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Materials Science

D-Index
43
Citations
6700
World Ranking
12359
National Ranking
561

Overview

Ho Seong Jang is affiliated with the Korea Institute of Science and Technology in South Korea. Their research focuses primarily on materials science and engineering, contributing extensively to fields such as materials chemistry and electrical and electronic engineering. The scientist's work also intersects with polymers and plastics, biomedical engineering, and renewable energy, sustainability, and the environment.

Their publication record includes a strong presence in high-impact scientific journals. Frequent publication venues include SSRN Electronic Journal, Applied Surface Science, Advanced Functional Materials, Ceramics International, and ACS Applied Nano Materials.

Ho Seong Jang's research topics cover a range of advanced material systems and technologies. The main topics of their work involve:

  • Luminescence Properties of Advanced Materials
  • Gas Sensing Nanomaterials and Sensors
  • Transition Metal Oxide Nanomaterials
  • Perovskite Materials and Applications
  • Quantum Dots Synthesis And Properties
  • Luminescence and Fluorescent Materials
  • Advanced Photocatalysis Techniques

The scientist has collaborated frequently with several researchers, including Dong Hun Kim, Gumin Kang, A-Ra Hong, Seungyong Shin, and Hyungduk Ko.

Among recent publications are:

  • Orthogonal R/G/B Upconversion Luminescence-based Full-Color Tunable Upconversion Nanophosphors for Transparent Displays, 2021, published in Nano Letters
  • Elemental-Migration-Assisted Full-Color-Tunable Upconversion Nanoparticles for Video-Rate Three-Dimensional Volumetric Displays, 2023, published in Nano Letters
  • Enhancement of electrochromic response and cyclic durability of WO3 thin films by stacking Nb2O5 layers, 2022, published in Applied Surface Science
  • Photoswitchable Microgels for Dynamic Macrophage Modulation, 2022, published in Advanced Materials
  • Patterning All-Inorganic Halide Perovskite with Adjustable Phase for High-Resolution Color Filter and Photodetector Arrays, 2022, published in Advanced Functional Materials

The scientist's research has contributed knowledge across materials chemistry and engineering disciplines, advancing the understanding of luminescent materials, nanophosphors, and nanomaterial applications for sensing and display systems. Their interdisciplinary work spans chemical synthesis, nanomaterial design, and device engineering within the broader context of materials science and applied technology.

Best Publications

  • Enhancement of red spectral emission intensity of Y3Al5O12:Ce3+ phosphor via Pr co-doping and Tb substitution for the application to white LEDs

    Ho Seong Jang;Won Bin Im;Dong Chin Lee;Duk Young Jeon

  • White Light‐Emitting Diodes with Excellent Color Rendering Based on Organically Capped CdSe Quantum Dots and Sr3SiO5:Ce3+,Li+ Phosphors

    Ho Seong Jang;Heesun Yang;Sung Wook Kim;Ji Yeon Han

  • Highly Efficient Blue Emission and Superior Thermal Stability of BaAl12O19:Eu2+ Phosphors Based on Highly Symmetric Crystal Structure

    Yi Wei;Ling Cao;Lemin Lv;Guogang Li

  • Improvement of electroluminescent property of blue LED coated with highly luminescent yellow-emitting phosphors

    H. S. Jang;Y.-H. Won;D. Y. Jeon

  • Yellow-emitting Sr3SiO5:Ce3+,Li+ phosphor for white-light-emitting diodes and yellow-light-emitting diodes

    Ho Seong Jang;Duk Young Jeon

  • Luminescence Properties and Energy Transfer of Site-Sensitive Ca6−x−yMgx−z(PO4)4:Euy2+,Mnz2+ Phosphors and Their Application to Near-UV LED-Based White LEDs

    Ki Hyuk Kwon;Won Bin Im;Ho Seong Jang;Hyoung Sun Yoo

  • Rational morphology control of β-NaYF4:Yb,Er/Tm upconversion nanophosphors using a ligand, an additive, and lanthanide doping

    Hyejin Na;Kyoungja Woo;Kipil Lim;Ho Seong Jang

  • Effect of phosphor geometry on the luminous efficiency of high-power white light-emitting diodes with excellent color rendering property

