Publications

116 papers, and counting

Peer-reviewed work in Science, Nature, Nature Photonics, Nature Nanotechnology, PNAS, and Advanced Materials. Most-cited highlights below, followed by the complete record by year.

116Publications
16,187Citations
49h-index
Citation emission spectrum annual citations · 2015–2026
* 2026 is a partial (year-to-date) count. Source: Google Scholar, July 2026.
Most cited & featured covers

Highlights

Most-cited papers and cover features (Google Scholar & lab homepage, July 2026) — click through to read.

Advanced Materials cover, February 2015, illustrating multicolored perovskite LEDs Nature Photonics cover, February 2021, perovskite nanocrystals shine brightly Science article page, chiral-induced spin selectivity room-temperature spin LED Advanced Materials cover illustrating perovskite stability, hole diffusion at the surface Nature Nanotechnology cover, colloidal perovskite nanocrystals for large-area LEDs JACS cover illustrating chiral-induced spin selectivity in palladium-halide semiconductors Accounts of Materials Research cover and EQE roadmap for colloidal perovskite nanocrystal LEDs Advanced Materials inside cover illustrating crosslinked perovskite nanoparticle stability
Complete record

By year

All 116 papers, split into the lab's Hanyang University-era record and Prof. Kim's pre-HYU record (from the lab homepage, matching its own split). Source: Google Scholar & lab homepage, July 2026. * marks corresponding author(s), as designated on the lab homepage's Hanyang University-era list (not marked on its pre-HYU list).

2026 18 papers

  1. 116High color purity deep-blue light-emitting diodes with CIE coordinates of (0.134, 0.066) based on covalently bonded metal-organic chalcogenolatesChemical Engineering Journal ↗S. W. Bae, E.-J. Jang, Y.-H. Kim*
  2. 115Spin-polarized electrocatalysis for energy conversion: chiral-induced spin selectivity and magnetic field-induced spin polarizationT. H. Kim, S. H. Jae, Y.-H. Kim*
  3. 114In-situ formed mesoporous silver nanowire electrocatalysts for efficient CO2 electrolysisSmallJ.-K. Lee, H. Kim, Y. J. Kim, S. H. Jae, S. Choe, T. H. Kim, S. W. Bae, S. H. Nam, D. Kim, D.-H. Nam, J. Kim, Y. J. Jang, H. B. Park, S.-Y. Lee, Y.-H. Kim*
  4. 113Charging-state behavior of N/O/F-doped carbon anodes for K-ion batteriesChemNanoMat ↗J. Jang, Y.-H. Kim, J. Yang, J. Kim*
  5. 112A chiral 2D sheet for enhancing GLUT1 function through the interplay of architecture and recognitionSmallY. Kim, D. Lee, K. Kim, Y. Y. Kim, B. Yeom, S. Ma, Y.-H. Kim, Y. Kim*
  6. 111Surface-neutralized HgCdSe quantum dots for high-detectivity infrared photodetectorsNano Letters ↗W. Lee, S. H. Lee, S. H. Nam, M.-J. Si, S.-W. Baek, Y.-H. Kim*, A. M. Smith*
  7. 110Spin polarized oxygen evolution reaction in chiral amorphous manganese-doped cobalt oxide: enhancing electrocatalytic activity via lattice oxygen participationJ. Mater. Chem. A ↗T. H. Kim, H. K. Cho, S. H. Jae, S. H. Lee, J. You, Y. J. Jang, B. Yeom, Y. M. Lee*, Y.-H. Kim*
  8. 109Gelatin nanosphere-decorated 3D aramid nanofiber hybrid nanoporous separators with regulated ion transport for Li-metal batteriesSmall ↗C. Yang, J. Jung, Y.-H. Kim, Y. Kim, S. Ma, J.-Y. Kim, B. Yeom*
  9. 108Hierarchical energetic coherence and interfacial robustness enable 44.3% EQE deep-blue hyperfluorescent OLEDsACS Energy Letters ↗H. B. Kwon, H. R. Jang, K.-B. Shin, M. G. Kim, J. Jeon, B. W. Go, J. Park, J. Y. Woo, Y.-H. Kim, M.-H. Park, T.-H. Han*
  10. 107Comparative study of poly(para-xylylene) derivatives as gate dielectrics for organic field-effect transistorsOrganic Electronics ↗S. Lee, S. Lim, G. Choi, S. W. Bae, K. Bae, S. Bae, Y.-H. Kim*, H. Park*
  11. 1063D interconnected Zn-ion pathways through anionic nanochannels surrounding bacterial cellulose nanofibers by repetitive interfacial assembly for aqueous Zn-ion battery separatorsAdvanced Energy Materials ↗W. Choi, A. Abraham, E.-J. Jang, B.-I. Sang, Y.-H. Kim, H.-K. Lim*, B. Yeom*
  12. 105Comprehensive electrolyte extraction and quantitative analysis reveal formation-induced electrolyte reactions in lithium-ion batteriesJ. Power Sources ↗T.-H. Kim, S. H. Lee, J. K. Lee, H. Oh, K. Kim, B. Lee, Y.-H. Kim*
  13. 104Reprotonation-assisted self-assembly of mechanically robust aramid nanofiber/sulfated ZrO2 hybrid separator with enhanced Li⁺ ion transfer for lithium-metal batteriesChemical Engineering Journal ↗S. Chung, S. Lim, C. Yang, Y.-H. Kim, H.-D. Lim, B. Yeom
  14. 103Photo-induced crystallization of metal-organic chalcogenide films for large-area photodetector arraysNano Energy ↗S. W. Bae, E.-J. Jang, S. H. Nam, S.-H. Chin, K. H. Lee, M. K. Kim, B. Yeom, Y. Kim, J. Jang, Y. Yi*, Y.-H. Kim*
  15. 102Strain-relaxed chiral hybrid bismuth halides for spin selectivity and magnetoresistanceNano Energy ↗D. Lee, I.-K. Hwang, S. H. Nam, S. Ma, J.-Y. Kim, Y. Kim, B. Yeom, J. Park, M. K. Kim, S.-H. C. Baek*, Y.-H. Kim*
  16. 101Structurally defined carbonized polymer dots with red-to-near-infrared emission and 86% quantum yield via rapid room-temperature aromatic couplingChemical Engineering Journal ↗Y. Park, Y. Kim, S. Seo, H. Park, H. Jo, S. H. Lee, Y.-H. Kim, D. C. Lee, W. Kwon*
  17. 100Unveiling the role of CO2 methanation toward single-walled carbon nanotubes synthesis through systematic optimization within a tandem processCarbon ↗J. Jang, E. Oh, Y. E. Kim, S. H. Lee, C.-M. Yang, Y.-H. Kim, J. Yang, J. Kim*
  18. 99Advances in morphological and interfacial tuning of metal oxides for electrochemical CO2 conversionProg. Mater. Sci. ↗L. Liu, Y. Ahmadi, Y.-H. Kim, K.-H. Kim*

