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Nano Letters|April 4, 2018
Nanopatterned High-Frequency Supporting Structures Stably Eliminate Substrate Effects Imposed on Two-Dimensional SemiconductorsSoonmin Yim, Hyeuk Jin Han, Jaebeom Jeon, et al.Small (Weinheim an Der Bergstrasse, Germany)|November 25, 2017
Extremely Small Pyrrhotite Fe<sub>7</sub> S<sub>8</sub> Nanocrystals with Simultaneous Carbon-Encapsulation for High-Performance Na-Ion BatteriesMin-Jae Choi, Jongsoon Kim, Jung-Keun Yoo, et al.ACS Omega|August 29, 2019
Long-Term Stable 2H-MoS<sub>2</sub> Dispersion: Critical Role of Solvent for Simultaneous Phase Restoration and Surface Functionalization of Liquid-Exfoliated MoS<sub>2</sub>Dong Min Sim, Hyeuk Jin Han, Soonmin Yim, et al.ACS Nano|October 28, 2015
Controlled Doping of Vacancy-Containing Few-Layer MoS2 via Highly Stable Thiol-Based Molecular ChemisorptionDong Min Sim, Mincheol Kim, Soonmin Yim, et al.Nanophotonics (Berlin, Germany)|December 5, 2024
Wide-angle deep ultraviolet antireflective multilayers via discrete-to-continuous optimizationJae-Hyun Kim, Dong In Kim, Sun Sook Lee, et al.ACS Nano|September 21, 2022
Noninvasive and Direct Patterning of High-Resolution Full-Color Quantum Dot Arrays by Programmed MicrowettingKyeong Min Song, Moohyun Kim, Hyunjin Cho, et al.ACS Applied Materials & Interfaces|January 6, 2018
Transferrable Plasmonic Au Thin Film Containing Sub-20 nm Nanohole Array Constructed via High-Resolution Polymer Self-Assembly and Nanotransfer PrintingSoonmin Yim, Suwan Jeon, Jong Min Kim, et al.Langmuir : the ACS Journal of Surfaces and Colloids|October 2, 2023
Wetting Behavior of A<i>-block-</i>(B-<i>random</i>-C) Copolymers with Equal Block Surface Energies on Surfaces Functionalized with B-<i>random</i>-C CopolymersHongbo Feng, Benjamin Kash, Soonmin Yim, et al.Advanced Materials (Deerfield Beach, Fla.)|July 16, 2015
In Situ Nanolithography with Sub-10 nm Resolution Realized by Thermally Assisted Spin-Casting of a Self-Assembling PolymerJung Hye Lee, YongJoo Kim, Joong-Yeon Cho, et al.Advanced Materials (Deerfield Beach, Fla.)|December 23, 2015
Highly Asymmetric n(+)-p Heterojunction Quantum-Dot Solar Cells with Significantly Improved Charge-Collection EfficienciesMin-Jae Choi, Sunchuel Kim, Hunhee Lim, et al.Pageof 4