    Yu-Ho Won;Ho Seong Jang;Kyoung Woo Cho;Yong Seon Song

  • Full visible light emission in Eu2+,Mn2+-doped Ca9LiY0.667(PO4)7 phosphors based on multiple crystal lattice substitution and energy transfer for warm white LEDs with high colour-rendering

    Min Cui;Jindi Wang;Mengmeng Shang;Jinhua Li

  • Orthogonal R/G/B Upconversion Luminescence-based Full-Color Tunable Upconversion Nanophosphors for Transparent Displays

    A-Ra Hong;Ji-Hoon Kyhm;Gumin Kang;Ho Seong Jang;Ho Seong Jang

  • Highly Bright Yellow-Green-Emitting CuInS2 Colloidal Quantum Dots with Core/Shell/Shell Architecture for White Light-Emitting Diodes

    Sang Hyun Park;Ara Hong;Ara Hong;Jong Hoon Kim;Heesun Yang

  • Highly Luminescent Lead Halide Perovskite Quantum Dots in Hierarchical CaF2 Matrices with Enhanced Stability as Phosphors for White Light‐Emitting Diodes

    Yi Wei;Yi Wei;Hui Xiao;Hui Xiao;Zhongxi Xie;Zhongxi Xie;Shuang Liang

  • Tunable full-color-emitting La0.827Al11.9O19.09:Eu2+,Mn2+ phosphor for application to warm white-light-emitting diodes

    Yu-Ho Won;Ho Seong Jang;Won Bin Im;Duk Young Jeon

  • Facile synthesis of thermally stable CsPbBr3 perovskite quantum dot-inorganic SiO2 composites and their application to white light-emitting diodes with wide color gamut

    Da Hye Park;Da Hye Park;Joon Soo Han;Woong Kim;Ho Seong Jang;Ho Seong Jang

  • Multicolor Tunable Upconversion Luminescence from Sensitized Seed-Mediated Grown LiGdF4:Yb,Tm-Based Core/Triple-Shell Nanophosphors for Transparent Displays

    Jeehae Shin;Jeehae Shin;Ji-Hoon Kyhm;Ji-Hoon Kyhm;A-Ra Hong;Jin Dong Song

  • Emission Band Change of ( Sr1 − xMx ) 3SiO5 : Eu2 + ( M = Ca , Ba ) Phosphor for White Light Sources Using Blue/Near-Ultraviolet LEDs

    Ho Seong Jang;Yu-Ho Won;Sivakumar Vaidyanathan;Dong Hyuk Kim

  • White light emission from blue and near ultraviolet light-emitting diodes precoated with a Sr3SiO5:Ce3+,Li+ phosphor.

    Ho Seong Jang;Duk Young Jeon

  • Yellow-emitting γ-Ca2SiO4:Ce3+, Li+ phosphor for solid-state lighting: luminescent properties, electronic structure, and white light-emitting diode application.

    Ho Seong Jang;Hyun You Kim;Yang-Soo Kim;Hyuck Mo Lee

  • Plasmonic Nanowire-Enhanced Upconversion Luminescence for Anticounterfeit Devices

    Kisun Park;Kisun Park;Kinam Jung;Seok Joon Kwon;Ho Seong Jang

  • Simultaneous enhancement of upconversion and downshifting luminescence via plasmonic structure.

    Kyu Tae Lee;Kyu Tae Lee;Jong Hyun Park;Jong Hyun Park;S. Joon Kwon;Hyun Keun Kwon;Hyun Keun Kwon

Frequent Co-Authors

Duk Young Jeon
Duk Young Jeon Korea Advanced Institute of Science and Technology
Heesun Yang
Heesun Yang Hongik University
Jun Lin
Jun Lin Chinese Academy of Sciences
Kwangyeol Lee
Kwangyeol Lee Korea University
Won Bin Im
Won Bin Im Hanyang University
Lia Stanciu
Lia Stanciu Purdue University West Lafayette
Byeong Kwon Ju
Byeong Kwon Ju Korea University
Xiaoming Liu
Xiaoming Liu University of North Carolina at Chapel Hill
K. Andre Mkhoyan
K. Andre Mkhoyan University of Minnesota
Hyun You Kim
Hyun You Kim Chungnam National University

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