2025 14 papers

  1. 98Enhanced visible-light photocatalytic CO2 reduction of perovskite nanocrystals via interfacial acid reactionSmall ↗K. H. Lee, S. B. Kim, D. Lee, J. Baek, J. Choi, Y.-H. Kim, J.-W. Jeong, J. Jang*
  2. 97Organometal halide perovskite nanoparticle artificial synapses with ultrahigh sensitivityJ. Flex. Print. Electron. ↗W. Xu, Y.-H. Kim, H.-L. Park, Y. Lee, Y.-T. Kim, C. Wolf, C.-G. Park, T.-W. Lee*
  3. 96Systematic evaluation of degradation in waste graphite induced by spent battery recycling processes: effects of mechanical crushing and thermal treatmentJournal of Power Sources ↗J. Kim, J. Kim, H. Park, Y.-H. Kim, J. Yang*
  4. 95Spin polarization porous transport layer for anion exchange membrane water electrolyzers with a current density of 11.5 A cm⁻²Sustainable Energy & Fuels ↗T. H. Kim, C. Hu, H. K. Cho, S. H. Jae, S. Lee, B. Yeom, Y. M. Lee*, Y.-H. Kim*
  5. 94Unraveling the mechanism of reversible phase transformation of Sb(III)-doped metal halide semiconductorsACS Applied Optical Materials ↗S. H. Lee, C. B. Lee, D. Lee, B. Yeom, K. Kim*, Y.-H. Kim*
  6. 93Electroluminescence from a one-dimensional metal-organic chalcogenide enabled by a minute-scale facile synthesisAdvanced Science ↗S.-H. Chin, D. Lee, D. Lee, K. Chung, E. Yoo, T.-I. Kim, S. H. Lee, S. W. Bae, Y.-H. Kim*, Y. Yi*
  7. 92Rheology-controlled microlithography of exceptionally stable perovskite nanocrystals for microdisplaysNano Energy ↗S. W. Bae, J. Park, J. Jang, S. W. Hong, H. Kweon, S. H. Lee, Y. Shin, G. Lee, H. Yang, J. Kim, J. Lee, B. Yeom, U. Paik, Y. H. Jung*, B.-S. Bae*, D. H. Kim*, Y.-H. Kim*
  8. 91Direct greenhouse gases conversion to few-walled carbon nanotubes: optimization of dual-step process overcoming single-step limitationsEnergy & Environmental Materials ↗J. Jang, E. Oh, B.-J. Kim, Y.-H. Kim, J. Yang, J. Kim*
  9. 90Spin lifetime in hybrid organic–inorganic perovskites: mechanisms, measurements, and prospects for spintronic applicationsJ. Phys. Chem. Lett. ↗W. Huang, Z. Zhou, S. H. Nam, Q. Chen, J. Wang, Z. Zeng, C. Ge, Y. Li, J. Wang, Y.-H. Kim, Y. Zhai*
  10. 89Buried organic interlayer for high-performance and stable wide-bandgap perovskite solar cellsChemical Engineering Journal ↗H. Kim, S. Y. Lee, H. Park, J. Heo, H. Kim, Y. Kim, J. A. Prayogo, Y.-H. Kim, D. R. Whang, D. W. Chang, H. J. Park
  11. 88Visible-light chiral photonic synapses based on hybrid organic-inorganic 2D perovskitesAdv. Electron. Mater. ↗M. G. Lee, J. B. Jeon, S. H. Nam, D. Lee, C. Lee, J. Kwon, S.-G. Im, Y.-H. Kim*, K. M. Kim*, B.-G. Park*
  12. 87Wavelength-tunable deep blue emission from pure bromide-based colloidal perovskite nanocrystalsMicrostructure ↗S. H. Lee, S. Cho, S. W. Bae, B. Yeom, Y.-H. Kim*
  13. 86Switchable passive radiative cooling via mechanical stress for stretchable smart windowMacromolecular Research ↗T.-H. Kim, S. J. Kim, S. H. Lee, S. W. Bae, M. K. Kim, Y.-H. Kim*
  14. 82Intermolecular naphthylamine cyclization-based synthesis of bandgap-modulated carbon dots for multicolor light-emitting diodesOptical Materials ↗S. Park, S. H. Lee, Y. Kim, H. Park, Y.-H. Kim*, W. Kwon*

