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Hyerim Hwang

Ewha Womans University · 物理学・天文学

研究室紹介

Professor Hyerim Hwang's research lab specializes in the design and fabrication of functional micro- and nano-materials using advanced microfluidic and self-assembly techniques. The lab focuses on creating photonic crystals, hierarchical microstructures, and colloidal superstructures with precise control over morphology, optical properties, and surface functionality. Key research directions include the development of durable, patternable structural color materials for sensing and display applications, as well as the creation of SERS-active microspheres for molecular detection.

photonic crystalsmicrofluidicsstructural colorcolloidal assemblySERS substrates

Research Overview

Papers
49
Total Citations
1,218
Papers (5y)
23
Primary Field
物理学・天文学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
23total
2020
2022
2023
2024
2025
Citations per year (5y)
273total
20202022202320242025

Selected Papers

15
1
Article|391 citations·2013
Colloidal Photonic Crystals toward Structural Color Palettes for Security Materials
Hye Soo Lee, Tae Soup Shim, Hyerim Hwang, Seung‐Man Yang, Shin‐Hyun Kim
SJR Q1Chemistry of MaterialsOA

High Resolution Image Download MS PowerPoint Slide Self-assembly of monodisperse colloidal particles into regular lattices has provided relatively simple and economical methods to prepare photonic crystals. The photonic stop band of colloidal crystals appears as opalescent structural colors, which are potentially useful for display devices, colorimetric sensors, and optical filters. However, colloidal crystals have low durability, and an undesired scattering of light makes the structures white a

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|151 citations·2014
Controlled Pixelation of Inverse Opaline Structures Towards Reflection‐Mode Displays
Su Yeon Lee, Shin‐Hyun Kim, Hyerim Hwang, Jae Young Sim, Seung‐Man Yang
SJR Q1Advanced Materials

Pixelated inverse opals with red, green, and blue colors were prepared by hybridizing convective assembly of colloidal particles and photolithography techniques. The brilliant structural colors, high mechanical stability, and small feature size of the pixels were simultaneously accomplished, thereby providing color reflectors potentially useful for display devices. Moreover, this hybridized method provides a general means to create multi-colored photonic crystals.

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|81 citations·2019
Photonic Microcapsules Containing Single‐Crystal Colloidal Arrays with Optical Anisotropy
Tae Min Choi, Gun Ho Lee, Young Seok Kim, Jin Gyu Park, Hyerim Hwang, Shin‐Hyun Kim
SJR Q1Advanced Materials

Colloidal particles with a repulsive interparticle potential spontaneously form crystalline lattices, which are used as a motif for photonic materials. It is difficult to predict the crystal arrangement in spherical volume as lattices are incompatible with a spherical surface. Here, the optimum arrangement of charged colloids is experimentally investigated by encapsulating them in double-emulsion drops. Under conditions of strong interparticle repulsion, the colloidal crystal rapidly grows from

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|73 citations·2010
Microfluidic fabrication of SERS-active microspheres for molecular detection
Hyerim Hwang, Shin‐Hyun Kim, Seung‐Man Yang
SJR Q1Lab on a Chip

In this paper, we demonstrated a microfluidic system for fabricating microspheres with hierarchical surface nanopatterns for molecular detection based on surface-enhanced Raman scattering (SERS). Briefly, a photocurable silica suspension was emulsified into monodisperse droplets using a microfluidic device composed of two coaxial glass capillaries. The silica particles in each droplet protruded through the interface and spontaneously formed a hexagonal array. After polymerization of the droplets

Electronic, Optical and Magnetic MaterialsMaterials Science
5
Article|68 citations·2011
Packing of Emulsion Droplets: Structural and Functional Motifs for Multi‐Cored Microcapsules
Shin‐Hyun Kim, Hyerim Hwang, Che Ho Lim, Jae Won Shim, Seung‐Man Yang
SJR Q1Advanced Functional MaterialsOA

Abstract Advances in microfluidic emulsification have enabled the creation of multiphase emulsion drops, which have emerged as promising templates for producing functional microcapsules. However, most previous micro‐encapsulation methods have limitations in terms of capsule stability, functionality, and simplicity of fabrication procedures. Here, we report a simple single‐step encapsulation technique that uses an optofluidic platform to efficiently and precisely encapsulate a specific number of

Materials ChemistryMaterials Science
6
Review|49 citations·2022
Advances in Colloidal Building Blocks: Toward Patchy Colloidal Clusters
Youjin Kim, Jeong‐Bin Moon, Hyerim Hwang, Youn Soo Kim, Gi‐Ra Yi
SJR Q1Advanced MaterialsOA

The scalable synthetic route to colloidal atoms has significantly advanced over the past two decades. Recently, colloidal clusters with DNA-coated cores called "patchy colloidal clusters" have been developed, providing a directional bonding with specific angle of rotation due to the shape complementarity between colloidal clusters. Through a DNA-mediated interlocking process, they are directly assembled into low-coordination colloidal structures, such as cubic diamond lattices. Herein, the signi

Materials ChemistryMaterials Science
7
Article|42 citations·2019
Direct observation of crystallization and melting with colloids
Hyerim Hwang, David A. Weitz, F. Spaepen
SJR Q1Proceedings of the National Academy of SciencesOA

We study the kinetics of crystal growth and melting of two types of colloidal crystals: body-centered cubic (BCC) crystals and face-centered cubic (FCC) crystals. A dielectrophoretic "electric bottle" confines colloids, enabling precise control of the motion of the interface. We track the particle motion, and by introducing a structural order parameter, we measure the jump frequencies of particles to and from the crystal and determine from these the free-energy difference between the phases and

Materials ChemistryMaterials Science
8
Article|40 citations·2020
Colloidal assembly in droplets: structures and optical properties
Sanghyuk Park, Hyerim Hwang, Minjung Kim, Jun Hyuk Moon, Shin‐Hyun Kim
SJR Q1Nanoscale

)). For each size of clusters, we discuss the detailed structures, mechanisms of cluster formation, and optical properties and potential applications. Finally, we outline current challenges and questions that require further investigation.

