Skip to main content

Nuri Oh

Hanyang University · 材料科学

研究室紹介

Professor Nuri Oh's research lab specializes in the design, synthesis, and application of advanced nanomaterials, with a focus on colloidal semiconductor nanocrystals and gold nanoparticles for optoelectronic and biomedical applications. The lab explores fundamental mechanisms governing nanoparticle behavior in biological systems, including macrophage clearance and exocytosis, to enable safer and more effective nanotherapeutics. Key research directions include the development of dual-functioning nanodevices for energy and information transfer, robust solution-processed nanomaterials for scalable optoelectronics, and bio-inspired nanoparticle architectures for targeted cancer therapy and in vivo clearance. The lab integrates materials chemistry, nanophotonics, and biointerface science to create next-generation functional nanomaterials.

nanomaterialsoptoelectronicsbiomedical nanotechnologyquantum dotsnanoparticle trafficking

Research Overview

Papers
102
Total Citations
4,052
Papers (5y)
45
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
45total
2022
2023
2024
2025
2026
Citations per year (5y)
551total
20222023202420252026

Selected Papers

15
1
Article|255 citations·2017
Double-heterojunction nanorod light-responsive LEDs for display applications
Nuri Oh, Bong Hoon Kim, Seong‐Yong Cho, Sooji Nam, Steven P. Rogers, Yiran Jiang, Joseph C. Flanagan, You Zhai, Jae-Hwan Kim, Jungyup Lee, Yongjoon Yu, Youn Kyoung Cho
SJR Q1Science

Dual-functioning displays, which can simultaneously transmit and receive information and energy through visible light, would enable enhanced user interfaces and device-to-device interactivity. We demonstrate that double heterojunctions designed into colloidal semiconductor nanorods allow both efficient photocurrent generation through a photovoltaic response and electroluminescence within a single device. These dual-functioning, all-solution-processed double-heterojunction nanorod light-responsiv

Materials ChemistryMaterials Science
2
Article|170 citations·2014
Surface Chemistry of Gold Nanoparticles Mediates Their Exocytosis in Macrophages
Nuri Oh, Ji‐Ho Park
SJR Q1ACS Nano

Significant quantities of synthetic nanoparticles circulating in the body are cleared and retained for long periods of time in the resident macrophages of the mononuclear phagocytic system (MPS), increasing the likelihood of nanoparticle-mediated chronic toxicity. To date, there has been limited effort to understand how these nanoparticles leave the macrophages. Here, we demonstrate that the native surface chemistries of gold nanoparticles (GNPs) and their subsequent opsonization by serum protei

Materials ChemistryMaterials Science
3
Article|92 citations·2014
Double-heterojunction nanorods
Nuri Oh, Sooji Nam, You Zhai, Kishori Deshpande, Pete Trefonas, Moonsub Shim
SJR Q1Nature CommunicationsOA
Materials ChemistryMaterials Science
4
Article|48 citations·2016
Metal Oleate Induced Etching and Growth of Semiconductor Nanocrystals, Nanorods, and Their Heterostructures
Nuri Oh, Moonsub Shim
SJR Q1Journal of the American Chemical Society

Unexpected etching of nanocrystals, nanorods, and their heterostructures by one of the most commonly used metal precursors, metal oleates, is reported. Zn oleate is shown to etch CdS nanorods anisotropically, where the length decreases without a significant change in the diameter. Sodium oleate enhances the etch rate, whereas oleic acid alone does not cause etching, indicating the importance of the countercation on the rate of oleate induced etching. Subsequent addition of Se precursors to the p

Materials ChemistryMaterials Science
5
Article|44 citations·2023
Ligand‐Crosslinking Strategy for Efficient Quantum Dot Light‐Emitting Diodes via Thiol‐Ene Click Chemistry
Seungki Shin, Kang Kyungwan, Hyunwoo Jang, Namyoung Gwak, Seongchan Kim, Tae Ann Kim, Nuri Oh
SJR Q1Small MethodsOA