2024 14 papers

  1. 85Chemically designed crystal growth termination for high-luminance and stable polycrystalline perovskite LEDsACS Energy Lett. ↗J. W. Jang, J. Y. Woo, C. B. Lee, W. D. Kim, J. Park, D. Kim, Y. Zhao, J.-S. Yeo, M. G. Kim, S. H. Nam, S. H. Lee, Y.-H. Kim, D. R. Lee, Y. Yang, K. Kim, T.-H. Han*
  2. 84Long-lived room-temperature phosphorescence from silica nanoparticles with in situ generated carbonaceous defects for blue organic light-emitting diodesACS Applied Materials & Interfaces ↗C. Han, S. H. Lee, K. Lee, H. Chang, H. Jo, S. Seo, S. K. Hahn, Y.-H. Kim*, W. Kwon*
  3. 83Highly transparent all-perovskite luminescent solar concentrator/photovoltaic windowsJournal of Materials Chemistry A ↗S. Oh, S. W. Bae, T. H. Kim, G. Kang, H. Jung, Y.-H. Kim*, M. Park*
  4. 81Efficient polycrystalline single-cation perovskite light-emitting diodes by simultaneous intracrystal and interfacial defect passivationSmall ↗H. Kim, J.-M. Heo, C. Wolf, Y.-H. Kim, S.-C. Lee, E. Yoon, G.-H. Lee, K. Y. Jang, J. Park, J. S. Kim, M.-H. Park, H. S.-H. Jeong, H. Cho, T.-H. Han, E. Oveisi, M. K. Nazeeruddin, T.-W. Lee*
  5. 80High open-circuit voltage wide-bandgap perovskite solar cell with cathode interlayerSmall ↗J. Heo, J. A. Prayogo, S. W. Lee, H. Park, S. K. Muthu, J. Hong, H. E. Kim, Y.-H. Kim, D. R. Whang, D. W. Chang*, H. J. Park*
  6. 79Remotely modulating the optical properties of organic charge-transfer crystallites via molecular packingThe Journal of Physical Chemistry Letters ↗J. Bang, M. Chang, Y. Ahn, C. W. Park, S. H. Nam, J. MacDonald, K. Cho, Y. Noh, Y. Kim, Y.-H. Kim, J. Oh, S. Y. Lee, J. Park*
  7. 78Spin polarization in Fe-doped CsPbBr3 perovskite nanocrystals for enhancing photocatalytic CO2 reductionChemical Engineering Journal ↗T. H. Kim, S. H. Lee, K. Cho, J. H. Kang, H. B. Park, J. Park*, Y.-H. Kim*
  8. 77Structural asymmetry and chiral-induced spin selectivity in chiral palladium-halide semiconductorsJACS ↗S. H. Nam, J. An, W. Jeong, J. G. Oh, J. M. Luther, M. C. Beard, T. H. Han, I.-H. Park*, Y.-H. Kim*
  9. 76Formation of homogeneous pyridinic emission states in carbon dots via solid-state carbonization of aminoquinoline: optical design principles and light-emitting diode applicationsJournal of Alloys and Compounds ↗Y. Byun, D. Lee, S. W. Bae, S. Y. Won, S. Cho, S. H. Lee, Y. Park, Y.-H. Kim*, W. Kwon*
  10. 75Multi-ion controllable metal halide ionic structure for selective short- and long-term memorable synaptic devicesNano Today ↗D. Lee, S.-J. Lee, J. H. Kim, G. Kim, W.-G. Jung, J. Park, Y.-C. Kang, Y.-H. Kim, M. Song, H. S. Kim*, J. W. Choi*
  11. 7310 mAh cm⁻² cathode by roll-to-roll process for low cost and high energy density Li-ion batteriesAdvanced Energy Materials ↗J. Kim, K. Park, M. Kim, H. Lee, J. Choi, H. B. Park, H. Kim, J. Jang, Y.-H. Kim, T. Song*, U. Paik*
  12. 72MAPbBr3 halide perovskite-based resistive random-access memories using electron transport layer for long endurance cycles and retention timeACS Applied Materials & Interfaces ↗H. Kim, J. S. Kim, J. Choi, Y.-H. Kim, J. M. Suh, M.-J. Choi, Y. Shim, S. Y. Kim, T.-W. Lee*, H. W. Jang*
  13. 71Roadmap on perovskite light-emitting diodesJournal of Physics: Photonics ↗Z. Chen, R. L. Z. Hoye, H.-L. Yip, N. Fiuza-Maneiro, I. López-Fernández, C. Otero-Martínez, L. Polavarapu, N. Mondal, A. Mirabelli, M. Anaya, S. D. Stranks, H. Liu, G. Shi, Z. Xiao, N. Kim, Y. Kim, B. Shin, J. Shi, M. Liu, Q. Zhang, Z. Fan, J. C. Loy, L. Zhao, B. P. Rand, H. Arfin, S. Saikia, A. Nag, C. Zou, L. Y. Lin, H. Xiang, H. Zeng, D. Liu, S.-J. Su, C. Wang, H. Zhong, T.-T. Xuan, R.-J. Xie, C. Bao, F. Gao, X. Gao, C. Qin, Young-Hoon Kim, M. C. Beard
  14. 69Advantageous properties of halide perovskite quantum dots towards energy-efficient sustainable applicationsGreen Energy & Environment ↗Q. Zhao, S. Wang, Y.-H. Kim, S. Mondal, Q. Miao, S. Li, D. Liu, M. Wang, Y. Zhai, J. Gao, A. Hazarika, G.-R. Li

