Ja Hun Kwak

About Ja Hun Kwak

Ja Hun Kwak, With an exceptional h-index of 65 and a recent h-index of 43 (since 2020), a distinguished researcher at Ulsan National Institute of Science and Technology, specializes in the field of catalysis, heterogeneous catalysis, environmental catalysis.

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

Structural complexity of γ-Al2O3: The nature of vacancy ordering and the structure of complex antiphase boundaries

Selective Light Hydrocarbon Production from CO2 Hydrogenation over Na/ZnFe2O4 and CHA-Zeolite Hybrid Catalysts

Controlling the phase transformation of alumina for enhanced stability and catalytic properties

Hydrothermally and thermally stable catalytic materials based on theta-alumina

Catalytic behavior of Pt single-atoms supported on CeO2

Promotional effect of Mn on Pt/Al2O3 catalysts in HC, CO, and NOx oxidation for controlling diesel emission

A versatile hybrid catalyst platform of Na/ZnFe2O4 and zeolite for selective hydrocarbon production from CO2 hydrogenation

Resolving the structural complexity of gamma-Al2O3: the nature of vacancy ordering and the structure of complex antiphase boundaries

Ja Hun Kwak Information

University

Position

___

Citations(all)

17417

Citations(since 2020)

7278

Cited By

14353

hIndex(all)

65

hIndex(since 2020)

43

i10Index(all)

162

i10Index(since 2020)

108

Email

University Profile Page

Google Scholar

Ja Hun Kwak Skills & Research Interests

catalysis

heterogeneous catalysis

environmental catalysis

Top articles of Ja Hun Kwak

Structural complexity of γ-Al2O3: The nature of vacancy ordering and the structure of complex antiphase boundaries

Acta Materialia

2024/3/1

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

János Szanyi
János Szanyi

H-Index: 5

Selective Light Hydrocarbon Production from CO2 Hydrogenation over Na/ZnFe2O4 and CHA-Zeolite Hybrid Catalysts

ACS Catalysis

2024/2/20

Controlling the phase transformation of alumina for enhanced stability and catalytic properties

Angewandte Chemie International Edition

2024/2/1

Haneul Kim
Haneul Kim

H-Index: 1

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Hydrothermally and thermally stable catalytic materials based on theta-alumina

2024/1/2

Catalytic behavior of Pt single-atoms supported on CeO2

Catalysis Today

2024/1/1

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Promotional effect of Mn on Pt/Al2O3 catalysts in HC, CO, and NOx oxidation for controlling diesel emission

Catalysis Today

2024/1/1

A versatile hybrid catalyst platform of Na/ZnFe2O4 and zeolite for selective hydrocarbon production from CO2 hydrogenation

Chemical Engineering Journal

2023/8/15

Resolving the structural complexity of gamma-Al2O3: the nature of vacancy ordering and the structure of complex antiphase boundaries

2023/4/26

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Origin of Higher CO Oxidation Activity of Pt/Rutile than That of Pt/Anatase

The Journal of Physical Chemistry C

2023/4/11

Haneul Kim
Haneul Kim

H-Index: 1

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Understanding of Active Sites and Interconversion of Pd and PdO during CH4 Oxidation

Molecules

2023/2/18

Formation of HCO+ by protonation of carbon monoxide in zeolites

2023/2/13

Engineering Catalysis within a Saturated In (III)-Based MOF Possessing Dynamic Ligand–Metal Bonding

ACS Applied Materials & Interfaces

2022/12/27

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Enhanced catalytic activity of phosphorus-modified SSZ-13 zeolite in the ethylene-to-propylene reaction by controlling acidity and intracrystalline diffusivity

Chemical Engineering Journal

2022/10/15

Design of a metal/oxide/carbon interface for highly active and selective electrocatalysis

ACS nano

2022/9/26

Key Role of a‐Top CO on Terrace Sites of Metallic Pd Clusters for CO Oxidation

Chemistry–A European Journal

2022/9/1

On the nature of extra-framework aluminum species and improved catalytic properties in steamed zeolites

Molecules

2022/4/6

Direct propylene epoxidation with oxygen using a photo-electro-heterogeneous catalytic system

Nature Catalysis

2022/1

Identification of the mechanism of NO reduction with ammonia (SCR) on zeolite catalysts

Chemical science

2022

Back Cover: Surface Density Dependent Catalytic Activity of Single Palladium Atoms Supported on Ceria (Angew. Chem. Int. Ed. 42/2021)

Angewandte Chemie International Edition

2021/10/11

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

Rücktitelbild: Surface density dependent catalytic activity of single palladium atoms supported on ceria (Angew. Chem. 42/2021)

Angewandte Chemie

2021/10/11

Ja Hun Kwak
Ja Hun Kwak

H-Index: 42

See List of Professors in Ja Hun Kwak University(Ulsan National Institute of Science and Technology)