Publications (Google scholar) (+ : Equal contribution, * : Correspondence)
47. K.-N. Kim, H. Zhou, D.-Y. Kim, M.-J. Sung, W. J. Jeong, D.-G. Seo, J. Park, S. Lee, Y. Wu, Y. Lee, K. K. Kim, J. Park, Y. Cheng, H.-L. Park, Z. Bao*, and T.-W. Lee*, "Ultralow-voltage electrochemical organic light-emitting transistors with pinned and wide lateral recombination." Nature materials, 2026, 1-9.
46. K. K. Kim, T. J. Zaluska, S. Skov, Y. Lee, H. Park, D. Zhong, M. Khatib, Y. Nishio, Y. Jiang, S. L. Delp and Z. Bao*, "A simplified wearable device powered by a generative EMG network for hand-gesture recognition and gait prediction", Nature Sensors, 2026, 1, 27-38.
45. S. Jung, and Y. Lee*, "Recent Progress in Stretchable Artificial Synapses based on Organic Electrochemical Transistors", Journal of Flexible and Printed Electronics, 2025, 4, 55-72
44. M. Khatib+, E. T. Zhao+, Shiyuan Wei+, J. Park, A. Abramson, E. S. Bishop, A.-L. Thomas, C.-H. Chen, P. Emengo, C. Xu, R. Hamnett, S. E. Root, L. Yuan, M. J. Wurdack, T. Zaluska, Y. Lee, K. Parkatzidis, W. Yu, D .Chakhtoura, K. K. Kim, D. Zhong, Y. Nishio, C .Zhao, C. Wu, Y. Jiang, A. Zhang, J. Li, W. Wang, F. Salimi-Jazi, T. A. Rafeeqi, N. M. Hemed, J. B.-H. Tok, X. Qian, X. Chen, J. A. Kaltschmidt, J. C. Y. Dunn*, and Z. Bao*, "High-density soft bioelectronic fibres for multimodal sensing and stimulation", Nature, 2025, 645, 656-664
43. C. Kim+, D.-G. Seo+, Y. Lee+, and T.-W. Lee*, "Artificial nerve systems for use in bio-interactive prostheses", Nature Reviews Electronic Engineering, 2025
42. J. Ko+, C. Ock+, H. Gim+, K.Hong*, Y.Lee*, and K.C. Kwon*, "Two-dimensional materials for artificial sensory devices: advancing neuromorphic sensing technology", npj 2D Materials and Applications, 2025, 9, 35
41. N. T. P. Vo+, T. U. Nam+, M. W. Jeong, J. S. Kim, K. H. Jung, Y. Lee, G. Ma, X. Gu, J. B.-H. Tok, T. I. Lee*, Z. Bao*, and J. Y. Oh*, "Autonomous self-healing supramolecular polymer transistors for skin electronics", Nature Communications, 2024, 15, 3433
40. J. Y. Oh+*, Y. Lee+, and T.-W. Lee*, "Skin-Mountable Functional Electronic Materials for Bio-Integrated Devices", Advanced Healthcare Materials, 2024, 13, 2303797
39. N. Kim, G.-T. Go, H.-L. Park, Y. Ahn, J. Kim, Y. Lee, D.-G. Seo, W. Lee, Y.-H. Kim*, H. Yang*, and T.-W. Lee*, "Molecular Tailoring to Achieve Long-Term Plasticity in Organic Synaptic Transistors for Neuromorphic Computing", Advanced Intelligent Systems, 2023, 5, 2300016
38. Y. Lee+*, H. Cho+, H. Yoon, H. Kang, H. Yoo, H. Zhou, S. Jeong, G. H. Lee, G. Kim, G.-T. Go, J. Seo, T.-W. Lee, Y. Hong*, and Y. Yun*, "Advancements in electronic materials and devices for stretchable displays", Advanced Materials Technologies, 2023, 8, 2201067
37. H. Kang+, Y. Lee+, G. H. Lee+, J. W. Chung, Y.-N. Kwon, J.-Y. Kim, Y. Kuzumoto, S. Gam, S.-G. Kang, J. Y. Jung, A. Choi, and Y. Yun*, "Strain-Tolerant, High-Detectivity, and Intrinsically Stretchable All-Polymer Photodiodes", Advanced Functional Materials, 2023, 33, 2212219
