Active Learning Accelerated Exploration of Single-Atom Local Environments in Multimetallic Systems for Oxygen Electrocatalysts
npj computational materials (in press)
Jeung Ku Kang et al.
Conformal Li2O2 Growth and Decomposition within 3D Lithiophilic Nanocages of Metal-Organic Frameworks for High-Performance Li-O2 Batteries
Advanced Energy Materials (in press)
Jeung Ku Kang et al.
Trifunctional Graphene-Sandwiched Heterojunction-Embedded Layered Lattice Electrocatalyst for High Performance in Zn-Air Battery-Driven Water Splitting
Low-crystallinity conductive multivalence iron sulfide-embedded S-doped anode and high-surface area O-doped cathode of 3D porous N-rich graphitic carbon frameworks for high-performance sodium-ion hybrid energy storages
3-Dimensional Porous Oxygen-Doped and Nitrogen-Doped Graphitic Carbons Derived from Metal Azolate Frameworks as Cathode and Anode Materials for High-Performance Dual-Carbon Sodium-Ion Hybrid Capacitors
Increasing CO Binding Energy and Defects by Preserving Cu Oxidation State via O2 Plasma-Assisted N Doping on CuO Enables High C2+ Selectivity and Long-Term Stability in Electrochemical CO2 Reduction
Fast Charge Transfer and High Stability via Hybridization of Hygroscopic Cu-BTC Metal–Organic Framework Nanocrystals with a Light-Absorbing Layer for Perovskite Solar Cells
Metal-organic fragments with adhesive excipient units and their utilization to stabilize multimetallic electrocatalysts for high activity and robust durability in oxygen evolution reaction
Mesoporous thorn-covered core-shell cathode and 3D reduced graphene oxide aerogel composite anode with conductive multivalence metal sulfides for high-performance aqueous hybrid capacitors
Metal-Organic Framework Derived Anode and Polyaniline Chain Networked Cathode with Mesoporous and Conductive Pathways for High-Energy Density, Ultrafast Rechargeable, and Long-Life Hybrid Capacitors
Generic Strategy to Synthesize High‐Tap Density Anode and Cathode Structures with Stratified Graphene Pliable Pockets via Monomeric Polymerization and Evaporation, and Their Utilization to Enable Ultrahigh Performance in Hybrid Energy Storages
Autogenous production and stabilization of highly loaded subnanometric particles within multishell hollow metal–organic frameworks and their utilization for high performance in Li–O2 batteries
Synthesis of nitrogen-doped mesoporous structures from metal-organic frameworks and their utilization to enable high performances in hybrid sodium-ion energy storages
Unveiling the role of tetragonal BiVO4 as a mediator for dual phase BiVO4/g-C3N4 composite photocatalysts enabling highly efficient water oxidation via Z-scheme charge transfer
Cobalt-Phosphate Catalysts with Reduced Bivalent Co-Ion States and Doped Nitrogen Atoms Playing as Active Sites for Facile Adsorption, Fast Charge Transfer, and Robust Stability in Photoelectrochemical Water Oxidation
Controlled Synthesis of Nanocrystalline Nb:SrTiO3 Electron Transport Layers for Robust Interfaces and Stable High Photovoltaic Energy Conversion Efficiency in Perovskite Halide Solar Cells
Understanding Adsorption Behavior of Periodic Mesoporous Organosilica Having a Heterogeneous Chemical Environment: Selective Coverage and Interpenetration of Adsorbates inside the Channel Wall
Plasma-Mediated Fabrication of Ultrathin NiAl Nanosheets Having Rich Oxygen Vacancies and Doped Nitrogen Sites and Their Utilization for High Activity and Robust Stability in Photoelectrochemical Water Oxidation
Synthesis of Pseudocapacitive Porous Metal Oxide Nanoclusters Anchored on Graphene for Aqueous Energy Storage Devices with High Energy Density and Long Cycling Stability along with Ultrafast Charging Capability
Capacitors: Synthesis of Pseudocapacitive Polymer Chain Anode and Subnanoscale Metal Oxide Cathode for Aqueous Hybrid Capacitors Enabling High Energy and Power Densities along with Long Cycle Life
Broadband Light Absorption and Efficient Charge Separation Using a Light Scattering Layer with Mixed Cavities for High-Performance Perovskite Photovoltaic Cells with Stability
Quadruple Metals-Based Layered Structure as the Photocatalyst for Conversion of Carbon Dioxide into a Value-Added Carbon Monoxide with High Selectivity and Efficiency
Capacitors: Synthesis of Nitrogen-Rich Nanotubes with Internal Compartments Having Open Mesoporous Channels and Utilization to Hybrid Full-Cell Capacitors Enabling High Energy and Power Densities over Robust Cycle Life
Ultrafast Discharge/Charge Rate and Robust Cycle Life for High-Performance Energy Storage Using Ultrafine Nanocrystals on the Binder-Free Porous Graphene Foam
Advanced Functional Materials
DOI: 10.1002/adfm.201601355, 26, 5139–5148 (2016)
Link
Jeung Ku Kang et al.
Energy States of a Core-Shell Metal Oxide Photocatalyst Enabling Visible Light Absorption along with Efficient Charge Separation and Its Utilization to Solar-to-Fuel Conversion of Carbon Dioxide
Advanced Energy Materials
DOI: 10.1002/aenm.201600583, 6, 1600583 (2016)
Link
Jeung Ku Kang et al.
