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Publications

2023

25. UV-assisted Direct-Ink-Write 3D Printing of Crosslinkable Bottlebrush Block Copolymers for On-the-fly Control of Structure Color

S. Jeon†, Y. Kamble†, J. Shi†, H. Kang†, M. A. Wade, B. B. Patel, C. E. Sing*, S. A. Rogers*, D. Guironnet*, Y. Diao*

PNAS, 2023, Accepted.

24. Defect Engineering of Metal Halide Perovskite Nanocrystals via Spontaneous Diffusion of Ag Nanocrystals

S. Jeon†, J. Ahn†, M.-C. Jung, H. K. Woo, J. Bang, B. K. Jung, S. Oh, S. Y. Lee, K. J. Lee, T. Paik, D.-H. Ha, J.-P. Ahn, S. Jeong, H. S. Jang, D. H. Kim, J. H. Noh*, H. S. Jang*, M. J. Han*, S. J. Oh*
Small, 2023, Accepted.

2022

23. Temperature-Insensitive Strain Sensor based on Metal Nanoparticle Thin Film with Hybrid Ligand Exchange

Y. Choi†, T. Park†, D. H. Lee, J. Ahn, Y. Kim, S. Jeon, M. J. Han, S. J. Oh*.

Nanoscale, 2022, 14 (24), 8628-8639.

22. High-Resolution Multicolor Patterning of Metal Halide Perovskite Nanocrystal Thin Films through Rapid-Evaporation-Assisted Strategy

J. Ahn†, Y. M. Lee†, J. Jeon, J. Bang, S. Jeon, H. K. Woo, S. Y. Lee, J. H. Bae, W. Kim, Y. Choi, S. J. Kim, S. J. Oh*.

Adv. Mater. Technol., 2022, 2200031.

21. Patterning All-Inorganic Halide Perovskite with Adjustable Phase for High-Resolution Color Filter and Photodetector Arrays

W. Kim, S.-K. Kim, S. Jeon, J. Ahn, B. K. Jung, S. Y. Lee, C. Shin, T.-Y. Seong, S. Jeong, H. S. Jang, T. N. Ng, S. J. Oh*.

Adv. Funct. Mater., 2022, 2111409.

20. Ligand Exchange and Impurity Doping in 2D CdSe Nanoplatelet Thin Films and Their Applications

W.S. Lee, Y.-G. Kang, M. Sharma, Y. M. Lee,  S. Jeon,  A. Sharma, H. Demir, M. J. Han, W.-K. Koh, S. J. Oh*

Adv. Electron. Mater., 2022, 8, 2100739.

2021

 

 

19. Ink-Lithography for Property Engineering and Patterning of Nanocrystal Thin Films

J. Ahn, S. Jeon, H. K. Woo, J. Bang, Y. M. Lee, S. Neuhaus, W. S. Lee, T. Park, S. Y. Lee, B. K. Jung, H. Joh, M. Seong, J.-H. Choi, H. G. Yoon, C. Kagan*, and S. J. Oh*.

ACS Nano, 2021, 15, 10, 15667-15675.

18. Efficient Radiative Cooling Emitter adopting the Wavelength Conversion of “Giant” CdSe/ZnS Core-Shell Nanocrystal

S. Son†, S. Jeon†, J. H. Bae, D. Chae, J.-Y. Chae, T. Paik, H Lee*, and S. J. Oh*.

Materials Today Physics, 2021, 21, 100496.

17. Highly stretchable white-light electroluminescent devices with gel-type silica-coated all-inorganic perovskite.

S. Y. Lee, S. Jeon, J. Ahn, J. Bang, H. K. Woo, K. -J. Lee, B. K. Jung, T. Park, D. Son, and S. J. Oh*

Appl. Surf. Sci., 2021, 563, 150229.

16. Non-Interference Wearable Strain Sensor: Chemical Design of Near-Zero Temperature Coefficient of Resistance Nanoparticle Arrays with Thermal Expansion and Transport Engineering

T. Park, H. K. Woo, B. K. Jung, B. Park, J. Bang, W. Kim, S. Jeon, J. Ahn, Y. Lee, Y. M. Lee, T. Kim, S. J. Oh*

ACS Nano, 2021, 15, 5, 8120-8129.

15. Janus-like Jagged Structure with Chemically Designed Nanocrystals for Self-Sorting Wearable Tactile Sensor.

B. K. Jung, S. Jeon, H. K. Woo, T. Park, J. Ahn, J. Bang, S. Y. Lee,Y. M. Lee, and S. J. Oh*

ACS. Appl. Mater. & Interface, 2021, 13, 5, 6394-6403.

14. Colored emitters with silica-embedded perovskite nanocrystals for efficient daytime radiative cooling

S. Son†, S. Jeon†, D. Chae, S. Y. Lee, Y. Liu, H. Lim, S. J. Oh*, and H. Lee*.

Nano Energy., 2021, 1, 105461.

