when Using Ethanol as Drug Carrier for MCF-7 Cells.
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- Phytotherapy Research, 2014, v. 28, n. 11, p. 1735, doi. 10.1002/ptr.5153
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Sensitization of Hep3B hepatoma Cells to Cisplatin and Doxorubicin by Corilagin.
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- Phytotherapy Research, 2014, v. 28, n. 5, p. 781, doi. 10.1002/ptr.5049
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Synthesis, characterization, and luminescent properties of three-coordinate copper(I) halide complexes containing a carbazolyl monodentate phosphine ligand.
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- Journal of Coordination Chemistry, 2018, v. 71, n. 24, p. 4072, doi. 10.1080/00958972.2018.1531128
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Synthesis, characterization and luminescent properties of copper(I) halide complexes containing biphenyl bidentate phosphine ligand.
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- Journal of Coordination Chemistry, 2017, v. 70, n. 23, p. 3907, doi. 10.1080/00958972.2017.1415432
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Synthesis, characterization and luminescent properties of three-coordinate copper(I) halide complexes containing diphenylamino monodentate phosphine ligand.
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- Journal of Coordination Chemistry, 2017, v. 70, n. 16, p. 2916, doi. 10.1080/00958972.2017.1364373
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Synthesis, characterization and luminescent properties of three-coordinate copper(I) halide complexes containing 2-(diphenylphosphino)biphenyl.
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- Journal of Coordination Chemistry, 2016, v. 69, n. 24, p. 3692, doi. 10.1080/00958972.2016.1239255
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C<sub>1</sub>‐Symmetric [Ir(C^N<sup>1</sup>)(C^N<sup>2</sup>)(O^O)]‐Tris‐Heteroleptic Iridium(III)‐Complexes with the Preferentially Horizontal Orientation for High‐Performance Near‐Infrared Organic Light‐Emitting Diodes
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- Advanced Optical Materials, 2021, v. 9, n. 15, p. 1, doi. 10.1002/adom.202100117
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Phosphorescent Manganese(II) Complexes and Their Emerging Applications.
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- Advanced Optical Materials, 2020, v. 8, n. 20, p. 1, doi. 10.1002/adom.202000985
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Strategically Formulating Aggregation‐Induced Emission‐Active Phosphorescent Emitters by Restricting the Coordination Skeletal Deformation of Pt(II) Complexes Containing Two Independent Monodentate Ligands.
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- Advanced Optical Materials, 2020, v. 8, n. 13, p. 1, doi. 10.1002/adom.202000079
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Smart Design on the Cyclometalated Ligands of Iridium(III) Complexes for Facile Tuning of Phosphorescence Color Spanning from Deep‐Blue to Near‐Infrared.
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- Advanced Optical Materials, 2018, v. 6, n. 23, p. N.PAG, doi. 10.1002/adom.201800824
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Near‐Infrared Emitting Materials: Near‐Infrared Emitting Materials via Harvesting Triplet Excitons: Molecular Design, Properties, and Application in Organic Light Emitting Diodes (Advanced Optical Materials 18/2018).
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- Advanced Optical Materials, 2018, v. 6, n. 18, p. 1, doi. 10.1002/adom.201870070
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Near‐Infrared Emitting Materials via Harvesting Triplet Excitons: Molecular Design, Properties, and Application in Organic Light Emitting Diodes.
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- Advanced Optical Materials, 2018, v. 6, n. 18, p. 1, doi. 10.1002/adom.201800466
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Sensitization of Candida albicans to terbinafine by berberine and berberrubine.
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- Biomedical Reports, 2016, v. 4, n. 4, p. 449, doi. 10.3892/br.2016.608
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