1. Spatially Controlled Doping via High Diffusion Dynamics in Perovskite Nanocrystals for Efficient and Stable CO₂ Reduction Photocatalysis; H. S. Oh et al., ACS Applied Materials and Interfaces, 2025 accepted
2. Systematic Approach to Study of Optical Stability According to the Crystal Structure of Perovskite Quantum Dot, H. Min; W-G Jung; J. Yang; H. S. Oh; B. J. Yoo; W-J Moon; H. Kim; H. Lee, Journal of Physical Chemistry C, 2023, 127(46), 22713
3. Smart Textile Lighting/Display System with Multifunctional Fibre Devices for Large Scale Smart Home and IoT Applications, H. W. Choi et al., Nature Communications 2022, 13, 814.
4. Design of Chemically Stable Organic Perovskite Quantum Dots for Micropatterned Light-Emitting Diodes through Kinetic Control of Cross-linkable Ligand System, H. Lee; J. W. Jeong; M. G. So; G. Y. Jung; C-L Lee, Advanced Materials, 2021, 33, 2007855.
5. Highly Efficient Thin-Film Transistor via Cross-Linking of 1T Edge Functional 2H Molybdenum Disulfides, H. Lee; S. Bak; S-J An; J. H. Kim; E. Yun; M. Kim; S. Seo; Y. Lee; M. Jeong; H. Lee, ACS nano, 2017, 11, 12832–12839.
6. Flexible and Stretchable Optoelectronic Devices using Silver Nanowire and Graphene, H. Lee; M. Kim; I. Kim; H. Lee, Advanced Materials, 2016 28(22), 4541-4548.
7. High Mechanical and Tribological Stability of an Elastic Ultrathin Overcoating Layer for Flexible Silver Nanowire Films, H. Lee; G. Han; M. Kim; H. Ahn; H. Lee, Advanced Materials, 2015 27(13), 2252-9.
2025
1. Strain-free sandwich-structured perovskite nanocrystals for improved water stability and enhanced catalytic activity in hydrogen evolution reaction, In preparation
2. Doping-mediated synthesis of single-crystal-like primary particles to enhance the stability of Ni-rich NCM for LIB, In preparation
3. Engineering 2D Ir–Co–Mn Oxides via W-Driven Multi-Doping: Stabilized Octahedral Co²⁺ for Durable, High-Performance Robust Acidic OER, submitted
4. G. H Park‡, J. Yang‡, T. T. T. Nga, W-G Jung, H. S. Oh, M. Kim, Y. Han, H. Ko, W-J Moon, H. Lee*, V. Q Bui‡, C-L. Dong*, H. Lee* “Development of Amorphous Ternary Transition Metal Dichalcogenide Nanosheets as a Cost-effective Catalyst for Hydrogen Evolution Reaction”, submitted.
3. W. T. Hong et al., “Perovskite Quantum Dot-Incorporated Heterostructural Metal Oxide Photoanode for Boosting Solar Water Splitting” submitted.
4. H. S. Oh, B. J. Yoo, G. Cho, J. Yang, H. Kim, M. Kim, S. Park, B. Chae, W-G. Jung, W-J. Moon, Y. Han, J. B. Son, H. S. Kim,* J. Y. Lee,* H.Lee*, “Spatially Controlled Doping via High Diffusion Dynamics in Perovskite Nanocrystals for Efficient and Stable CO₂ Reduction Photocatalysis”, ACS Applied Materials and Interfaces accepted
5. M. Kim et al., "Design of a simple solution-processed universal shell for synthesizing reverse type-I core–shell structures toward high-efficiency water-splitting photocathodes", RSC Advances, 2025,15, 27016-27025
6. H. Kim, Y. Jeong, W-G Jung, M. Kim, J. Yang, M. Kim, Y. Han, H. Ko, S. W. Hwang, W-J Moon, H. Lee, “Designing multiple charge carrier separation pathways in core-type near infrared colloidal nanocrystal for broadband photodetector”, RSC Advances, 2025, 15, 6531.
7. S. W. Hwang et al., “Strong enhancement of light emission in core-shell InGaN/GaN multi-quantum-well nanowire light-emitting diodes by incorporating graphene quantum dots” ACS Applied Materials and Interfaces, 2025, 17, 6597−6603.