2020

13. Multi-functional Daytime Radiative Cooling Device with Simultaneous Functioning Layer of Light Emitting and Radiative Cooling

S. Jeon†, S. Son†, S. Y. Lee†, D. Chae, J. H. Bae, H. Lee*, and S. J. Oh*.

ACS. Appl. Mater. & Inter., 2020, 12, 49, 54763–54772.

12. All-Solution Processed Multi-Color Patterning Technique of Perovskite Nanocrystal for Color Pixel Array and Flexible Optoelectronic Devices

S. Jeon†, S. Y. Lee†, S.-K, Kim, W. Kim, T. Park, J. Bang, J. Ahn, H. K. Woo, T.-Y. Seong, J.-Y. Chae, T. Paik, and S. J. Oh*.

Adv. Opt. Mater., 2020, 2000501.

11. Post-Synthetic Oriented Attachment of CsPbBr3 Perovskite Nanocrystal Building Blocks: From First Principle Calculation to Experimental Demonstration of Size and Dimensionality (0D/1D/2D)

S. Jeon, M.-C. Jung, J. Ahn, H. K. Woo, J. Bang, D. Kim, S. Y. Lee, H. Y. Woo, J. Jeon, M. Han, T. Paik*, and S. J. Oh*.

Nanoscale Horizons, 2020, 5, 960-970.

10. Heating-up synthesis of cesium bismuth bromide perovskite nanocrystals with tailored composition, morphology, and optical properties.

D. Lee, M. Kim, H.-Y. Woo, J. Chae, D. Lee, S. Jeon, S. J. Oh*, and T. Paik*

RSC Adv., 2020, 10, 7126

9. Property Engineering Through Nanomaterial Chemical Transformation of Colloidal Nanocrystal Thin films.

M. A. Hossain, S. Jeon, J. Ahn, J. Bang, H. K. Woo, S. B. Hafiz, D.-K. Ko, and S. J. Oh* 

Appl. Surf. Sci., 2020, 513, 145721

2019

8. Designing High-Performance CdSe Nanocrystal Thin-Film Transistors Based on Solution Process of Simultaneous Ligand Exchange, Trap Passivation, and Doping.

W. S. Lee, Y. G. Kang, H. K. Woo, J. Ahn, H. Kim, D. Kim, S. Jeon, M. Han, J. –H. Choi*, and S. J. Oh*.

Chem. Mater., 2019, 31, 9389-9399

7. Colloidal-annealing of ZnO nanoparticles to passivate traps and improve charge extraction in colloidal quantum dot solar cells.

H. K. Woo†, M. S. Kang†, T. Park, J. Bang, S. Jeon, W. S. Lee, J. Ahn, G. Cho, D.-K. Ko, Y. Kim, D.-H. Ha, and S. J. Oh*.

Nanoscale., 2019, 11, 17498

6. Chemical Effect of Halide Ligands on the Electromechanical Properties of Ag Nanocrystal Thin Films for Wearable Sensors.

J. Ahn, S. Jeon, W. S. Lee, H. K. Woo, D. Kim, J. Bang, S. J. Oh*.

J. Phys. Chem. C., 2019, 123, 18087-18094.

5. Highly Sensitive Temperature Sensor: Ligand-treated Ag Nanocrystal thin films on PDMS with Thermal Expansion Strategy.

J. Bang, W. S. Lee, B. Park, H. Joh, H. K. Woo, S. Jeon, J. Ahn, T.-I. Kim, and S, J, Oh*.

Adv. Funct. Mater., 2019, 29, 1903047.

4. Investigation of Chemical Effect of Solvent during Ligand Exchange on Nanocrystal Thin Films for Wearable Sensor Applications

S. JeonJ. Ahn, H. Kim, H. K. Woo, J. Bang, W. S. Lee, D. Kim, M. A. Hossain, and S. J. Oh*.

J. Phys. Chem. C., 2019, 123, 11001-11010.

3. Wearable sensors based on colloidal nanocrystals (review article)

W. S. Lee, S. Jeon, S. J. Oh*

Nano Convergence., 2019, 6:10.

2. One-step chemical treatment to design ideal nanospacer structure for highly sensitive and transparent pressure sensor.

H. K. Woo, H. Kim, S. JeonW. S. Lee, J. Ahn, J. Bang, M. S. kang, and S. J. Oh*.

J. Mater. Chem. C., 2019, 73, 214-220.

1. Control of tunneling gap between nanocrystals by introduction of solution processed interfacial layers for wearable sensor applications.

H. A. Hossain, S. JeonJ. Ahn, H. Joh, J. Bang, and S. J. Oh*. 

J. Ind. Eng. Chem., 2019, 73, 214-220.

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