Taek‐Soo Kim
Engineering · Purdue University West Lafayette
Publications
569
Citations
19,054
Est. group size
—
Recurring co-author estimate
Active years
33
Publishing since 1994
Taek-Soo Kim's research focuses on flexible and stretchable electronics, including stretchable displays, organic photovoltaics (solar cells), OLEDs (light-emitting diode displays), and wearable/implantable bioelectronic devices. Much of the work combines materials engineering (like designing elastomers and interfacial adhesion) with mechanical analysis and simulation, including AI-assisted prediction of warpage and packaging reliability in electronic devices. This research could interest students in materials science, mechanical engineering, or electrical engineering who want to work on soft electronics and semiconductor packaging.
Publication output has been fairly steady over the past decade, with a peak in 2017, some decline through 2018-2022, and a resurgence in 2023-2024, averaging about 27 papers per year over the last five years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Hybrid auxetic metamaterial platforms enabling multiscale isotropic expansion for distortion-free stretchable displays
Nature Communications · 2026
- Deep Learning-Enabled Multiscale Strategy for Rapid and Accurate Warpage Prediction of Interposer Routing Interconnects
International Journal of Precision Engineering and Manufacturing-Green Technology · 2026
- Bioinspired interfacial engineering for highly stretchable electronics
Nature Communications · 2025
- Simultaneous integration of poly(dimethylsiloxane) elastomer in polymer donor and dimer acceptor enables strain-induced power enhancement in intrinsically-stretchable organic photovoltaics
Energy & Environmental Science · 2025
- Dual-layered percolative networks of photoactive materials and elastomers for highly-stretchable, efficient organic photovoltaics with strain-induced power enhancement up to 60% strain
Energy & Environmental Science · 2025
- Highly efficient, reliable, and ultraflexible bio-organic light-emitting diode patch
npj Flexible Electronics · 2025
- Skin‐Tailored Adhesive Bio‐Electrode with Tunable Poisson's Ratio for Stable Electrophysiological Communication
Advanced Healthcare Materials · 2025
- Flexible, surface-lighting MicroLED skin patch for multiple human skincare
Biomaterials · 2025
- Dual‐Percolative Planar‐Heterojunction Photoactive System for High‐Performance Stretchable Organic Photovoltaics Enhancing Power Output under Strain
Advanced Functional Materials · 2025
- Bioinspired Omnidirectional Interface Engineered Flexible Island for Highly Stretchable Electronics
Small · 2025
- Highly reliable organic light-emitting diodes with optimized fill factor based on rotational membrane design for stretchable displays
Materials Horizons · 2025
- Hydrogel electronic materials and microfabrication processes for soft electronic applications
Applied Physics Reviews · 2025
- Identifying the weakest interface in BEOL structures
Applied Surface Science · 2025
- Effects of Viscoelastic-Anisotropic Properties of Prepreg on Diagonal Warpage of Multilayer PCB Substrates
IEEE Transactions on Materials for Electron Devices · 2025
- Role of loading mode on crack propagation behavior and adhesion at Cu–SiCN interface
Applied Surface Science · 2025
- ACS Applied Materials & Interfaces×28
- Advanced Materials×14
- Advanced Functional Materials×14
- Advanced Energy Materials×13
- Nature Communications×11
- Hyunki Yeo
Engineering · Purdue University West Lafayette
- Alex Chortos
Engineering · Purdue University West Lafayette
- Andy Berbille
Engineering · Purdue University West Lafayette
- Boyuan Zhang
Engineering · Purdue University West Lafayette
- Jinghua Li
Engineering · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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