36. G.-T. Go+, Y. Lee+, D.-G. Seo+, and T.-W. Lee*, "Organic Neuroelectronics: From Neural Interface to Neuroprosthetics", Advanced Materials, 2022, 34, 2201864
35. Y. Lee+, Y. Liu+, D.-G. Seo+, J. Y. Oh, Y. Kim, J. Li, J. Kang, J. Kim, J. Mun, A.M. Foudeh, Z. Bao*, and T.-W. Lee*, "A low-power stretchable neuromorphic nerve with proprioceptive feedback", Nature Biomedical Engineering, 2023, 7, 511-519
(Highlighted in Nature, doi: 10.1038/d41586-022-02196-8, Nature, 2022, 608, 650), JTBC, KBS, 동아사이언스, 한겨레, 이데일리
34. Y. Lee+, J. Y. Oh+, and T.-W. Lee*, "Neuromorphic skin based on emerging artificial synapses", Advanced Materials Technologies, 2022, 7, 2200193
33. G. H. Lee+, H. Kang+, J. W. Chung, Y. Lee, H. Yoo, S. Jeong, H. Cho, J.-Y. Kim, S.-G. Kang, J. Y. Jung, S. G. Hahm, J. Lee, I.-J. Jeong, M. Park, G. Park, I. H. Yun, J. Y. Kim, Y. Hong, Y. Yun*, S.-H. Kim, and B. K. Choi, "Stretchable PPG sensor with light polarization for physical activity-permissible monitoring", Science Advances, 2022, 8, eabm3622
32. Y. Lee+, J. W. Chung+, G. H. Lee, H. Kang, J.-Y. Kim, C. Bae, H. Yoo, S. Jeong, H. Cho, S.-G. Kang, J. Y. Jung, D.-W. Lee, S. Gam, S. G. Hahm, Y. Kuzumoto, S. J. Kim, Z. Bao, Y. Hong, Y. Yun*, and S. Kim, "Standalone real-time health monitoring patch based on a stretchable organic optoelectronic system", Science Advances, 2021, 7, eabg9180
Samsung Newsroom, 삼성 뉴스룸, 동아일보, 동아사이언스, 조선비즈, 연합뉴스, 전자신문, Engadget
31. W. Xu, L. Wang, D. C.M. Yang, A. Hajibabaei, Y. Lee, C. Park, T.‐W. Lee*, and K. S. Kim*, "Supra‐Binary Polarization in a Ferroelectric Nanowire", Advanced Materials, 2021, 33, 2101981
30. Y. Lee+, H.-L. Park+, Y. Kim, and T.-W. Lee*, "Organic electronic synapses with low energy consumption", Joule, 2021, 5, 794-810
29. H. Zhou, J. Park, Y. Lee, J.‐M. Park, J.‐H. Kim, J. S. Kim, H.‐D. Lee, S. H. Jo, X. Cai, L. Li, X. Sheng, H. J. Yun, J.‐W. Park, J.‐Y. Sun, and T.‐W. Lee*, "Water Passivation of Perovskite Nanocrystals Enables Air‐Stable Intrinsically Stretchable Color‐Conversion Layers for Stretchable Displays", Advanced Materials, 2020, 32, 2001989
28. G.-T. Go+, Y. Lee+, D.-G. Seo, M. Pei, W. Lee, H. Yang, and T.-W. Lee*, "Achieving Microstructure-Controlled Synaptic Plasticity and Long-term Retention in Ion-gel Gated Organic Synaptic Transistors", Advanced Intelligent Systems, 2020, 2, 2000012
27. D. W. Kim, S.-Y. Min, Y. Lee, and U. Jeong*, "Transparent Flexible Nanoline Field-Effect Transistor Array with High Integration in a Large Area", ACS Nano, 2020, 14, 907-918
26. H.-L. Park, H. Kim, D. Lim, H. Zhou, Y.-H. Kim, Y. Lee, S. Park*, and T.-W. Lee*, "Retina-Inspired Carbon Nitride-Based Photonic Synapses for Selective Detection of Ultraviolet Light", Advanced Materials, 2020, 32, 1906899
25. D.-G. Seo+, Y. Lee+, G.-T. Go, M. Pei, S. Jung, Y. H. Jeong, W. Lee, H.-L. Park, S.-W. Kim, H. Yang, C. Yang, and T.-W. Lee*, "Versatile neuromorphic electronics by modulating synaptic decay of single organic synaptic transistor: From artificial neural networks to neuro-prosthetics", Nano Energy, 2019, 65, 104035
