Young-Shin Park

Young-Shin Park

University of New Mexico

H-index: 35

North America-United States

About Young-Shin Park

Young-Shin Park, With an exceptional h-index of 35 and a recent h-index of 29 (since 2020), a distinguished researcher at University of New Mexico, specializes in the field of Colloidal Quantum dots, Ultrafast spectroscopy, Single-particle spectroscopy, QD-lasers, QD-LEDs.

His recent articles reflect a diverse array of research interests and contributions to the field:

Growth Control of InP/ZnSe Heterostructured Nanocrystals

Coherent heteroepitaxial growth of I-III-VI2 Ag(In,Ga)S2 colloidal nanocrystals with near-unity quantum yield for use in luminescent solar concentrators

Electrically driven amplified spontaneous emission from colloidal quantum dots

Direct Assessment of Auger Recombination Rates of Charged Excitons via Opto-Electrical Measurements

Linearly polarized emission from CdSe/CdS core-in-rod nanostructures: Effects of core position

Polarized emission from unidirectionally oriented semiconductor nanorods in light-emitting devices

Optically Excited Lasing in a Cavity‐Based, High‐Current‐Density Quantum Dot Electroluminescent Device

Impact of Morphological Inhomogeneity on Excitonic States in Highly Mismatched Alloy ZnSe1–XTeX Nanocrystals

Young-Shin Park Information

University

Position

& Los Alamos National Lab

Citations(all)

7651

Citations(since 2020)

4642

Cited By

4968

hIndex(all)

35

hIndex(since 2020)

29

i10Index(all)

43

i10Index(since 2020)

39

Email

University Profile Page

Google Scholar

Young-Shin Park Skills & Research Interests

Colloidal Quantum dots

Ultrafast spectroscopy

Single-particle spectroscopy

QD-lasers

QD-LEDs

Top articles of Young-Shin Park

Growth Control of InP/ZnSe Heterostructured Nanocrystals

Advanced Materials

2024/2/1

Coherent heteroepitaxial growth of I-III-VI2 Ag(In,Ga)S2 colloidal nanocrystals with near-unity quantum yield for use in luminescent solar concentrators

Nature Communications

2023/6/24

Electrically driven amplified spontaneous emission from colloidal quantum dots

Nature

2023/5/4

Direct Assessment of Auger Recombination Rates of Charged Excitons via Opto-Electrical Measurements

ACS Photonics

2023/5/2

Young-Shin Park
Young-Shin Park

H-Index: 27

Linearly polarized emission from CdSe/CdS core-in-rod nanostructures: Effects of core position

The Journal of Chemical Physics

2023/4/7

Young-Shin Park
Young-Shin Park

H-Index: 27

Polarized emission from unidirectionally oriented semiconductor nanorods in light-emitting devices

Applied Surface Science

2023/3/30

Jongwook Kim
Jongwook Kim

H-Index: 12

Young-Shin Park
Young-Shin Park

H-Index: 27

Optically Excited Lasing in a Cavity‐Based, High‐Current‐Density Quantum Dot Electroluminescent Device

Advanced Materials

2023/3

Impact of Morphological Inhomogeneity on Excitonic States in Highly Mismatched Alloy ZnSe1–XTeX Nanocrystals

The Journal of Physical Chemistry Letters

2022/12/5

Pushing the emission envelope for full-color realization of colloidal semiconductor core/shell nanoplatelets

Chemistry of Materials

2022/10/12

Cadmium-free colloidal branched nanocrystals with optical anisotropy induced by symmetry breaking

The Journal of Physical Chemistry C

2022/9/30

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

Nature Nanotechnology

2022/9

Efficient, Selective CO2 Photoreduction Enabled by Facet-Resolved Redox-Active Sites on Colloidal CdS Nanosheets

Journal of the American Chemical Society

2022/8/25

Two-band optical gain and ultrabright electroluminescence from colloidal quantum dots at 1000 A cm−2

Nature Communications

2022/6/29

Young-Shin Park
Young-Shin Park

H-Index: 27

Jaehoon Lim
Jaehoon Lim

H-Index: 27

Light-Driven Ammonia Production by Azotobacter vinelandii Cultured in Medium Containing Colloidal Quantum Dots

Journal of the American Chemical Society

2022/5/30

Steering interface dipoles for bright and efficient all-inorganic quantum dot based light-emitting diodes

ACS nano

2021/12/6

Highly versatile near-infrared emitters based on an atomically defined HgS interlayer embedded into a CdSe/CdS quantum dot

Nature Nanotechnology

2021/6

Colloidal quantum dot lasers

2021/5

Young-Shin Park
Young-Shin Park

H-Index: 27

Jeongkyun Roh
Jeongkyun Roh

H-Index: 11

Optically pumped colloidal-quantum-dot lasing in LED-like devices with an integrated optical cavity

Nature communications

2020/1/14

See List of Professors in Young-Shin Park University(University of New Mexico)

Co-Authors

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