2024 이전
1. G. Hwan Park‡, M. Kim‡, H. Kim, H. Lee*, H. Lee*. “Enlarged interlayer channels of graphene oxide frameworks for activating large-size chemical warfare agents detection.” ACS Materials Letters, 2024, 6, 260–266.
2. H. Min‡, W.-G. Jung‡, J. Yang‡, H. Oh, B. J. Yoo, W.-J. Moon, H. Kim, H. Lee*. “Systematic approach to study of optical stability according to the crystal structure of perovskite quantum dots.” Journal of Physical Chemistry C, 2023, 127(46), 22713–22720.
3. C. K. Trinh*, H. Oh, H. Lee*. “The solvent effect on the morphology and molecular ordering of benzothiadiazole-based small molecules for inkjet-printed thin-film transistors.” RSC Advances, 2023, 13, 14210–14216.
4. H. Kim, H. Lee*. “Improvement of chemical stability of perovskite nanocrystals as a photoelectrochemical catalyst for hydrogen evolution reaction.” Catalysts, 2023, 13(4), 752.
5. S. Lee, … et al. “Truly form-factor-free industrially scalable system integration for electronic textile architectures with multifunctional fiber devices.” Science Advances, 2023, 9, eadf4049.
6. H. Lee, … et al. “Air stable eco-friendly quantum dots with a light-mediated photoinitiator for an inkjet printed flexible light emitting diode.” Journal of Materials Chemistry C, 2022, 10, 10708–10718.
7. Y. Li, … et al. “Rational nanopositioning of homogeneous amorphous phase on crystalline metal oxide for boosting solar water oxidation.” Chemical Engineering Journal, 2022, 438, 135532.
8. H. W. Choi, … et al. “Smart textile lighting/display system with multifunctional fibre devices for large-scale smart home and IoT applications.” Nature Communications, 2022, 13, 814.
9. H. Lee, C. K. Trinh, M. G. So, C.-L. Lee*. “Sequential structural degradation in red perovskite quantum dot light-emitting diodes and its prevention by introducing stable gradient iodine concentration in core–shell architecture.” Nanoscale, 2022, 14, 3425–3440.
10. H. Lee, Y. T. Chun*. “Ferroelectric induced UV light-responsive memory devices with low dark current.” Electronics, 2021, 10(16), 1897.
11. C. K. Trinh‡, H. Lee‡, M. G. So, C.-L. Lee*. “Synthesis of chemically stable ultrathin SiO₂-coated core–shell perovskite QDs via modulation of ligand binding energy for all-solution-processed light-emitting diodes.” ACS Applied Materials & Interfaces, 2021, 13(25), 29845–29855.
12. H. Lee‡, S. Lee‡, H. Lee*. “Energy/charge transfer modulation with spacer ligands for high emissive quantum dot–polymer blend.” ACS Applied Materials & Interfaces, 2021, 13(18), 21534–21542.
13. H. Lee, J. W. Jeong, M. G. So, G. Y. Jung, C.-L. Lee*. “Design of chemically stable organic perovskite quantum dots for micropatterned light-emitting diodes through kinetic control of cross-linkable ligand system.” Advanced Materials, 2021, 33, 2007855.
14. H. Lee‡*, M. Kim‡, H. Lee. “Reducing the photodegradation of perovskite quantum dots to enhance photocatalysis in CO₂ reduction.” Catalysts, 2021, 11(1), 61. (Invited Paper)
15. H. Lee‡, S. Bak‡, J. Kim, H. Lee*. “The effect of the dopant’s reactivity for high-performance 2D MoS₂ thin-film transistor.” Nano Research, 2020, 14, 198–209.
16. H. Lee, … et al. “Nano-to-microporous networks via inkjet printing of ZnO nanoparticles/graphene hybrid for ultraviolet photodetectors.” ACS Applied Nano Materials, 2020, 3(5), 4454–4464.
17. D.-W. Shin, … et al. “Waterproof flexible InP@ZnSeS quantum dot light-emitting diode.” Advanced Optical Materials, 2020, 8, 1901362.