2023 3 papers

  1. 74Simplified inverted polymer light-emitting diodes using metal foils as both a cathode and substrateJournal of Flexible & Printed Electronics ↗Y.-H. Kim, C.-Y. Park, T.-W. Lee*
  2. 70Engineering colloidal perovskite nanocrystals and devices for efficient and large-area light-emitting diodesAccounts of Materials Research ↗Y.-H. Kim, T.-W. Lee*
  3. 68Investigating the interfacial properties of halide perovskite/TiO2 heterostructures for versatile photocatalytic reactions under sunlightNanoscale ↗T. H. Kim, I. Park, K. H. Lee, J.-H. Sim, M.-H. Park, T.-H. Han, U. Paik, J. Jang*, H. B. Park*, Y.-H. Kim*

2022 7 papers

  1. 67Bright lead-free inorganic CsSnBr3 perovskite light-emitting diodesACS Energy Letters ↗J.-M. Heo, H. Cho, S.-C. Lee, M.-H. Park, J. S. Kim, H. Kim, J. Park, Y.-H. Kim, H. J. Yun, E. Yoon, D.-H. Kim, S. Ahn, S.-J. Kwon, C.-Y. Park, T.-W. Lee*
  2. 66Advances in solution-processed OLEDs and their prospects for use in displaysAdv. Mater. ↗J. Y. Woo, M.-H. Park, S.-H. Jeong, Y.-H. Kim, B. Kim, T.-W. Lee*, T.-H. Han*
  3. 65The structural origin of chiroptical properties in perovskite nanocrystals with chiral organic ligandsAdv. Funct. Mater. ↗Y.-H. Kim, R. Song, J. Hao, Y. Zhai, L. Yan, T. Moot, A. F. Palmstrom, R. Brunecky, W. You, J. J. Berry, J. L. Blackburn, M. C. Beard, V. Blum, J. M. Luther*
  4. 64Exploiting the full advantages of colloidal perovskite nanocrystals for large-area efficient light-emitting diodesNature Nanotech. ↗Y.-H. Kim, J. Park, S. Kim, J. S. Kim, H. Xu, S.-H. Jeong, B. Hu, T.-W. Lee*
  5. 63Electroplated core–shell nanowire network electrodes for highly efficient organic light-emitting diodesNano Convergence ↗H. Kang, J. S. Kim, S.-R. Choi, Y.-H. Kim, D. H. Kim, J.-G. Kim, T.-W. Lee, J. H. Cho*
  6. 62Unraveling the origin of near-infrared emission in carbon dots by ultrafast spectroscopyCarbon ↗Y. Park, T. M. Dao, Y. Kim, S. Won, Y.-H. Kim, T.-W. Lee, T. Gregorkiewicz, Y. H. Lee, J.-H. Kim, W. Kwon*
  7. 61Surface-modified ultra-thin indium tin oxide electrodes for efficient perovskite light-emitting diodesApplied Surface Science ↗K. R. Son, Y.-H. Kim, D.-H. Kim, W. Ren, V. Murugadoss, T. G. Kim*