24. J. Y. Oh+, D. Son+, T. Katsumata+, Y. Lee, Y. Kim, J. Lopez, H.-C. Wu, J. Kang, J. Park, X. Gu, J. Mun, N. G.-J. Wang, Y. Yin, W. Cai, J. B.-H. Tok, Y. Yun*, and Z. Bao*, "Stretchable self-healable semiconducting polymer film for active-matrix strain sensing array", Science Advances, 2019, 5, eaav3097
23. H.-L. Park+, Y. Lee+, N. Kim, D.-G. Seo, G.-T. Go, and T.-W. Lee*, "Flexible neuromorphic electronics for computing, soft robotics, and neuroprosthetics", Advanced Materials, 2019, 32, 1903558
22. S.-H. Jeong, H. Kim, M.-H. Park, Y. Lee, N. Li, H.-K. Seo, T.-H. Han, S. Ahn, J.-M. Heo, K. S. Kim, and T.-W. Lee*, "Ideal conducting polymer anode for perovskite light-emitting diodes by molecular interaction decoupling", Nano Energy, 2019, 60, 324-331
21. S.-I. Kim+, Y. Lee+, M.-H. Park, G.-T. Go, Y.-H. Kim, W. Xu, H.-D. Lee, H. Kim, D.-G. Seo, W. Lee, and T.-W. Lee*, "Dimensionality-dependent plasticity in halide perovskite artificial synapses for neuromorphic computing", Advanced Electronic Materials, 2019, 5, 1900008 (Inside Cover)
20. Y. Lee and T.-W. Lee*, "Organic synapses for neuromorphic electronics: from brain-inspired computing to sensorimotor nervetronics", Accounts of Chemical Research, 2019, 52, 964-974
19. T.-S. Kim+, Y. Lee+, W. Xu+, Y. H. Kim+, M. Kim, S.-Y. Min, T. H. Kim, H. W. Jang*, and T.-W. Lee*, "Direct-printed nanoscale metal-oxide-wire electronics", Nano Energy, 2019, 58, 437-446
18. Y. Lee+, J. Y. Oh+, W. Xu, O. Kim, T. R. Kim, J. Kang, Y. Kim, D. Son, J. B.-H. Tok, M. J. Park, Z. Bao*, and T.-W. Lee*, "Stretchable organic optoelectronic sensorimotor synapse", Science Advances, 2018, 4, eaat7387
(Highlighted in Nature, doi: 10.1038/d41586-018-07582-9, Nature, 2018, 564, 8) Physics World, 조선비즈, 연합뉴스, 서울경제, 동아일보, 동아사이언스,
17. D. Son+, J. Kang+, O. Vardoulis+, Y. Kim, N. Matsuhisa, J. Y. Oh, J. W. F. To, J. Mun, T. Katsumata, Y. Liu, A. F. McGuire, M. Krason, F. Molina-Lopez, J. Ham, U. Kraft, Y. Lee, Y. Yun, J. B.-H. Tok, and Z. Bao*, "An integrated self-healable electronic skin system fabricated via dynamic reconstruction of a nanostructured conducting network", Nature Nanotechnology, 2018, 13, 1057-1065
16. Y. Kim+, A. Chortos+, W. Xu+*, Y. Liu, J. Y. Oh, D. Son, J. Kang, A. M. Foudeh, C. Zhu, Y. Lee, S. Niu, J. Liu, R. Pfattner, Z. Bao*, and T.-W. Lee*, "A bioinspired flexible organic artificial afferent nerve", Science, 2018, 360, 998-1003
15. Y. Lee+, H. Zhou+, and T.-W. Lee*, "One-Dimensional Conjugated Polymer Nanomaterials for Flexible and Stretchable Electronics", Journal of Materials Chemistry C, 2018, 6, 3538-3550
14. Y. Lee+, J. Y. Oh+, T. R. Kim, X. Gu, Y. Kim, G.-J. N. Wang, H.-C. Wu, R. Pfattner, J. W. F. To, T. Katsumata, D. Son, J. Kang, J. R. Matthews, W. Niu, M. He, R. Sinclair, Y. Cui, J. B.-H. Tok, T.-W. Lee*, and Z. Bao*, "Deformable Organic Nanowire Field-Effect Transistors", Advanced Materials, 2018, 30, 1704401