18. S. Jung, … et al. “Modeling electrical percolation to optimize the electromechanical properties of CNT/polymer composites in highly stretchable fiber strain sensors.” Scientific Reports, 2019, 9, 20376.
19. H. Lee, S. Bak, Y. Cho, M. Kim, S. H. Kang, V. Q. Bui, H. M. Le, S. W. Kim, H. Lee*. “Hydrogen adsorption engineering by intramolecular proton transfer on 2D nanosheets.” NPG Asia Materials, 2018, 10, 441–454.
20. J. M. Kim, … et al. “Si-quantum-dot heterojunction solar cells with 16.2% efficiency achieved by employing doped-graphene transparent conductive electrodes.” Nano Energy, 2018, 43, 124–129.
21. H. Lee, S. Bak, S.-J. An, J. H. Kim, E. Yun, M. Kim, S. Seo, Y. Lee, M. Jeong, H. Lee*. “Highly efficient thin-film transistor via cross-linking of 1T edge functional 2H molybdenum disulfides.” ACS Nano, 2017, 11, 12832–12839.
22. H. Lee, M. Kim, I. Kim, H. Lee*. “Flexible and stretchable optoelectronic devices using silver nanowire and graphene.” Advanced Materials, 2016, 28(22), 4541–4548.
23. H. Lee, I. Kim, M. Kim, H. Lee*. “Moving beyond flexible to stretchable conductive electrodes using metal nanowires and graphene.” Nanoscale, 2016, 8, 1789–1822.
24. K. Lee, H. Lee, Y. Shin, Y. Yoon, D. Kim, H. Lee*. “Highly transparent and flexible supercapacitors using graphene–graphene quantum dots chelate.” Nano Energy, 2016, 26, 746–754.
25. E. Hwang, H. Hwang, Y. Shin, Y. Yoon, H. Lee, J. Yang, S. Bak, H. Lee*. “Chemically modulated graphene quantum dot for tuning the photoluminescence as novel sensory probe.” Scientific Reports, 2016, 6, 39448.
26. K. Lee, Y. Yoon, Y. Cho, S. M. Lee, Y. Shin, H. Lee, H. Lee*. “Tunable sub-nanopores of graphene flake interlayers with conductive molecular linkers for supercapacitors.” ACS Nano, 2016, 10, 6799–6807.
27. H. Lee‡, G. Han‡, M. Kim, H. Ahn*, H. Lee*. “High mechanical and tribological stability of an elastic ultrathin overcoating layer for flexible silver nanowire films.” Advanced Materials, 2015, 27(13), 2252–2259.
28. Y. Yoon, K. Samanta, H. Lee, K. Lee, A. P. Tiwari, J.-H. Lee, J. Yang, H. Lee*. “Highly stretchable and conductive silver nanoparticle embedded graphene flake electrode prepared by in situ dual reduction reaction.” Scientific Reports, 2015, 5, 14177.
29. H. Lee, K. Lee, J. T. Park, W. C. Kim*, H. Lee*. “Well-ordered and high density coordination-type bonding to strengthen contact of silver nanowires on highly stretchable polydimethylsiloxane.” Advanced Functional Materials, 2014, 24(21), 3276–3283.
30. E. Hwang, S. Seo, S. Bak, H. Lee, M. Min, H. Lee*. “An electrolyte-free flexible electrochromic device using electrostatically strong graphene quantum dot–viologen nanocomposites.” Advanced Materials, 2014, 26, 5129–5136.
31. L. Wang, Y. Park, P. Cui, S. Bak, H. Lee, S. M. Lee, H. Lee*. “Facile preparation of an n-type reduced graphene oxide field effect transistor at room temperature.” Chemical Communications, 2014, 50, 1224–1226.
32. I. K. Moon‡, J. I. Kim‡, H. Lee‡, W. C. Kim*, H. Lee*. “2D graphene oxide nanosheets as an adhesive over-coating layer for flexible transparent conductive electrodes.” Scientific Reports, 2013, 3, 1112.
33. Y. Li, P. Cui, L. Wang, H. Lee, K. Lee, H. Lee*. “Highly bendable, conductive and transparent film by enhanced adhesion of silver nanowires.” ACS Applied Materials & Interfaces, 2013, 5(18), 9155–9160.