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The Intelligent Secondary Battery Strategic Research Group

Research Overview

The Intelligent Secondary Battery Strategic Research Group has been designated as the lead organization for the Environment-Adaptive Smart Secondary Battery Strategic Research Group, one of the 10 Global TOP Strategic Research Group projects for 2025.

  • It pursues the development of composite electrode and electrolyte materials for extreme environments and elucidates the energy storage mechanisms of topological quantum materials, securing full-cycle smart energy storage technologies from basic research to applications.
  • Furthermore, it leads the development of foundational technologies for analyzing core materials and ensuring reliability of secondary batteries adapted to multiple environments (high temperature, low temperature, radiation), based on multidisciplinary convergence and materials-centered analytical science.

Research Groups

Research Content

  • Development of Multi-Environment Adaptive Smart Materials Technology : Development of composite electrodes and electrolytes based on topological insulators, phase-change materials, and self-healing materials, including mass synthesis and electrochemical property analysis
  • Performance Analysis of Electrodes and Electrolytes Based on Topological Quantum Materials : Identification and analysis of material properties that maintain performance under extreme conditions (100℃, -80℃, 100Gy)
  • Multi-Environment Real-Time Diagnostics and Standardization : Real-time measurement using XRD, XPS, and Raman under operando environments, and development of standard reference materials
  • International Collaborative Research : Conducting joint analytical studies in collaboration with Max-IV, KIT, and Forschungszentrum Jülich
  • Integration of AI-Based Advanced Analytical Technology into Electron Microscopy Systems for High-Resolution Microstructural Analysis and Quantitative Data Interpretation : Development of automated analytical technology for advanced materials such as secondary batteries and semiconductors through AI analysis, in-situ TEM, and 3D reconstruction

Research Infrastructure

Personnel

Holds a large number of expert researchers in battery materials and property analysis, electrochemistry, and nanostructure interpretation (Strategic Materials Research Group, Intelligent EM Research Group).

Available Analytical Equipment

보유 분석장비 - 구분,장비 내용으로 구분되어 있습니다.
Category Equipment Details
in-situ/operando XRD, XPS, Raman analyzers operable under high and cryogenic temperatures
Topological quantum materials Single-crystal XRD, TEM, EELS, and electron microscope-based crystal and band structure analysis
Thermal and magnetic properties Electrical and magnetic property analysis support using MPMS and PPMS, and development of thermal property analysis methods
Electron microscopy equipment HVEM, Mono Cs TEM, Cs TEM, Double Cs TEM, FIB, Cryo FIB, environmental isolation chamber, in-situ TEM/SEM, and high-resolution EELS system
Core Technologies in Electron Microscopy
  • Sample pretreatment and damage-minimization analysis techniques in cryogenic environments (e.g., Cryo FIB-TEM integrated analysis)
  • Energy research based on atmospheric isolation experiments (Glove Box + Anti-Air Holder)
  • Multidimensional image acquisition and condition optimization technologies based on 4D STEM
  • Ultra-high-resolution mono-EELS with noise reduction and quantitative analysis
  • AI-based segmentation, 3D reconstruction, and real-time automated interpretation workflow development

Utilization Capabilities

  • Nanostructure analysis of materials for extreme environment adaptation
  • Identification of degradation causes of materials within battery cells
  • Establishment of an integrated platform connecting material development, performance evaluation, and standardization

Collaboration Infrastructure

Operation of Inter-bridge Lab., Open Campus, and Fast Free Pass system

Technology Development and Objectives of the Strategic Research Group
Technology Development and Objectives of the Strategic Research Group
Organic Collaboration System of the Strategic Research Group Based on Inter-bridge Lab
Organic Collaboration System of the Strategic Research Group Based on Inter-bridge Lab

Representative Research Achievements

  • 2021 National R&D Top 100: “All-Solid-State Battery That Works Even When Crumpled or Cut”
  • 2020 Excellent Research Achievement of Government-Funded Institutes: “All-Solid-State Battery That Works Even When Crumpled or Cut”
  • 2007 National R&D Top 100: “Hydrogen Energy Storage Material Using Inorganic Nanomaterials”
대표 연구성과 - 구분,내용으로 구분되어 있습니다.
Category Description
Publications “Battery Thermal Runaway Suppression” – Development of New Materials for Lithium Metal Secondary Batteries

Compos. Pt. B-Eng. (2025), 292, 112109 (IF=12.7, Top 2% in JCR)

Publications Electrochemical Activation of VxS8/rGO Electrodes and Development of Aqueous Zinc-Ion Batteries

Adv. Compos. Hybrid Mater. (2025), 8:186 (IF=23.2, Top 5% in JCR)

Patent Denoising System for STEM Atomic-Resolution Images Using an Artificial Intelligence Model

Application No. 10-2024-0187396, Filing Date: 2024.12.17, Republic of Korea

Patent Method for Training a Neural Network to Predict Aberration Values of an Electron Microscope and Device for Predicting Aberration Values of an Electron Microscope

Registration No. 10-2803933, Registration Date: 2025.04.29, Republic of Korea

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