경희대학교 (Kyunghee University )
식물환경신소재공학과

Recent papers

Thermally drawn rechargeable battery fiber enables pervasive power
Materials Today 2022, 52, 80–89.
Understanding Voltage Hysteresis for High-Energy-Density Li-S Batteries
ACS Applied Energy Materials 2022, 5 (4), 5219–5226.
Deciphering Enhanced Solid-State Kinetics of Li-S Batteries via Te Doping
ACS Applied Energy Materials 2022, 5 (10), 12583–12591.
Aqueous Quaternary Polymer Binder Enabling Long-Life Lithium-Sulfur Batteries by Multifunctional Physicochemical Properties
ACS Applied Materials and Interfaces 2022.
Communication - Sustainable Starfish-Derived N-Doped Porous Carbon for High-Performance Electric Double Layer Capacitors
Journal of the Electrochemical Society 2022, 169 (8).
Lignin-Based Materials for Sustainable Rechargeable Batteries
Polymers 2022, 14 (4).
Surface characteristics of porous carbon derived from genetically designed transgenic hybrid poplar for electric double-layer capacitors
Applied Surface Science 2021, 545.
Ruddlesden Popper 2D perovskites as Li-ion battery electrodes
Materials Advances 2021, 2 (10), 3370–3377.
Fiber-based sensors and energy systems for wearable electronics
Applied Sciences (Switzerland) 2021, 11 (2), 1–28.
In Batteria Electrochemical Polymerization to Form a Protective Conducting Layer on Se/C Cathodes for High-Performance Li–Se Batteries
Advanced Functional Materials 2020, 30 (19).
100 m Long Thermally Drawn Supercapacitor Fibers with Applications to 3D Printing and Textiles
Advanced Materials 2020, 32 (49).
Continuous-Flow Synthesis of Carbon-Coated Silicon/Iron Silicide Secondary Particles for Li-Ion Batteries
ACS Nano 2020, 14 (1), 698–707.
Bicontinuous phase separation of lithium-ion battery electrodes for ultrahigh areal loading
Proceedings of the National Academy of Sciences of 2020, 117 (35), 21155–21161.
In Situ Self-Formed Nanosheet MoS 3 /Reduced Graphene Oxide Material Showing Superior Performance as a Lithium-Ion Battery Cathode
ACS Nano 2019, 13 (2), 1490–1498.
Improving the Stability of an RT-NaS Battery via In Situ Electrochemical Formation of Protective SEI on a Sulfur–Carbon Composite Cathode
Advanced Sustainable Systems 2018, 2 (11).
Selenium-infiltrated mesoporous carbon composite cathode for a high-capacity lithium-chalcogen battery: Effects of carbon structure and dopant on the rate-capability and cyclic stability
Journal of Power Sources 2018.
A stable lithiated silicon-chalcogen battery via synergetic chemical coupling between silicon and selenium
Nature Communications 2017, 8.
Enhancing cycle stability of lithium iron phosphate in aqueous electrolytes by increasing electrolyte molarity
Advanced Energy Materials 2016, 6 (2).
Nanostructured Li 2 Se cathodes for high performance lithium-selenium batteries
Nano Energy 2016, 27, 238–246.
Enhancing the Stability of Sulfur Cathodes in Li-S Cells via in Situ Formation of a Solid Electrolyte Layer
ACS Energy Letters 2016, 1 (2), 373–379.
Graphene-Li 2 S-carbon nanocomposite for lithium-sulfur batteries
ACS Nano 2016, 10 (1), 1333–1340.
Lithium iodide as a promising electrolyte additive for lithium-sulfur batteries: Mechanisms of performance enhancement
Advanced Materials 2015, 27 (1), 101–108.
A Hierarchical Particle-Shell Architecture for Long-Term Cycle Stability of Li 2 S Cathodes
Advanced Materials 2015, 27 (37), 5579–5586.
Micro- and mesoporous carbide-derived carbon-selenium cathodes for high-performance lithium selenium batteries
Advanced Energy Materials 2015, 5 (1).
In situ formation of protective coatings on sulfur cathodes in lithium batteries with lifsi-based organic electrolytes
Advanced Energy Materials 2015, 5 (6).
In Situ TEM Observation of Electrochemical Lithiation of Sulfur Confined within Inner Cylindrical Pores of Carbon Nanotubes
Advanced Energy Materials 2015, 5 (24).
Carbon Nanotube-CoF 2 Multifunctional Cathode for Lithium Ion Batteries: Effect of Electrolyte on Cycle Stability
Small 2015, 11 (38), 5164–5173.
Li-ion battery materials: Present and future
Materials Today 2015, 18 (5), 252–264.
Improved stability of nano-Sn electrode with high-quality nano-SEI formation for lithium ion battery
Nano Energy 2015, 12, 314–321.
Increasing capacitance of zeolite-templated carbons in electric double layer capacitors
Journal of the Electrochemical Society 2015, 162 (5).
Harnessing steric separation of freshly nucleated Li 2 S nanoparticles for bottom-up assembly of high-performance cathodes for lithium-sulfur and lithium-ion batteries
Advanced Energy Materials 2014, 4 (11).
Solution-based processing of graphene-Li 2 S composite cathodes for lithium-ion and lithium-sulfur batteries
Particle and Particle Systems Characterization 2014, 31 (6), 639–644.
Sulfur infiltrated activated carbon cathodes for lithium sulfur cells: The combined effects of pore size distribution and electrolyte molarity
Journal of Power Sources 2014, 248, 752–761.
Kroll-carbons based on silica and alumina templates as high-rate electrode materials in electrochemical double-layer capacitors
Journal of Materials Chemistry A 2014, 2 (14), 5131–5139.
Micro- and mesoporous carbide-derived carbon prepared by a sacrificial template method in high performance lithium sulfur battery cathodes
Journal of Materials Chemistry A 2014, 2 (41), 17649–17654.
Stabilization of selenium cathodes via in situ formation of protective solid electrolyte layer
Journal of Materials Chemistry A 2014, 2 (44), 18898–18905.
Electrodeposition of nanostructured magnesium coatings
Nanomaterials and Nanotechnology 2014, 4 (1).
Sulfur-infiltrated micro- and mesoporous silicon carbide-derived carbon cathode for high-performance lithium sulfur batteries
Advanced Materials 2013, 25 (33), 4573–4579.
Plasma-enhanced atomic layer deposition of ultrathin oxide coatings for stabilized lithium-sulfur batteries
Advanced Energy Materials 2013, 3 (10), 1308–1315.
Comparative study of the solid electrolyte interphase on graphite in full Li-ion battery cells using X-ray photoelectron spectroscopy, secondary ion mass spectrometry, and electron microscopy
Carbon 2013, 52, 388–397.
Erratum: Comparative study of the solid electrolyte interphase on graphite in full Li-ion battery cells using X-ray photoelectron spectroscopy, secondary ion mass spectroscopy, and electron microscopy
Carbon 2013, 56, 397–398.
Enhancing performance of Li-S cells using a Li-Al alloy anode coating
Electrochemistry Communications 2013, 36, 38–41.
High temperature stabilization of lithium-sulfur cells with carbon nanotube current collector
Journal of Power Sources 2013, 226, 256–265.

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