While solution-processable colloidal quantum dots (QDs) offer cost-effective and large-scale manufacturing, they can be susceptible to subsequent solution processes, making continuous processing challenging. To enable complex and integrated device architectures, robust QD films with subsequent patterning are necessary. Here, we report a facile ligand-crosslinking strategy based on thiol-ene click chemistry. Thiol molecules added to QD films react with UV light to form radicals that crosslink wit

Materials ChemistryMaterials Science
6
Article|30 citations·2018
Macrophage-Mediated Exocytosis of Elongated Nanoparticles Improves Hepatic Excretion and Cancer Phototherapy
Nuri Oh, YongJoo Kim, Hee‐Seok Kweon, Wang‐Yuhl Oh, Ji‐Ho Park
SJR Q1ACS Applied Materials & Interfaces

The introduction of nanoparticle-mediated delivery and therapy has revolutionized cancer treatment approaches. However, there has been limited success in clinical trials because current approaches have not simultaneously satisfied therapeutic efficacy and biosafety criteria to an adequate degree. Here, we employ efficient macrophage-mediated exocytosis of elongated nanoparticles to facilitate their localization in tumor cells for cancer therapy and their transport to hepatocytes for hepatobiliar

BiomaterialsMaterials Science
7
Article|24 citations·2008
Self‐Assembly of Silver Nanoparticles Synthesized by using a Liquid‐Crystalline Phospholipid Membrane
Nuri Oh, Jung Hwan Kim, Chong Seung Yoon
SJR Q1Advanced Materials

Self-assembled monolayers of Ag nano particles 7 nm in size, encapsulated by lipid molecules, are fabricated by using a solid-supported liquid-crystalline lipid membrane. By dissolving and reassembling these lipid-encapsulated Ag nanoparticles, various superstructures ranging from 2D planar superlattices and multistacked 3D superlattices to honeycomb-like structure are produced by varying the lipid concentration, temperature, and solvent. Detailed facts of importance to specialist readers are pu

Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|24 citations·2023
Chemically and electronically active metal ions on InAs quantum dots for infrared detectors
Seongchan Kim, Sooyeon Yeon, Minwoo Lee, Junyoung Jin, Seungki Shin, Namyoung Gwak, Inyoung Jeong, Hyunwoo Jang, Gyu Weon Hwang, Nuri Oh
SJR Q1NPG Asia MaterialsOA

Abstract Colloidal InAs quantum dots (QDs) are emerging candidates for NIR-SWIR optoelectronic applications because of their excellent electrical and optical properties. However, the syntheses of InAs QDs, which demand strongly reducing atmospheres or highly reactive precursors, are difficult because of their highly covalent bonding and lack of Group 15 precursors. While the coreduction method with commercially available arsenic precursors enables facile syntheses of InAs QDs, it results in broa

Materials ChemistryMaterials Science
9
Article|23 citations·2022
Light-induced crosslinking of perovskite nanocrystals for all-solution-processed electroluminescent devices
Seungki Shin, Yoonkyu Kim, Namyoung Gwak, Inyoung Jeong, Minwoo Lee, Kyungwan Kang, Sooyeon Yeon, Seongchan Kim, Tae Ann Kim, Nuri Oh
SJR Q1Applied Surface Science
Electrical and Electronic EngineeringEngineering
10
Article|21 citations·2024
Highly Luminescent Shell‐Less Indium Phosphide Quantum Dots Enabled by Atomistically Tailored Surface States
Namyoung Gwak, Seungki Shin, Hyeri Yoo, Gyeong Won Seo, Seongchan Kim, Seongchan Kim, Hyunwoo Jang, Minwoo Lee, Tae Hwan Park, Byong Jae Kim, Jaehoon Lim, Soo Young Kim
SJR Q1Advanced MaterialsOA

Contrary to the prevailing notion that shell structures arise from the intricate chemistry and surface defects of InP quantum dots (QDs), an innovative strategy that remarkably enhances the luminescence efficiency of core-only InP QDs to over 90% is introduced. This paradigm shift is achieved through the concurrent utilization of group 2 and 3 metal-derived ligands, providing an effective remedy for surface defects and facilitating charge recombination. Specifically, a combination of Zn carboxyl

