Sang Woo Han

Sang Woo Han

KAIST

H-index: 60

Asia-South Korea

About Sang Woo Han

Sang Woo Han, With an exceptional h-index of 60 and a recent h-index of 32 (since 2020), a distinguished researcher at KAIST, specializes in the field of nanochemistry.

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

Upconversion Material–Plasmonic Metal–Semiconductor Ternary Heteronanostructures for Wide-Range Solar-to-Chemical Energy Conversion

Suppressing Nanocrystal Growth with Cysteine: A Quenching Strategy for Monitoring the Evolution of Nanocrystals

Plasmonic Nanocrystal Assembly–Semiconductor Hybrids for Boosting Visible to Near-Infrared Photocatalysis

Directing Energy Flow in Core–Shell Nanostructures for Efficient Plasmon-Enhanced Electrocatalysis

Monitoring hydrogen transport through graphene by in situ surface-enhanced Raman spectroscopy

Metal–semiconductor–metal ternary heteronanocrystals with multiple plasmonic effects for efficient photocatalysis

Role of Surface Strain at Nanocrystalline Pt {110} Facets in Oxygen Reduction Catalysis

Direct strain correlations at the single-atom level in three-dimensional core-shell interface structures

Sang Woo Han Information

University

Position

___

Citations(all)

10923

Citations(since 2020)

3379

Cited By

9115

hIndex(all)

60

hIndex(since 2020)

32

i10Index(all)

153

i10Index(since 2020)

88

Email

University Profile Page

Google Scholar

Sang Woo Han Skills & Research Interests

nanochemistry

Top articles of Sang Woo Han

Upconversion Material–Plasmonic Metal–Semiconductor Ternary Heteronanostructures for Wide-Range Solar-to-Chemical Energy Conversion

ACS Applied Materials & Interfaces

2024/1/5

Suppressing Nanocrystal Growth with Cysteine: A Quenching Strategy for Monitoring the Evolution of Nanocrystals

Chemistry of Materials

2023/12/7

Hojin Ahn
Hojin Ahn

H-Index: 4

Sang Woo Han
Sang Woo Han

H-Index: 33

Plasmonic Nanocrystal Assembly–Semiconductor Hybrids for Boosting Visible to Near-Infrared Photocatalysis

ACS nano

2023/9/13

Jong Wook Hong
Jong Wook Hong

H-Index: 20

Sang Woo Han
Sang Woo Han

H-Index: 33

Directing Energy Flow in Core–Shell Nanostructures for Efficient Plasmon-Enhanced Electrocatalysis

Nano Letters

2023/2/21

Monitoring hydrogen transport through graphene by in situ surface-enhanced Raman spectroscopy

Nanoscale

2023

Jaesung Park
Jaesung Park

H-Index: 44

Sang Woo Han
Sang Woo Han

H-Index: 33

Metal–semiconductor–metal ternary heteronanocrystals with multiple plasmonic effects for efficient photocatalysis

Journal of Materials Chemistry A

2023

Role of Surface Strain at Nanocrystalline Pt {110} Facets in Oxygen Reduction Catalysis

Nano Letters

2022/11/9

Direct strain correlations at the single-atom level in three-dimensional core-shell interface structures

Nature Communications

2022/10/10

Surface Engineering of Palladium Nanocrystals: Decoupling the Activity of Different Surface Sites on Nanocrystal Catalysts

Angewandte Chemie International Edition

2022/6/7

Understanding the Grain Boundary Behavior of Bimetallic Platinum–Cobalt Alloy Nanowires toward Oxygen Electro-Reduction

ACS Catalysis

2022/3/3

Exploiting Plasmonic Hot Spots in Au-Based Nanostructures for Sensing and Photocatalysis

2022/2/25

Jong Wook Hong
Jong Wook Hong

H-Index: 20

Sang Woo Han
Sang Woo Han

H-Index: 33

Nanogap-tailored Au nanoparticles fabricated by pulsed laser ablation for surface-enhanced Raman scattering

Biosensors and Bioelectronics

2022/2/1

High-Throughput 3D Ensemble Characterization of Individual Core–Shell Nanoparticles with X-ray Free Electron Laser Single-Particle Imaging

ACS nano

2021/1/28

Pt Nanostructures Fabricated by Local Hydrothermal Synthesis for Low-Power Catalytic-Combustion Hydrogen Sensors

ACS Appl. Nano Mater.

2021/1/22

One-Pot Synthesis of Ternary Alloy Hollow Nanostructures with Controlled Morphologies for Electrocatalysis

ACS Applied Materials & Interfaces

2021/9/16

Ag‐CdS Yolk–Shell Heteronanostructures for Plasmon‐Enhanced Photocatalysis

Bulletin of the Korean Chemical Society

2021/5/1

Sang Woo Han
Sang Woo Han

H-Index: 33

Purification effect of carbon nanotube fibers on their surface modification to develop a high-performance and multifunctional nanocomposite fiber

Carbon

2021/3

Low-power thermocatalytic hydrogen sensor based on electrodeposited cauliflower-like nanostructured Pt black

Sensors and Actuators B: Chemical

2021/2/15

Core–Shell Bimetallic Nanoparticle Trimers for Efficient Light-to-Chemical Energy Conversion

ACS Energy Letters

2020/11/19

Electro-inductive effect: Electrodes as functional groups with tunable electronic properties

Science

2020/10/9

See List of Professors in Sang Woo Han University(KAIST)