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Hyeonbae Kang

Hyeonbae Kang

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Mathematics
Korea
2023

D-Index & Metrics

Mathematics

D-Index
54
Citations
8827
World Ranking
854
National Ranking
4

Research.com Recognitions

  • 2023 - Research.com Mathematics in Korea Leader Award
  • 2022 - Research.com Mathematics in Korea Leader Award

Overview

Hyeonbae Kang is affiliated with Inha University in South Korea and conducts research primarily within the fields of Engineering and Materials Science. Their work spans various subfields, including Electrical and Electronic Engineering, Biomedical Engineering, Surfaces, Coatings and Films, Electronic, Optical and Magnetic Materials, and Water Science and Technology.

The main topics of Kang's research involve advanced materials and technologies with a focus on energy and separation techniques. Specific areas of interest include Advanced Battery Materials and Technologies, Advancements in Battery Materials, Surface Modification and Superhydrophobicity, Membrane Separation Technologies, Advanced Sensor and Energy Harvesting Materials, Membrane-based Ion Separation Techniques, and Advanced Battery Technologies Research.

Kang has contributed to a range of scientific publications, frequently publishing in several notable venues. The most common publication venues include:

  • SSRN Electronic Journal
  • Separation and Purification Technology
  • ACS Applied Energy Materials
  • Applied Surface Science
  • Computer Speech & Language

The researcher has worked closely with several frequent co-authors, including Eun-Ho Sohn, Keun-Hwan Oh, Sang Goo Lee, In Jun Park, and Chung-Yul Yoo, each having collaborated on multiple publications.

Recent papers authored by or involving Kang cover various advanced battery and membrane separation topics. Notable publications include:

  • "Dual-Salt Electrolyte Additive Enables High Moisture Tolerance and Favorable Electric Double Layer for Lithium Metal Battery," 2024, published in Angewandte Chemie International Edition
  • "High-Concentration Additive and Triiodide/Iodide Redox Couple Stabilize Lithium Metal Anode and Rejuvenate the Inactive Lithium in Carbonate-Based Electrolyte," 2022, published in Advanced Functional Materials
  • "Enhanced salt removal performance of flow electrode capacitive deionization with high cell operational potential," 2020, published in Separation and Purification Technology
  • "Superamphiphobic blood-repellent surface modification of porous fluoropolymer membranes for blood oxygenation applications," 2022, published in Journal of Membrane Science
  • "Improved Desalination Performance of Flow- and Fixed-Capacitive Deionization using Redox-Active Quinone," 2020, published in ACS Sustainable Chemistry & Engineering

Best Publications

  • Reconstruction of Small Inhomogeneities from Boundary Measurements

    Habib Ammari;Hyeonbae Kang

  • Polarization and Moment Tensors: With Applications to Inverse Problems and Effective Medium Theory

    Habib Ammari;Hyeonbae Kang

  • Layer Potential Techniques in Spectral Analysis

    Habib Ammari;Hyeonbae Kang;Hyundae Lee

  • Spectral Theory of a Neumann–Poincaré-Type Operator and Analysis of Cloaking Due to Anomalous Localized Resonance

    Habib Ammari;Giulio Ciraolo;Hyeonbae Kang;Hyundae Lee

  • Imaging Schemes for Perfectly Conducting Cracks

    Habib Ammari;Josselin Garnier;Hyeonbae Kang;Won-Kwang Park

  • Complete Asymptotic Expansions of Solutions of the System of Elastostatics in the Presence of an Inclusion of Small Diameter and Detection of an Inclusion

    Habib Ammari;Hyeonbae Kang;Gen Nakamura;Kazumi Tanuma

  • The layer potential technique for the inverse conductivity problem

    Hyeonbae Kang;Jin Keun Seo

  • Stability and Resolution Analysis for a Topological Derivative Based Imaging Functional

    Habib Ammari;Josselin Garnier;Vincent Jugnon;Hyeonbae Kang

  • Gradient estimates for solutions to the conductivity problem

    Habib Ammari;Hyeonbae Kang;Mikyoung Lim

  • The inverse conductivity problem with one measurement: stability and estimation of size

    Hyeonbae Kang;Jin Keun Seo;Dongwoo Sheen

  • Mathematical Modeling in Photoacoustic Imaging of Small Absorbers

    Habib Ammari;Emmanuel Bossy;Vincent Jugnon;Hyeonbae Kang

  • Spectral theory of a Neumann-Poincar'e-type operator and analysis of anomalous localized resonance II

    Habib Ammari;Giulio Ciraolo;Hyeonbae Kang;Hyundae Lee

  • Mathematical Methods in Elasticity Imaging

    Habib Ammari;Elie Bretin;Josselin Garnier;Hyeonbae Kang

  • Spectral Analysis of the Neumann–Poincaré Operator and Characterization of the Stress Concentration in Anti-Plane Elasticity

    Habib Ammari;Giulio Ciraolo;Hyeonbae Kang;Hyundae Lee

  • Mathematical and Computational Methods in Photonics and Phononics

    Habib Ammari;Brian Fitzpatrick;Hyeonbae Kang;Matias Ruiz

  • High-order terms in the asymptotic expansions of the steady-state voltage potentials in the presence of conductivity inhomogeneities of small diameter

    Habib Ammari;Hyeonbae Kang

  • Enhancement of Near Cloaking Using Generalized Polarization Tensors Vanishing Structures. Part I: The Conductivity Problem

    Habib Ammari;Hyeonbae Kang;Hyundae Lee;Mikyoung Lim

  • A method of biological tissues elasticity reconstruction using magnetic resonance elastography measurements

    Habib Ammari;Pierre Garapon;Hyeonbae Kang;Hyundae Lee

  • Solutions to the Pólya–Szegö Conjecture and the Weak Eshelby Conjecture

    Hyeonbae Kang;Graeme W. Milton

  • Analysis of plasmon resonance on smooth domains using spectral properties of the Neumann–Poincaré operator

    Kazunori Ando;Hyeonbae Kang

  • Boundary layer techniques for deriving the effective properties of composite materials

    Habib Ammari;Hyeonbae Kang;Karim Touibi

  • Optimal estimates for the electric field in two dimensions

    Habib Ammari;Hyeonbae Kang;Hyundae Lee;Jungwook Lee

Frequent Co-Authors

Habib Ammari
Habib Ammari ETH Zurich
Josselin Garnier
Josselin Garnier École Polytechnique
Graeme W. Milton
Graeme W. Milton University of Utah
Jin Keun Seo
Jin Keun Seo Yonsei University
Hongyu Liu
Hongyu Liu City University of Hong Kong
Mihai Putinar
Mihai Putinar University of California, Santa Barbara
Gunther Uhlmann
Gunther Uhlmann University of Washington
Jong Chul Ye
Jong Chul Ye Korea Advanced Institute of Science and Technology
Michael Vogelius
Michael Vogelius Rutgers, The State University of New Jersey
Hongjie Dong
Hongjie Dong Brown University

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