2021 3 papers

  1. 60Chiral induced spin selectivity enables a room-temperature spin light-emitting diodeScience ↗Y.-H. Kim, Y. Zhai, H. Lu, X. Pan, C. Xiao, E. A. Gaulding, S. P. Harvey, J. J. Berry, Z. V. Vardeny, J. M. Luther*, M. C. Beard*
  2. 59Comprehensive defect suppression in perovskite nanocrystals for high-efficiency light-emitting diodesNature Photon. ↗Y.-H. Kim, S. Kim, A. Kakekhani, J. Park, J. Park, Y.-H. Lee, H. Xu, S. Nagane, R. B. Wexler, D.-H. Kim, S. H. Jo, L. Martínez-Sarti, P. Tan, A. Sadhanala, G.-S. Park, Y.-W. Kim, B. Hu, H. J. Bolink, S. Yoo, R. H. Friend, A. M. Rappe*, T.-W. Lee*
  3. 58Extremely stable luminescent crosslinked perovskite nanoparticles under harsh environments over 1.5 yearsAdv. Mater. ↗J. Jang, Y.-H. Kim, S. Park, D. Yoo, H. Cho, J. Jang, H. B. Jeong, H. Lee, J. M. Yuk, C. B. Park, D. Y. Jeon, Y.-H. Kim, B.-S. Bae*, T.-W. Lee* · inside cover

Papers from Prof. Kim's Ph.D. and postdoctoral years — POSTECH (advisor Prof. Tae-Woo Lee), Seoul National University, and NREL/USA — before his Hanyang University appointment, as grouped on the lab homepage's own "2021, Before HYU" page.

2021 5 papers

  1. 57Synergistic molecular engineering of hole-injecting conducting polymers overcomes luminescence quenching in perovskite light-emitting diodesAdvanced Optical Materials ↗S. Ahn, Y.-H. Kim, S. Kim, J. Park, N. Li, J.-M. Heo, J. S. Kim, D. J. Kim, B. H. Hong, J. Y. Lee, T.-W. Lee
  2. 56Production of C, N alternating 2D materials using covalent modification and their electroluminescence performanceSmall Science ↗S. Park, Y.-H. Kim, S. Kang, D. Lim, J. Park, D. Jang, S. Choi, J. Kim, S. Han, T.-W. Lee, S. Park
  3. 55Low-energy room-temperature optical switching in mixed-dimensionality nanoscale perovskite heterojunctionsScience Advances ↗J. Hao, Y.-H. Kim, S. N. Habisreutinger, S. P. Harvey, E. M. Miller, Z. Song, Y. Yan, J. M. Luther, J. L. Blackburn
  4. 54The path to enlightenment: progress and opportunities in high efficiency halide perovskite light emitting devicesACS Photonics ↗C. Zou, C. Zhang, Y.-H. Kim, L. Y. Lin, J. M. Luther
  5. 53Chemically robust indium tin oxide/graphene anode for efficient perovskite light-emitting diodesACS Applied Materials & Interfaces ↗S.-J. Kwon, S. Ahn, J.-M. Heo, D. J. Kim, J. Park, H.-R. Lee, S. Kim, H. Zhou, M.-H. Park, Y.-H. Kim, W. Lee, J.-Y. Sun, B. H. Hong, T.-W. Lee

