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Sang-Il Yang

Korea University · Materials Science

About the Lab

Professor Sang-Il Yang's research lab specializes in the design, synthesis, and application of advanced nanomaterials with a focus on one-dimensional nanostructures, metal-organic frameworks, and bioinspired catalysts. The lab explores innovative fabrication methods such as thermal evaporation, laser ablation, and self-assembly to create functional materials for energy conversion, environmental remediation, and cancer therapy. Key research directions include the development of highly conductive porous carbon nanorods from MOFs, stimuli-responsive nanocarriers for targeted drug delivery, and artificial enzymes mimicking natural enzymes like carbonic anhydrase. The lab also investigates strong metal-support interactions in nanocatalysts to enhance stability and activity in catalytic processes.

nanomaterialsmetal-organic frameworkscancer therapynanocatalystsself-assembly

Research Overview

Papers
133
Total Citations
1,484
Papers (5y)
26
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
198total
20222023202420252026

Selected Papers

15
1
Article|288 citations·2003
Hydrogen‐Assisted Thermal Evaporation Synthesis of ZnS Nanoribbons on a Large Scale
Yao Jiang, Xiangming Meng, J. Liu, Zhenyu Xie, Chun‐Sing Lee, Sang‐Yup Lee
SJR Q1Advanced Materials

Semiconductor nanoribbons of ZnS have been synthesized on a large scale via hydrogen‐assisted thermal evaporation. The product is characterized by means of electron microscopy and energy‐dispersive X‐ray spectroscopy, which show that the as‐prepared ZnS nanoribbons are single crystals with uniform morphology. A stable and strong emission band centered at 534.5 nm is also associated with the nanoribbons.

Materials ChemistryMaterials Science
2
Article|99 citations·2003
Fabrication of Germanium‐Filled Silica Nanotubes and Aligned Silica Nanofibers
Jianqiang Hu, Xiangming Meng, Yao Jiang, Chun‐Sing Lee, Sang‐Yup Lee
SJR Q1Advanced Materials

Germanium‐filled SiO 2 nanotubes and aligned SiO 2 nanofibers are synthesized via a two‐stage process: thermal evaporation of SiO powder, followed by laser ablation of a Ge target. The nanotubes are either partially filled with Ge nanoparticles/nanorods or completely filled with Ge nanowires, forming Ge/SiO2 nanocables (see Figure). The products were characterized using a variety of spectroscopic techniques.

Materials ChemistryMaterials Science
3
Article|45 citations·2020
Metal-Induced Self-Assembly Template for Controlled Growth of ZIF-8 Nanorods
Changjoon Keum, Hyesung Lee, Choah Kwon, Byungchan Han, Sang‐Yup Lee
SJR Q1Chemistry of Materials

A comprehensive method to prepare a one-dimensional (1D) metal–organic framework (MOF) has attracted research interest because the 1D MOFs are useful as precursor materials for the preparation of highly porous carbon nanorods with outstanding electrical conductivity and mechanical strength, making them particularly suitable for electrochemical applications. Herein, the synthesis of 1D zeolitic imidazolate framework-8 (ZIF-8) nanorods is reported using the metal-induced self-assembly templates of

Electronic, Optical and Magnetic MaterialsMaterials Science
4
Article|43 citations·2022
Harnessing Strong Metal–Support Interaction to Proliferate the Dry Reforming of Methane Performance by In Situ Reduction
Ok Sung Jeon, Hyesung Lee, Kug‐Seung Lee, Vinod K. Paidi, Yunseong Ji, Oh Chan Kwon, Jeong Pil Kim, Jae‐ha Myung, Sang Yoon Park, Young Joon Yoo, Jin Goo Lee, Sang‐Yup Lee
SJR Q1ACS Applied Materials & Interfaces

The strong bonding at the interface between the metal and the support, which can inhibit the undesirable aggregation of metal nanoparticles and carbon deposition from reforming of hydrocarbon, is well known as the classical strong metal-support interaction (SMSI). SMSI of nanocatalysts was significantly affected by heat treatment and reducing conditions during catalyst preparation.the heat treatment and reduction conditions during catalyst preparation. SMSI can be weakened by the decrement of me

Materials ChemistryMaterials Science
5
Article|41 citations·2022
Methane partial oxidation by monomeric Cu active center confined on ZIF-7
Hyesung Lee, Choah Kwon, Changjoon Keum, Hee‐Eun Kim, Hyunjoo Lee, Byungchan Han, Sang‐Yup Lee
SJR Q1Chemical Engineering Journal
Inorganic ChemistryChemistry
6
Article|39 citations·2021
Lysosome-Instructed Self-Assembly of Amino-Acid-Functionalized Perylene Diimide for Multidrug-Resistant Cancer Cells
Changjoon Keum, Ji-Young Hong, Doyeon Kim, Sang‐Yup Lee, Hyuncheol Kim
SJR Q1ACS Applied Materials & Interfaces

Multidrug resistance (MDR) of cancer cells reduces chemotherapeutic efficacy by preventing drug accumulation in the cells through a drug efflux pump and lysosomal sequestration/exocytosis. Herein, to overcome such anticancer resistance, lysosome-targeted self-assembly of perylene diimide (PDI) derivatives is presented as a powerful strategy for effective and selective anticancer therapy. Stimulated by the lysosomal low pH, the amphiphilic PDI derivatives functionalized with amino acids (PDI-AAs)