13. J. Kang+, D. Son+, G.‐J. N. Wang, Y. Liu, J. Lopez, Y. Kim, J. Y. Oh, T. Katsumata, J. Mun, Y. Lee, L. Jin, J. B.‐H. Tok, and Z. Bao*, "Tough and Water‐Insensitive Self‐Healing Elastomer for Robust Electronic Skin", Advanced Materials, 2017, 30, 1706846
12. H.-S. Ko+, Y. Lee+, S.-Y. Min, S.-J. Kwon, and T.-W. Lee*, "Large-scale metal nanoelectrode array based on printed nanowire lithography for nanowire complementary inverters", Nanoscale, 2017, 9, 15766-15772
11. S.-Y. Min, Y. Lee, S. H. Kim, C. Park, and T.-W. Lee*, "Room Temperature Processable Wire-Templated Nanoelectrodes for Flexible and Transparent All-Wire Electronics", ACS Nano, 2017, 11, 3681-3689
10. Y. Lee, S.-Y. Min, and T.-W. Lee*, "Large-Scale Highly Aligned Nanowire Printing", Macromolecular Materials and Engineering, 2017, 302, 1600507
9. H.-K. Seo, K. Kim, S.-Y. Min, Y. Lee, C. E. Park, R. Raj, and T.-W. Lee*, "Direct growth of graphene-dielectric bi-layer structure on device substrates from Si-based polymer", 2D Materials, 2017, 4, 024001
8. Y. Lee+, S.-Y. Min+, T.-S. Kim, S.-H. Jeong, J. Y. Won, H. Kim, W. Xu, J. K. Jeong, and T.-W. Lee*, "Versatile metal nanowiring platform for large-scale nano- and opto-electronic devices", Advanced Materials, 2016, 28, 9109-9116 (Back Cover)
7. H. Kim, J. Byun, S.-H. Bae, T. Ahmed, J.-X. Zhu, S.-J. Kwon, Y. Lee, S.-Y. Min, C. Wolf, H.-K. Seo, J.-H. Ahn, and T.-W. Lee*, "On-fabrication solid-state N-doping of graphene by an electron transporting metal oxide layer for efficient inverted organic solar cells", Advanced Energy Materials, 2016, 6, 1600172
6. W. Xu+, Y. Lee+, S.-Y. Min, C. Park, and T.-W. Lee*, "Simple, inexpensive and rapid approach to fabricate cross-shaped memristors using inorganic-nanowire-digital-alignment technique and a one-step reduction process", Advanced Materials, 2016, 28, 527-532 (Inside Cover)
5. T.-H. Han, S.-H. Jeong, Y. Lee, H.-K. Seo, S.-J. Kwon, M.-H. Park, and T.-W. Lee*, "Flexible transparent electrodes for organic light-emitting diodes", Journal of Information Display, 2015, 16, 71-84
4. M.-H. Park, T.-H. Han, Y.-H. Kim, S.-H. Jeong, Y. Lee, H. Cho, and T.-W Lee*, "Flexible Organic Light-emitting diodes for Solid-state lighting", Journal of Photonics for Energy, 2015, 5, 053599
3. S.-Y. Min, T.-S. Kim, Y. Lee, H. Cho, W. Xu, and T.-W. Lee*, "Organic Nanowire Fabrication and Device Application", Small, 2015, 11, 45-62
2. W. Xu, H.-K. Seo, S.-Y. Min, H. Cho, T.-S. Lim, C.-Y. Oh, Y. Lee, and T.-W. Lee*, "Rapid Fabrication of Designable Large-Scale-Aligned Graphene Nanoribbons by Electrohydrodynamic Nanowire Lithography", Advanced Materials, 2014, 26, 3459-3464
1. Y. Lee, T.-S. Kim, S.-Y. Min, W. Xu, S.-H. Jeong, H.-K. Seo, and T.-W. Lee*, "Individually Position-Addressable Metal-Nanofiber Electrodes for Large-Area Electronics", Advanced Materials, 2014, 26, 8010-8016 (Inside Cover)