2020 10 papers

  1. 52Strategies to achieve high circularly polarized luminescence from colloidal organic–inorganic hybrid perovskite nanocrystalsACS Nano ↗Y.-H. Kim, Y. Zhai, E. A. Gaulding, S. N. Habisreutinger, T. Moot, B. A. Rosales, H. Lu, A. Hazarika, R. Brunecky, L. M. Wheeler, J. J. Berry, M. C. Beard, J. M. Luther · highlighted in Science
  2. 51Molecular-scale strategies to achieve high efficiency and low efficiency roll-off in simplified solution-processed organic light-emitting diodesAdvanced Functional Materials ↗Y.-H. Kim, T.-H. Han, C. Lee, Y.-H. Kim, Y. Yang, T.-W. Lee
  3. 50Production of metal-free C, N alternating nanoplatelets and their in vivo fluorescence imaging performance without labelingAdvanced Functional Materials ↗D. Jang, H. Ahn, J. Oh, D. Lim, C. H. Kim, S. Choi, Y.-H. Kim, J. Park, K. Y. Jang, R. J. Yoo, T.-W. Lee, J. Kim, Y. J. Lee, D. W. Kim, S. Park
  4. 49Perovskite emitters as a platform material for down-conversion applicationsAdvanced Materials & Technology ↗H. Lee, J. Park, S. Kim, S.-C. Lee, Y.-H. Kim, T.-W. Lee
  5. 48Embedding PbS quantum dots (QDs) in Pb-halide perovskite matrices: QD surface chemistry and antisolvent effects on QD dispersion and confinement propertiesACS Materials Letters ↗E. A. Gaulding, X. Chen, Y. Yang, S. P. Harvey, B. To, Y.-H. Kim, M. C. Beard, P. C. Sercel, J. M. Luther
  6. 47Aromatic nonpolar organogels for efficient and stable perovskite green emittersNature Communications ↗J.-M. Park, J. Park, Y.-H. Kim, H. Zhou, Y. Lee, S. H. Jo, J. Ma, T.-W. Lee, J.-Y. Sun
  7. 46Electroplated silver–nickel core–shell nanowire network electrodes for highly efficient perovskite nanoparticle light-emitting diodesACS Applied Materials & Interfaces ↗H. Kang, S.-R. Choi, Y.-H. Kim, J. S. Kim, S. Kim, B.-S. An, C.-W. Yang, J.-M. Myoung, T.-W. Lee, J.-G. Kim, J. H. Cho
  8. 45Proton-transfer-induced 3D/2D hybrid perovskites suppress ion migration and reduce luminance overshootNature Communications ↗H. Kim, J. S. Kim, J.-M. Heo, M. Pei, I.-H. Park, Z. Liu, H. J. Yun, M.-H. Park, S.-H. Jeong, Y.-H. Kim, J.-W. Park, E. Oveisi, S. Nagane, A. Sadhanala, L. Zhang, J. J. Kweon, S. K. Lee, H. Yang, H. M. Jang, R. H. Friend, K. P. Loh, M. K. Nazeeruddin, N.-G. Park, T.-W. Lee
  9. 44A 2D titanium carbide MXene flexible electrode for high-efficiency light-emitting diodesAdvanced Materials ↗S. Ahn, T.-H. Han, K. Maleski, J. Song, Y.-H. Kim, M.-H. Park, H. Zhou, S. Yoo, Y. Gogotsi, T.-W. Lee
  10. 43Retina-inspired carbon nitride-based photonic synapses for selective detection of UV lightAdvanced Materials ↗H.-L. Park, H. Kim, D. Lim, H. Zhou, Y.-H. Kim, Y. Lee, S. Park, T.-W. Lee

2019 5 papers

  1. 42Strategies to improve luminescence efficiency of metal-halide perovskites and light-emitting diodesAdvanced Materials ↗Y.-H. Kim, J. S. Kim, T.-W. Lee · back cover
  2. 41Dimensionality dependent plasticity in halide perovskite artificial synapses for neuromorphic computingAdvanced Electronic Materials ↗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, T.-W. Lee
  3. 40Efficient Ruddlesden–Popper perovskite light-emitting diodes with randomly oriented nanocrystalsAdvanced Functional Materials ↗H.-D. Lee, H. Kim, H. Cho, W. Cha, Y. Hong, Y.-H. Kim, A. Sadhanala, V. Venugopalan, J. S. Kim, J. W. Choi, C.-L. Lee, D. Kim, H. Yang, R. H. Friend, T.-W. Lee
  4. 39Fine control of perovskite crystallization and reducing luminescence quenching using self-doped polyaniline hole injection layer for efficient perovskite light-emitting diodesAdvanced Functional Materials ↗S. Ahn, M.-H. Park, S.-H. Jeong, Y.-H. Kim, J. Park, S. Kim, H. Kim, H. Cho, C. Wolf, M. Pei, H. Yang, T.-W. Lee
  5. 38Low-dimensional iodide perovskite nanocrystals enables efficient red emissionNanoscale ↗L. Martinez-Sarti, S. H. Jo, Y.-H. Kim, M. Sessolo, F. Palazon, T.-W. Lee, H. Bolink

2018 6 papers

  1. 37Metal halide perovskites: from crystal formations to light-emitting diode applicationsSmall Methods ↗Y.-H. Kim, S. Kim, S. H. Jo, T.-W. Lee
  2. 36Charge carrier recombination and ion migration in metal-halide perovskite nanoparticle films for efficient light-emitting diodesNano Energy ↗Y.-H. Kim, C. Wolf, H. Kim, T.-W. Lee
  3. 35Solution-processed n-type graphene doping for cathode in inverted polymer light-emitting diodesACS Applied Materials & Interfaces ↗S.-J. Kwon, T.-H. Han, Y.-H. Kim, T. Ahmed, H.-K. Seo, H. Kim, D. J. Kim, W. Xu, B. H. Hong, J.-X. Zhu, T.-W. Lee
  4. 34High-efficiency polycrystalline perovskite light-emitting diodes based on mixed cationsACS Nano ↗H. Cho, J. S. Kim, C. Wolf, Y.-H. Kim, H. J. Yun, S.-H. Jeong, A. Sadhanala, V. Venugopalan, J. W. Choi, C.-L. Lee, R. H. Friend, T.-W. Lee
  5. 33Influence of A-site cation on the thermal stability of metal halide perovskite polycrystalline filmsJournal of Information Display ↗H. Cho, J. S. Kim, Y.-H. Kim, T.-W. Lee
  6. 32Improving the stability of metal halide perovskite materials and light-emitting diodesAdvanced Materials ↗H. Cho, Y.-H. Kim, C. Wolf, H.-D. Lee, T.-W. Lee · 235 citations