Materials ChemistryMaterials Science
11
Article|17 citations·2019
Synthesis of colorless and highly refractive Poly(phenylene thioether ether) derived from 2,7-(4,4′-diphenol)thiothianthrene
Nuri Oh, Ki‐Ho Nam, Munju Goh, Bon‐Cheol Ku, Jeung Gon Kim, Nam‐Ho You
SJR Q1Polymer
Polymers and PlasticsMaterials Science
12
Article|17 citations·2009
Reversible Size‐Tuning of Self‐Assembled Silver Nanoparticles in Phospholipid Membranes via Humidity Control
Nuri Oh, Jung Hoon Kim, Sungho Jin, Chong Seung Yoon
SJR Q1Small

A monolayer of 5-nm-sized Ag nanoparticles embedded in a liquid-crystalline lipid membrane undergoes a reversible morphological change during hydration and dehydration of the lipid membrane. High mobility of the encapsulating lipid molecules, chemically bound to the Ag atoms, induces redistribution of metal particles to produce significant and optically detectable changes in nanoparticle morphology. The morphological change occurs on a time scale that enables the Ag-nanoparticle-embedded membran

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|16 citations·2019
CuGaS2–CuInE2 (E = S, Se) Colloidal Nanorod Heterostructures
Nuri Oh, Logan P. Keating, Gryphon A. Drake, Moonsub Shim
SJR Q1Chemistry of Materials

Colloidal nanorod heterostructures of I–III–VI2 semiconductors have been synthesized in a solution starting from wurtzite-like CuGaS2 nanorods. Growth of CuInS2 or CuInSe2 on CuGaS2 nanorods results in interesting sawtooth structures with larger lattice strain leading to sharper, more pronounced teeth. A final inorganic shell of ZnSe or ZnS grown on the CuGaS2/CuInSe2 nanorod heterostructures enhances photoluminescence. Unusual brush-like structures arise with prolonged ZnSe growth. Time-resolve

Materials ChemistryMaterials Science
14
Article|16 citations·2025
Ring‐Opening Polymerization of Surface Ligands Enables Versatile Optical Patterning and Form Factor Flexibility in Quantum Dot Assemblies
Yunseo Lee, Jiyun Shin, Seungki Shin, Eun A Kim, Joon Yup Lee, Joon Yup Lee, Namyoung Gwak, S. I. Kim, Jaeyoung Seo, Hyein Kong, Dongjoon Yeo, Jin-Yong Na
SJR Q1Advanced MaterialsOA

The evolution of display technologies is rapidly transitioning from traditional screens to advanced augmented reality (AR)/virtual reality (VR) and wearable devices, where quantum dots (QDs) serve as crucial pure-color emitters. While solution processing efficiently forms QD solids, challenges emerge in subsequent stages, such as layer deposition, etching, and solvent immersion. These issues become especially pronounced when developing diverse form factors, necessitating innovative patterning me

Materials ChemistryMaterials Science
15
Article|15 citations·2025
Infrared‐Triggered Retinomorphic Artificial Synapse Electronic Device Containing Multi‐Dimensional van der Waals Heterojunctions
Soobin Shim, S. I. Kim, Donghyun Lee, Hyeongtae Kim, Mi Ji Kwon, Su‐yeon Cho, Windy Ayu Lestari, Jaeyoung Seo, Dongjoon Yeo, Jin-Yong Na, Somnath S. Kundale, Nuri Oh
SJR Q1SmallOA

Biological systems excel in image recognition with low power and fast responses. Inspired by the human eye, researchers have developed solid-state artificial visual systems. In this study, a retinomorphic artificial synapse device based on a tungsten diselenide (WSe2)/indium arsenide quantum dot (InAs QD) heterostructure is developed. This device exhibits enhanced short-wavelength infrared (SWIR) responsivity at 1060 nm, which is a synaptic behavior analogous to the human retina. The WSe2/InAs Q

Biomedical EngineeringEngineering

Research Areas

Materials ChemistryElectrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentBiomaterialsMechanical EngineeringAtomic and Molecular Physics, and Optics

Nuri Ohの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。