Carbon Nanobuds Based on Carbon Nanotube Caps: a First-Principles Study
Tailoring Open Metal Sites for Selective Capture of CO2 in Isostructural Metalloporphyrin Porous Organic Networks
Nanoscale
DOI: 10.1039/C5NR05696A. 7, 18923-18927 (2015)
Link
Jeung Ku Kang et al.
Photocatalytic CO2 Reduction Using Visible Light by Metal-Monocatecholato Species in a Metal-Organic Framework
Chemical Communications
DOI: 10.1039/C5CC04506A. 51, 16549-16552 (2015)
Link
Jeung Ku Kang et al.
Nanocrystalline MOFs Embedded in the Crystals of Other MOFs and Their Multifunctional Performance for Molecular Encapsulation and Energy-Carrier Storage
Chemistry of Materials
DOI: 10.1021/acs.chemmater.5b01786. 27. 14, 5088–5093 (2015)
Link
Jeung Ku Kang et al.
In-situ Observation for Growth of Hierarchical Metal-Organic Frameworks and Their Self-Sequestering Mechanism for Gas Storage
Rescaling of Metal Oxide Nanocrystals for Energy Storage Having High Capacitance and Energy Density with Robust Cycle Life
Proceeding of the National Academy of Science of the United States of America (PNAS)
DOI: 10.1073/pnas.1503546112. 112, 26, 7914-7919 (2015)
Link
Jeung Ku Kang et al.
Hierarchical Si Hydrogel Architecture with Conductive Polyaniline Channels on the Sulfonation-Graphene for High-Performance Li Ion Battery Anodes Having Robust Cycle Life
Journal of Materials Chemistry A
DOI: 10.1039/C5TA01825K. 3, 10238-10242 (2015)
Link
Jeung Ku Kang et al.
Synergistic oxidation of NADH on bimetallic CoPt nanoparticles decorated carbon nitride nanotubes
Sensors and Actuators B: Chemical
DOI:10.1016/j.snb.2014.11.013. 208, 204–211 (2015)
Link
Jeung Ku Kang et al.
Photocatalytic CO2 Reduction by a Mixed Metal (Zr/Ti), Mixed Ligand Metal-organic Framework under Visible Light Irradiation
Chemical Communications
DOI: 10.1039/C5CC00686D, 51, 5735-5738 (2015)
Link
Jeung Ku Kang et al
Nickel Oxide Encapsulated Nitrogen-rich Carbon Hollow Spheres with Multiporosity for High-Performance Pseudocapacitors Having Extremely Robust Cycle Life
Energy and Environmental Science (Displayed as the cover)
Nitrogen-doped Open Pore Channeled Graphene Facilitating electrochemical Performance of TiO2 nanoparticles as an Anode Material for Sodium Ion Batteries
Journal of Materials Chemistry A, the front cover article
Inclusion behavior of Cs, Sr, and Ba impurities in LiCl crystal formed by layer-melt crystallization: Combined first-principles calculation and experimental study
Fabrication of heterogeneous exposed core - shell catalyst array using the space specificity of an embodied micelle and their application to a high performance photocatalyst
Chemical Communications
DOI: 10.1039/C2CC36507C, 48, 89, 11002-11004 (2012)
Link
J. K. Kang et al.
Extremely stable cycling of ultra-thin V2O5 nanowire-graphene electrodes for lithium rechargeable battery cathodes
Energy and Environmental Science
DOI: 10.1039/C2EE22004K, 5, 12, 9889-9894 (2012)
Link
J. K. Kang et al.
Intrinsically low-resistance carbon nanotube-metal contacts mediated by topological defect
Site-Specific Transition Metal Occupation in Multicomponent Pyrophosphate for Improved Electrochemical and Thermal Properties in Lithium Battery Cathodes: A Combined Experiment and Theoretical Study
Journal of the American Chemical Society
dx.doi.org/10.1021/ja3042228, 134, 28, 11740-11748
Link
J. K. Kang et al.
Nitrogen-Doped Multiwall Carbon Nanotubes for Lithium Storage with Extremely High Capacity
Nano Letters
dx.doi.org/10.1021/nl3000908, 12, 5, 2283-2288
Link
J. K. Kang et al.
Fermi energy level tuning for high performance dye sensitized solar cell using sp2 selective nitrogen-doped carbon nanotube channels
Physical Chemistry Chemical Physics
DOI: 10.1039/c2cp40279c, 14, 15, 5255-5259 (2012)
Link
J. K. Kang et al.
Silicon@Porous Nitrogen-doped Carbon Spheres Through a Bottom-up Approach Are Highly Robust Lithium-ion Battery Anodes
RSC Advances
DOI: 10.1039/c2ra20170d, 2, 10, 4311-4317 (2012)
Link
J. K. Kang et al.
The role of confined water in ionic liquid electrolytes for dye-sensitized solar cells
Journal of Physical Chemistry Letters
dx.doi.org/10.1021/jz3000036, 3, 4, 556 (2012)
Link
J. K. Kang et al.
Metal-organic frameworks for visible light absorption via anion substitution
Journal of Materials Chemistry
DOI: 10.1039/c2jm16245h, 22, 20, 10144-10147 (2012)
Link
J. K. Kang et al.
Highly porous gallium oxide with a high CO2 affinity for the photocatalytic conversion of carbon dioxide into methane
Journal of Materials Chemistry
DOI: 10.1039/c2jm30337j, 22, 12, 5304-5307 (2012)
Link