2017 9 papers

  1. 31High efficiency perovskite light-emitting diodes of ligand-engineered colloidal formamidinium lead bromide nanoparticlesNano Energy ↗Y.-H. Kim, G.-H. Lee, Y.-T. Kim, C. Wolf, H. J. Yun, W. Kwon, C. G. Park, T.-W. Lee · 150 citations
  2. 30Highly efficient light-emitting diodes of colloidal metal-halide perovskite nanocrystals beyond quantum sizeACS Nano ↗Y.-H. Kim, C. Wolf, Y.-T. Kim, H. Cho, W. Kwon, S. Do, A. Sadhanala, C. G. Park, S.-W. Rhee, S. H. Im, R. H. Friend, T.-W. Lee · 224 citations
  3. 29Unravelling additive-based nanocrystal pinning for high efficiency organic-inorganic halide perovskite light-emitting diodesNano Energy ↗M.-H. Park, S.-H. Jeong, H.-K. Seo, C. Wolf, Y.-H. Kim, H. Kim, J. Byun, H. Cho, T.-W. Lee
  4. 28Polaronic charge carrier–lattice interactions in lead halide perovskitesChemSusChem ↗C. Wolf, H. Cho, Y.-H. Kim, T.-W. Lee
  5. 27Correlation between small-molecule dependent nanomorphology and device performance of organic light-emitting diodes with ternary blend emitting layerJournal of Materials Chemistry C ↗O. F. N. Okello, Y.-T. Kim, H.-D. Lee, Y.-H. Kim, T.-W. Lee, C. G. Park
  6. 26Ultrapure green light-emitting diodes using two-dimensional formamidinium perovskites: achieving Recommendation 2020 color coordinatesNano Letters ↗S. Kumar, J. Jagielski, N. Kallikounis, Y.-H. Kim, C. Wolf, F. Jenny, T. Tian, C. J. Hofer, Y.-C. Chiu, W. J. Stark, T.-W. Lee, C.-J. Shih · 142 citations
  7. 25Correlation of controllable aggregation with light emitting property in polymer blend optoelectronic devicesSmall ↗Y.-T. Kim, J.-B. Seol, Y.-H. Kim, H.-J. Ahn, C.-G. Park
  8. 24Universal high work function flexible anode for simplified ITO-free organic and perovskite light-emitting diodes with ultra-high efficiencyNPG Asia Materials ↗S.-H. Jeong, S.-H. Woo, T.-H. Han, M.-H. Park, H. Cho, Y.-H. Kim, H. Cho, H. Kim, S. Yoo, T.-W. Lee
  9. 23Efficient flexible organic/inorganic hybrid perovskite light-emitting diodes based on graphene anodeAdvanced Materials ↗H.-K. Seo, H. Kim, J. Lee, M.-H. Park, S.-H. Jeong, Y.-H. Kim, S.-J. Kwon, T.-H. Han, S. Yoo, T.-W. Lee · 142 citations

