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Materials Science

D-Index
59
Citations
14782
World Ranking
7292
National Ranking
301

Overview

Wan Ki Bae is affiliated with Sungkyunkwan University in South Korea and specializes in research areas within materials science and engineering. Their work spans multiple subfields, including materials chemistry, electrical and electronic engineering, atomic and molecular physics and optics, biomedical engineering, and electronic, optical, and magnetic materials.

The main topics covered in their research focus on the synthesis and properties of quantum dots, chalcogenide semiconductor thin films, semiconductor quantum structures and devices, perovskite materials and applications, nanocluster synthesis and applications, gold and silver nanoparticles synthesis and applications, as well as zinc oxide doping and properties.

Wan Ki Bae has contributed to numerous publications appearing in these frequent venues:

  • Advanced Materials
  • Nature Communications
  • Advanced Optical Materials
  • ACS Photonics
  • ACS Applied Materials & Interfaces

Frequent co-authors collaborating with Wan Ki Bae include:

  • Donghyo Hahm
  • Jeonghun Kwak
  • Jun Hyuk Chang
  • Doh C. Lee
  • Doyoon Shin

Representative recent publications feature the following works:

  • "Bright and Stable Quantum Dot Light-Emitting Diodes," 2021, Advanced Materials
  • "High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking," 2020, Nature Communications
  • "Direct patterning of colloidal quantum dots with adaptable dual-ligand surface," 2022, Nature Nanotechnology
  • "A Bioinspired Stretchable Sensory-Neuromorphic System," 2021, Advanced Materials
  • "Interface polarization in heterovalent core-shell nanocrystals," 2021, Nature Materials

Best Publications

  • Bright and Efficient Full-Color Colloidal Quantum Dot Light-Emitting Diodes Using an Inverted Device Structure

    Jeonghun Kwak;Wan Ki Bae;Donggu Lee;Insun Park

  • Spectroscopic and Device Aspects of Nanocrystal Quantum Dots

    Jeffrey M. Pietryga;Young Shin Park;Young Shin Park;Jaehoon Lim;Andrew F. Fidler

  • Controlling the influence of Auger recombination on the performance of quantum-dot light-emitting diodes

    Wan Ki Bae;Young Shin Park;Jaehoon Lim;Donggu Lee

  • Single-Step Synthesis of Quantum Dots with Chemical Composition Gradients

    Wan Ki Bae;Kookheon Char;Hyuck Hur;Seonghoon Lee

  • Controlled alloying of the core-shell interface in CdSe/CdS quantum dots for suppression of Auger recombination.

    Wan Ki Bae;Lazaro A. Padilha;Young Shin Park;Hunter McDaniel

  • Highly Efficient Cadmium-Free Quantum Dot Light-Emitting Diodes Enabled by the Direct Formation of Excitons within InP@ZnSeS Quantum Dots

    Jaehoon Lim;Myeongjin Park;Wan Ki Bae;Donggu Lee

  • Flexible supercapacitor electrodes based on real metal-like cellulose papers.

    Yongmin Ko;Minseong Kwon;Wan Ki Bae;Byeongyong Lee

  • InP@ZnSeS, Core@Composition Gradient Shell Quantum Dots with Enhanced Stability

    Jaehoon Lim;Wan Ki Bae;Donggu Lee;Min Ki Nam

  • Highly Efficient Green‐Light‐Emitting Diodes Based on CdSe@ZnS Quantum Dots with a Chemical‐Composition Gradient

    Wan Ki Bae;Jeonghun Kwak;Ji Won Park;Kookheon Char

  • Influence of Shell Thickness on the Performance of Light‐Emitting Devices Based on CdSe/Zn1‐XCdXS Core/Shell Heterostructured Quantum Dots

    Jaehoon Lim;Byeong Guk Jeong;Myeongjin Park;Jai Kyeong Kim

  • Auger Recombination of Biexcitons and Negative and Positive Trions in Individual Quantum Dots

    Young Shin Park;Wan Ki Bae;Wan Ki Bae;Jeffrey M. Pietryga;Victor I. Klimov

  • Multicolored Light-Emitting Diodes Based on All-Quantum-Dot Multilayer Films Using Layer-by-Layer Assembly Method

    Wan Ki Bae;Jeonghun Kwak;Jaehoon Lim;Donggu Lee

  • Highly effective surface passivation of PbSe quantum dots through reaction with molecular chlorine.

    Wan Ki Bae;Jin Joo;Lazaro A. Padilha;Jonghan Won

  • Bright and Stable Quantum Dot Light-Emitting Diodes

    Taesoo Lee;Byong Jae Kim;Hyunkoo Lee;Donghyo Hahm

  • Effect of the Core/Shell Interface on Auger Recombination Evaluated by Single-Quantum-Dot Spectroscopy

    Young Shin Park;Wan Ki Bae;Lazaro A. Padilha;Jeffrey M. Pietryga

  • High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking.

    Jeehye Yang;Donghyo Hahm;Kyunghwan Kim;Seunghyun Rhee

  • R/G/B/natural white light thin colloidal quantum dot-based light-emitting devices.

    Wan Ki Bae;Jaehoon Lim;Donggu Lee;Myeongjin Park

  • Effect of Auger Recombination on Lasing in Heterostructured Quantum Dots with Engineered Core/Shell Interfaces

    Young Shin Park;Wan Ki Bae;Thomas Baker;Jaehoon Lim

  • Direct patterning of colloidal quantum dots with adaptable dual-ligand surface

    Unknown

  • Gram-Scale One-Pot Synthesis of Highly Luminescent Blue Emitting Cd1-xZnxS/ZnS Nanocrystals

    Wan Ki Bae;Min Ki Nam;Kookheon Char;Seonghoon Lee

  • Carrier Multiplication in Semiconductor Nanocrystals: Influence of Size, Shape, and Composition

    Lazaro A. Padilha;John T. Stewart;Richard L. Sandberg;Wan Ki Bae

Frequent Co-Authors

Changhee Lee
Changhee Lee Seoul National University
Kookheon Char
Kookheon Char Seoul National University
Victor I. Klimov
Victor I. Klimov Los Alamos National Laboratory
Doh C. Lee
Doh C. Lee Korea Advanced Institute of Science and Technology
Jeffrey M. Pietryga
Jeffrey M. Pietryga Los Alamos National Laboratory
Sergio Brovelli
Sergio Brovelli University of Milano-Bicocca
Rudolf Zentel
Rudolf Zentel Johannes Gutenberg University of Mainz
Jinhan Cho
Jinhan Cho Korea University
Francesco Meinardi
Francesco Meinardi University of Milano-Bicocca
Steven T. Cundiff
Steven T. Cundiff University of Michigan–Ann Arbor

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