BiomaterialsMaterials Science
7
Article|38 citations·1999
Preparation of silica-based hybrid materials coated on polypropylene film
Sang‐Yup Lee, Jae‐Dong Lee, Seung‐Man Yang
SJR Q1Journal of Materials Science
Materials ChemistryMaterials Science
8
Article|28 citations·2015
Comparative Study on the Catalytic Hydration of Carbon Dioxide by Catalysts that Mimic Carbonic Anhydrase Prepared with Zinc Salts
Min‐Chul Kim, Sang‐Yup Lee
SJR Q1ChemCatChem

Abstract Recently, a new catalyst that mimics carbonic anhydrase (CA) was constructed by the self‐assembly of histidyl bolaamphiphilic molecules and a Zn ion cofactor. The catalytic Zn ion complex in a tetrahedral coordination geometry is composed of self‐organized histidyl imidazoles and a single hydroxide ion. However, the Znhydroxide coordination, the key structure of the catalytic analogue, is disturbed by the pairing anion of the Zn salt. Here, the performances of the CA‐mimicking catalyst

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|23 citations·2013
Enhanced Photoluminescence by Tyrosine-Containing Bolaamphiphile Self-Assembly
Jinyoung Kwak, Sang‐Yup Lee
SJR Q1Langmuir

Photoluminescent spherical nanostructures were prepared through the self-assembly of a tyrosine-containing bolaamphiphilic molecule, and their antenna effect was examined. The photoluminescent spherical nanostructures were simply prepared by self-assembly of bolaamphiphile molecules in an aqueous solution in which water-soluble photosensitizers and lanthanide ions were dissolved. The photosensitizers and lanthanide cations were incorporated with the phenol group and the carboxyl end of the tyros

Materials ChemistryMaterials Science
10
Article|20 citations·2012
Use of the self-assembly of tyrosine-containing bolaamphiphile molecules as a reactive template for metal deposition
Jinyoung Kwak, Soo-In Park, Sang‐Yup Lee
SJR Q1Colloids and Surfaces B Biointerfaces
BiomaterialsMaterials Science
11
Article|19 citations·2023
Partial oxidation of methane to methyl oxygenates with enhanced selectivity using a single-atom copper catalyst on amorphous carbon support
Hyesung Lee, Choah Kwon, Sekar Vikneshvaran, Sukjun Lee, Sukjun Lee, Sukjun Lee, Sang-Yup Lee, Sang‐Yup Lee
SJR Q1Applied Surface Science
Materials ChemistryMaterials Science
12
Article|17 citations·2023
High metal loaded Cu(i)N3 single-atom catalysts: superior methane conversion activity and selectivity under mild conditions
Hyesung Lee, Sang‐Yup Lee
SJR Q1Journal of Materials Chemistry A

With a high-metal loading of 17.7 wt%, a single-atom Cu( i )N 3 catalyst was prepared using a Cu–benzimidazole complex, exhibiting high reactivity (6.1 mmol g −1 h −1 ) and ∼90% selectivity in methane partial oxidation.

Materials ChemistryMaterials Science
13
Article|15 citations·2017
Interior-filled self-assemblies of tyrosyl bolaamphiphiles regulated by hydrogen bonds
Jinyoung Kwak, Seung Soo Nam, Junghyun Cho, Eunji Sim, Sang‐Yup Lee
SJR Q2Physical Chemistry Chemical Physics

Bolaamphiphilic molecules with tyrosyl end groups formed interior-filled spherical self-assemblies, which are distinct from the vesicular or tubular structures of other similar peptidic bolaamphiphile assemblies reported in the literature. In this study, the self-assembly mechanism of these tyrosyl bolaamphiphiles was investigated taking into consideration the solvent effects on the molecular interaction forces using molecular modeling. The dissipative particle dynamics simulation of an aqueous

BiomaterialsMaterials Science
14
Article|15 citations·2018
Simple fabrication method of flexible carbon nanotube electrodes using inkjet and transfer printing methods for dopamine detection
Hyesung Lee, Sang‐Yup Lee
SJR Q1Journal of the Taiwan Institute of Chemical Engineers
Biomedical EngineeringEngineering
15
Article|15 citations·2016
An enzyme-coupled artificial photosynthesis system prepared from antenna protein-mimetic tyrosyl bolaamphiphile self-assembly
Jinyoung Kwak, Min Chul Kim, Sang‐Yup Lee
SJR Q1Nanoscale

An artificial photosynthesis system coupled with an enzyme was constructed using the nanospherical self-assembly of tyrosyl bolaamphiphiles, which worked as a host matrix exhibiting an antenna effect that allowed enhanced energy transfer to the ZnDPEG photosensitizer. The excited electrons from the photosensitizer were transferred to NAD+ to produce NADH, which subsequently initiated the conversion of an aldehyde to ethanol by alcohol dehydrogenase. Production of NADH and ethanol was enhanced by

BiomaterialsMaterials Science

Research Areas

Materials ChemistryBiomaterialsPolymers and PlasticsMolecular BiologyElectrical and Electronic EngineeringRenewable Energy, Sustainability and the Environment

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