2016 10 papers

  1. 22Metal-halide perovskite light emittersPNAS ↗Y.-H. Kim, H. Cho, T.-W. Lee · 384 citations
  2. 21Highly efficient, simplified, solution-processed thermally activated delayed-fluorescence organic light-emitting diodesAdvanced Materials ↗Y.-H. Kim, C. Wolf, H. Cho, S.-H. Jeong, T.-W. Lee · 108 citations
  3. 20Effects of thermal treatment on organic-inorganic hybrid perovskite films and luminous efficiency of light-emitting diodesCurrent Applied Physics ↗Y.-H. Kim, H. Cho, J. H. Heo, S. H. Im, T.-W. Lee
  4. 19N,S-induced electronic states of carbon nanodots toward white electroluminescenceAdvanced Optical Materials ↗S. Do, W. Kwon, Y.-H. Kim, S. R. Kang, T. Lee, T.-W. Lee, S.-W. Rhee
  5. 18High color-purity green, orange, and red light-emitting diodes based on chemically functionalized graphene quantum dotsScientific Reports ↗W. Kwon, Y.-H. Kim, J.-H. Kim, T. Lee, S. Do, Y. Park, M. S. Jeong, T.-W. Lee, S.-W. Rhee
  6. 17Organometal halide perovskite artificial synapsisAdvanced Materials ↗W. Xu, H. Cho, Y.-H. Kim, Y.-T. Kim, C. Wolf, C.-G. Park, T.-W. Lee · 183 citations
  7. 16Laminated graphene films for flexible transparent thin film encapsulationACS Applied Materials & Interfaces ↗H.-K. Seo, M.-H. Park, Y.-H. Kim, S.-J. Kwon, S.-H. Jeong, T.-W. Lee
  8. 15Synergetic influences of mixed-host emitting layer structures and hole injection layers on efficiency and lifetime of simplified phosphorescent organic light-emitting diodesACS Applied Materials & Interfaces ↗T.-H. Han, Y.-H. Kim, M. H. Kim, W. Song, T.-W. Lee
  9. 14Scalable noninvasive organic fiber lithography for large-area optoelectronicsAdvanced Optical Materials ↗H. Cho, S.-H. Jeong, S.-Y. Min, T.-H. Han, M.-H. Park, Y.-H. Kim, W. Xu, T.-W. Lee
  10. 13Universal energy level tailoring of self-organized hole extraction layers in organic solar cells and organic–inorganic hybrid perovskite solar cellsEnergy & Environmental Science ↗K.-G. Lim, S. Ahn, Y.-H. Kim, Y. B. Qi, T.-W. Lee · 184 citations

2015 6 papers

  1. 12Multi-colored organic/inorganic hybrid perovskite light-emitting diodesAdvanced Materials ↗Y.-H. Kim, H. Cho, J. H. Heo, T.-S. Kim, N. Myoung, C.-L. Lee, S. H. Im, T.-W. Lee · inside back cover · 1,012 citations
  2. 11Temperature-dependent nanomorphology–performance relations in binary iridium complex blend films for organic light emitting diodesPhysical Chemistry Chemical Physics ↗Y.-T. Kim, Y.-H. Kim, J.-B. Seol, T.-W. Lee, C.-G. Park
  3. 10Overcoming the electroluminescence efficiency limitations of perovskite light-emitting diodesScience ↗H. Cho, S.-H. Jeong, M.-H. Park, Y.-H. Kim, C. Wolf, C.-L. Lee, J. H. Heo, A. Sadhanala, N. S. Myoung, S. Yoo, S. H. Im, R. H. Friend, T.-W. Lee · 1,904 citations
  4. 9Synergistic effects of doping and thermal treatment on organic semiconducting nanowiresACS Applied Materials & Interfaces ↗S.-Y. Min, Y.-H. Kim, C. Wolf, T.-W. Lee
  5. 8Flexible organic light-emitting diodes for solid-state lightingJournal of Photonics for Energy ↗M. H. Park, T.-H. Han, Y.-H. Kim, S.-H. Jeong, Y. Lee, H. Cho, T.-W. Lee
  6. 7Improvement of work function and hole injection efficiency of graphene anode using CHF3 plasma treatment2D Materials ↗H. Cho, S. D. Kim, T.-H. Han, I. Song, J.-W. Byun, Y.-H. Kim, S. Kwon, S.-H. Bae, H. C. Choi, J.-H. Ahn, T.-W. Lee

2014 6 papers

  1. 6A systematic identification of efficiency enrichment between thiazole and benzothiazole based yellow iridium(III) complexesJournal of Materials Chemistry C ↗T. Giridhar, W. Cho, Y.-H. Kim, T.-H. Han, T.-W. Lee, S.-H. Jin
  2. 5Electroluminescence from graphene quantum dots prepared by amidative cutting of tattered graphiteNano Letters ↗W. Kwon, Y.-H. Kim, C.-L. Lee, M. Lee, H. C. Choi, T.-W. Lee, S.-W. Rhee · 219 citations
  3. 4Polyethylene imine as an ideal interlayer for highly efficient inverted polymer light-emitting diodesAdvanced Functional Materials ↗Y.-H. Kim, T.-H. Han, H. Cho, S.-Y. Min, C.-L. Lee, T.-W. Lee · 177 citations
  4. 3A roll-to-roll welding process for planarized silver nanowire electrodesNanoscale ↗S. J. Lee, Y.-H. Kim, J. K. Kim, H. Baik, J. H. Park, J. Lee, J. Nam, J. H. Park, T.-W. Lee, G.-R. Yi, J. H. Cho · 144 citations
  5. 2Flexible and transparent metallic grid electrodes prepared by evaporative assemblyACS Applied Materials & Interfaces ↗J. G. Park, D. Y. Lee, Y.-H. Kim, J. K. Kim, J. H. Lee, J. H. Park, T.-W. Lee, J. H. Cho · 119 citations
  6. 1N-doped graphene field-effect transistors with enhanced electron mobility and air-stabilitySmall ↗W. Xu, T.-S. Lim, H.-K. Seo, S.-Y. Min, H. Cho, M.-H. Park, Y.-H. Kim, T.-W. Lee