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Authors whose works are in public domain in at least one jurisdiction

List of works by Seung Woo Lee

All-Soft Supercapacitors Based on Liquid Metal Electrodes with Integrated Functionalized Carbon Nanotubes

scientific article published on 07 May 2020

Biomass-derived carbonaceous positive electrodes for sustainable lithium-ion storage.

scientific article published on 26 January 2016

Carbon nanotube/manganese oxide ultrathin film electrodes for electrochemical capacitors

scientific article published on 01 July 2010

Correction to Charge-Transfer-Modulated Transparent Supercapacitor Using Multidentate Molecular Linker and Conductive Transparent Nanoparticle Assembly

scientific article published on 20 December 2019

Effect of the Side-Chain Length in Perfluorinated Sulfonic and Phosphoric Acid-Based Membranes on Nanophase Segregation and Transport: A Molecular Dynamics Simulation Approach

scientific article published on 17 February 2020

Electrochemical polymerization of pyrene derivatives on functionalized carbon nanotubes for pseudocapacitive electrodes

scientific article published on 6 May 2015

Flexible supercapacitor electrodes based on real metal-like cellulose papers

scientific article published on 14 September 2017

Hierarchical networks of redox-active reduced crumpled graphene oxide and functionalized few-walled carbon nanotubes for rapid electrochemical energy storage

scientific article published on 8 June 2016

High-power hybrid biofuel cells using layer-by-layer assembled glucose oxidase-coated metallic cotton fibers

scientific article published in Nature Communications

High-power lithium batteries from functionalized carbon-nanotube electrodes

scientific article published on 20 June 2010

High-yield electrochemical hydrogen peroxide production from an enhanced two-electron oxygen reduction pathway by mesoporous nitrogen-doped carbon and manganese hybrid electrocatalysts

scientific article published on 12 February 2020

Hydrothermally Oxidized Single-Walled Carbon Nanotube Networks for High Volumetric Electrochemical Energy Storage

scientific article published on 20 May 2016

In Situ Polymerization of Dopamine on Graphene Framework for Charge Storage Applications

scientific article published on 31 July 2018

In Situ Self-Formed Nanosheet MoS3/Reduced Graphene Oxide Material Showing Superior Performance as a Lithium-Ion Battery Cathode

scientific article published on 27 December 2018

Layer-by-Layer Assembly of All Carbon Nanotube Ultrathin Films for Electrochemical Applications

scientific article published on 01 January 2009

Layer-by-layer assembled polyaniline nanofiber/multiwall carbon nanotube thin film electrodes for high-power and high-energy storage applications

scientific article published on 20 October 2011

Oxygen-Vacancy-Introduced BaSnO3- δ Photoanodes with Tunable Band Structures for Efficient Solar-Driven Water Splitting

scientific article published on 27 June 2019

Piezoelectric-driven self-charging supercapacitor power cell

scientific article published on 26 March 2015

Pt-Covered Multiwall Carbon Nanotubes for Oxygen Reduction in Fuel Cell Applications

scientific article published on 19 May 2011

Roles of surface steps on Pt nanoparticles in electro-oxidation of carbon monoxide and methanol

scientific article published on 01 November 2009

Self-Assembled, Redox-Active Graphene Electrodes for High-Performance Energy Storage Devices

scientific article published on 4 December 2014

Surface Composition Tuning of Au–Pt Bimetallic Nanoparticles for Enhanced Carbon Monoxide and Methanol Electro-oxidation

article

Systematic Molecular Design of Ketone Derivatives of Aromatic Molecules for Lithium-Ion Batteries: First-Principles DFT Modeling

scientific article published on 15 February 2017

Thermodynamic and redox properties of graphene oxides for lithium-ion battery applications: a first principles density functional theory modeling approach

scientific article published on 14 July 2016

Ultrathin supercapacitor electrodes with high volumetric capacitance and stability using direct covalent-bonding between pseudocapacitive nanoparticles and conducting materials