Materials ChemistryMaterials Science
9
Article|40 citations·2020
Controlled Assembly of Icosahedral Colloidal Clusters for Structural Coloration
Cheol‐Ho Kim, Kinam Jung, Ji Woong Yu, Sanghyuk Park, Shin‐Hyun Kim, Won Bo Lee, Hyerim Hwang, Vinothan Manoharan, Jun Hyuk Moon
SJR Q1Chemistry of Materials

Icosahedral colloidal clusters are a new class of spherical colloidal crystals. This cluster allows for potentially superior optical properties in comparison to conventional onion-like colloidal supraballs because of the quasi-crystal structure. However, the characterization of the cluster as an optical material has until now not been achieved. Here we successfully produce icosahedral clusters by assembling silica particles using bulk water-in-oil emulsion droplets and systematically characteriz

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|35 citations·2011
Robust Chirped Photonic Crystals Created by Controlled Colloidal Diffusion
Shin‐Hyun Kim, Woong Chan Jeong, Hyerim Hwang, Seung‐Man Yang
SJR Q1Angewandte Chemie International Edition

An on-chip spectrometer: Chirped 3D photonic crystals have been created using colloidal particle diffusion in a photocurable medium. The variations in the lattice constant created a color gradient that spanned the entire visible range. By combining the functionality of chirped photonic crystals with a complementary metal-oxide-semiconductor sensor array, a miniaturized spectrometer system is developed (see picture).

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|33 citations·2020
Hydration breaking and chemical ordering in a levitated NaCl solution droplet beyond the metastable zone width limit: evidence for the early stage of two-step nucleation
Hyerim Hwang, Yong Chan Cho, Sooheyong Lee, Yun-Hee Lee, Seongheun Kim, Yong-Jae Kim, Wonhyuk Jo, Patrick Duchstein, Dirk Zahn, Geun Woo Lee
SJR Q1Chemical ScienceOA

= 2.31). As supersaturation increases, evolution of ion clusters leads to chemical ordering, but no topological ordering, which is a precursor for forming the dense disordered regions of ion clusters at the early stage of TSN. Moreover, as the ion clusters proceed to evolve under highly supersaturated conditions, we observe the breakage of the water hydration structure indicating the stability limit of the dense liquid regions, and thus leading to nucleation. The evolution of solute clusters and

Atmospheric ScienceEarth and Planetary Sciences
12
Article|24 citations·2023
Auxetic Photonic Patterns with Ultrasensitive Mechanochromism
Hwan‐Young Lee, Minbon Gu, Jeonghee Hwang, Hyerim Hwang, Young‐Seok Kim, Su Yeon Lee, Shin‐Hyun Kim
SJR Q1Advanced ScienceOA

Photonic crystals with mechanochromic properties are currently under intensive study to provide intuitive colorimetric detection of strains for various applications. However, the sensitivity of color change to strain is intrinsically limited, as the degree of deformation determines the wavelength shift. To overcome this limitation, auxetic photonic patterns that exhibit ultra-sensitive mechanochromism are designed. These patterns have a regular arrangement of cuts that expand to accommodate the

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|22 citations·2012
Fabrication of Robust Optical Fibers by Controlling Film Drainage of Colloids in Capillaries
Shin‐Hyun Kim, Hyerim Hwang, Seung‐Man Yang
SJR Q1Angewandte Chemie International Edition

Photonic crystal fibers have been created using the spontaneous crystallization of colloidal particles in a photocurable resin coated on the inner wall of microcapillaries. The controlled deposition of films on the microcapillaries allows the thickness and number of layers in the photonic crystal fibers to be controlled. A stop band in a colloidal photonic crystal fiber can enhance the efficiency of light guidance (see picture). Detailed facts of importance to specialist readers are published as

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|17 citations·2020
Real‐Time Monitoring of Colloidal Crystallization in Electrostatically‐Levitated Drops
Hyerim Hwang, Yong Chan Cho, Sooheyong Lee, Tae Min Choi, Shin‐Hyun Kim, Geun Woo Lee
SJR Q1Small

Colloidal crystallization is analogous to the crystallization in bulk atomic systems in various aspects, which has been explored as a model system. However, a real-time probing of the phenomenon still remains challenging. Here, a levitation system for a study of colloidal crystallization is demonstrated. Colloidal particles in a levitated droplet are gradually concentrated by isotropic evaporation of water from the surface of the droplet, resulting in crystallization. The structural change of th

Electrical and Electronic EngineeringEngineering
15
Article|8 citations·2006
Molecular dynamics study of carbon nanotube oscillator on gold surface
Jeong Won Kang, Oh-Keun Kwon, J. H. Lee, Qing Jiang, Hyerim Hwang
SJR Q3Molecular Simulation

We investigated the substrate effect of carbon nanotube (CNT) oscillators using classical molecular dynamics simulations. Double-walled CNT oscillators on {100} gold surface were considered. The nanotube–gold interactions induced the compressive deformations of the outer nanotube and affected the transitional velocity and the energy dissipation of the nanotube oscillator. When the inner nanotube was extruded from the outer nanotube, the central regions of the outer nanotube were compressed by th

Materials ChemistryMaterials Science

Research Areas

Atomic and Molecular Physics, and OpticsMaterials ChemistryBiomedical EngineeringElectronic, Optical and Magnetic MaterialsElectrical and Electronic EngineeringAtmospheric Science

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