D-Index & Metrics Best Publications
Electronics and Electrical Engineering
South Korea
2022

D-Index & Metrics

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Electronics and Electrical Engineering D-index 59 Citations 13,702 250 World Ranking 614 National Ranking 8
Materials Science D-index 67 Citations 17,587 350 World Ranking 2184 National Ranking 64

Research.com Recognitions

Awards & Achievements

2022 - Research.com Electronics and Electrical Engineering in South Korea Leader Award

Overview

What is he best known for?

The fields of study he is best known for:

  • Semiconductor
  • Optoelectronics
  • Organic chemistry

His primary scientific interests are in Optoelectronics, Light-emitting diode, Diode, Photoluminescence and Wide-bandgap semiconductor. The Optoelectronics study combines topics in areas such as Ohmic contact and Annealing. His studies in Light-emitting diode integrate themes in fields like Semiconductor, Electroluminescence, Band gap and Surface plasmon.

Seong-Ju Park combines subjects such as Gallium nitride, Optics, Exciton and Quantum well, Multiple quantum with his study of Diode. His research in Photoluminescence intersects with topics in Thin film, Sputtering, Transmission electron microscopy and Hydrogen. His Wide-bandgap semiconductor study integrates concerns from other disciplines, such as Heterojunction, Layer, Current, Gate dielectric and Gate oxide.

His most cited work include:

  • Realization of p-type ZnO thin films via phosphorus doping and thermal activation of the dopant (560 citations)
  • UV electroluminescence emission from ZnO light-emitting diodes grown by high-temperature radiofrequency sputtering (548 citations)
  • Quantum Confinement in Amorphous Silicon Quantum Dots Embedded in Silicon Nitride (453 citations)

What are the main themes of his work throughout his whole career to date?

His primary areas of study are Optoelectronics, Light-emitting diode, Diode, Analytical chemistry and Photoluminescence. His work deals with themes such as Layer, Electroluminescence and Optics, which intersect with Optoelectronics. He interconnects Gallium nitride, Surface plasmon, Photonic crystal, Multiple quantum and Quantum efficiency in the investigation of issues within Light-emitting diode.

His Analytical chemistry study incorporates themes from Chemical vapor deposition, Doping, Annealing, Ohmic contact and Contact resistance. While the research belongs to areas of Photoluminescence, he spends his time largely on the problem of Thin film, intersecting his research to questions surrounding Sapphire. His Quantum dot research includes themes of Silicon nitride, Silicon and Amorphous silicon.

He most often published in these fields:

  • Optoelectronics (64.43%)
  • Light-emitting diode (32.21%)
  • Diode (22.82%)

What were the highlights of his more recent work (between 2012-2021)?

  • Optoelectronics (64.43%)
  • Light-emitting diode (32.21%)
  • Layer (17.90%)

In recent papers he was focusing on the following fields of study:

Seong-Ju Park mainly investigates Optoelectronics, Light-emitting diode, Layer, Diode and Optics. Surface plasmon is closely connected to Indium tin oxide in his research, which is encompassed under the umbrella topic of Optoelectronics. His study in Light-emitting diode is interdisciplinary in nature, drawing from both Nanoparticle, Nanotechnology, Electroluminescence, Photonic crystal and Localized surface plasmon.

His Diode research is multidisciplinary, incorporating perspectives in Total internal reflection, Luminous efficacy, Sapphire, Laser and Nanoporous. Seong-Ju Park has researched Optics in several fields, including Chemical vapor deposition, Active layer and Epitaxy. The concepts of his Photoluminescence study are interwoven with issues in Quantum dot and Spontaneous emission.

Between 2012 and 2021, his most popular works were:

  • Localized surface plasmon-enhanced near-ultraviolet emission from InGaN/GaN light-emitting diodes using silver and platinum nanoparticles. (37 citations)
  • Localized surface plasmon-enhanced green quantum dot light-emitting diodes using gold nanoparticles (33 citations)
  • Laser lift-off transfer printing of patterned GaN light-emitting diodes from sapphire to flexible substrates using a Cr/Au laser blocking layer (26 citations)

In his most recent research, the most cited papers focused on:

  • Semiconductor
  • Organic chemistry
  • Oxygen

His primary areas of investigation include Optoelectronics, Light-emitting diode, Diode, Optics and Nanowire. His Optoelectronics research focuses on Photoluminescence and Wide-bandgap semiconductor. The study incorporates disciplines such as Quantum efficiency and Localized surface plasmon in addition to Photoluminescence.

His Wide-bandgap semiconductor research focuses on Graphene and how it connects with Doping, Thin film, Annealing, Quantum tunnelling and Barrier layer. The various areas that he examines in his Light-emitting diode study include Depletion region, Electroluminescence, Quantum well, Nanorod and Ultraviolet. His research integrates issues of Total internal reflection, Layer, Sapphire, Laser and Transfer printing in his study of Diode.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Realization of p-type ZnO thin films via phosphorus doping and thermal activation of the dopant

Kyoung-Kook Kim;Hyun-Sik Kim;Dae-Kue Hwang;Jae-Hong Lim.
Applied Physics Letters (2003)

757 Citations

UV electroluminescence emission from ZnO light-emitting diodes grown by high-temperature radiofrequency sputtering

Jae-Hong Lim;Chang-Ku Kang;Kyoung-Kook Kim;Kyoung-Kook Kim;Il-Kyu Park.
Advanced Materials (2006)

730 Citations

Quantum Confinement in Amorphous Silicon Quantum Dots Embedded in Silicon Nitride

Nae Man Park;Chel Jong Choi;Tae Yeon Seong;Seong Ju Park.
Physical Review Letters (2001)

635 Citations

The Future Of ZnO Light Emitters

David C. Look;David C. Look;Bruce Claflin;Bruce Claflin;Y. I. Alivov;Seong-Ju Park.
Physica Status Solidi (a) (2004)

591 Citations

Surface-Plasmon-Enhanced Light-Emitting Diodes†

Min Ki Kwon;Ja Yeon Kim;Baek Hyun Kim;Il Kyu Park.
Advanced Materials (2008)

521 Citations

Band gap engineering of amorphous silicon quantum dots for light-emitting diodes

Nae-Man Park;Tae-Soo Kim;Seong-Ju Park.
Applied Physics Letters (2001)

498 Citations

Improved light-output and electrical performance of InGaN-based light-emitting diode by microroughening of the p-GaN surface

Chul Huh;Kug-Seung Lee;Eun-Jeong Kang;Seong-Ju Park.
Journal of Applied Physics (2003)

475 Citations

p-ZnO/n-GaN heterostructure ZnO light-emitting diodes

Dae-Kue Hwang;Soon-Hyung Kang;Jae-Hong Lim;Eun-Jeong Yang.
Applied Physics Letters (2005)

461 Citations

Recent Advances in ZnO-Based Light-Emitting Diodes

Yong-Seok Choi;Jang-Won Kang;Dae-Kue Hwang;Seong-Ju Park.
IEEE Transactions on Electron Devices (2010)

376 Citations

Quantum confinement effect in crystalline silicon quantum dots in silicon nitride grown using SiH4 and NH3

Tae Wook Kim;Chang Hee Cho;Baek Hyun Kim;Seong Ju Park.
Applied Physics Letters (2006)

333 Citations

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