Magdalena Jabłońska (Wojciechowska)

About Magdalena Jabłońska (Wojciechowska)

Magdalena Jabłońska (Wojciechowska), With an exceptional h-index of 27 and a recent h-index of 24 (since 2020), a distinguished researcher at Universität Leipzig, specializes in the field of NH3-SCO, NH3-SCR, H2-SCR, deN2O, diesel aftertreatment systems.

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

Recent Progress in the Application of Transition‐Metal Containing MFI topologies for NH3‐SCR‐DeNOx and NH3 oxidation

Disclosing the Enhanced NH3-SCR-DeNOx Activity of Cu-containing Zeolite Y Prepared with 15-Crown-5

OSDA-Free Seeded Cu-Containing ZSM-5 Applied for NH3–SCR-DeNOx

Mechanistic insights into the promotion of low-temperature NH3-SCR catalysis by copper auto-reduction in Cu-zeolites

Effect of the preparation method on the catalytic properties of copper-containing zeolite Y applied for NH 3-SCR-DeNO x

Review of the application of Cu-containing SSZ-13 in NH₃-SCR-DeNOₓ and NH₃-SCO

Selective catalytic reduction of NO x over micro-/meso-/macroporous Cu-SAPO-34

Influence of Framework n (Si)/n (Al) Ratio on the Nature of Cu S​ pecies in Cu‐ZSM‐5 for NH3‐SCR‐DeNOx

Magdalena Jabłońska (Wojciechowska) Information

University

Position

Institute of Chemical Technology

Citations(all)

2323

Citations(since 2020)

1642

Cited By

1230

hIndex(all)

27

hIndex(since 2020)

24

i10Index(all)

50

i10Index(since 2020)

43

Email

University Profile Page

Google Scholar

Magdalena Jabłońska (Wojciechowska) Skills & Research Interests

NH3-SCO

NH3-SCR

H2-SCR

deN2O

diesel aftertreatment systems

Top articles of Magdalena Jabłońska (Wojciechowska)

Recent Progress in the Application of Transition‐Metal Containing MFI topologies for NH3‐SCR‐DeNOx and NH3 oxidation

2024/3/8

Disclosing the Enhanced NH3-SCR-DeNOx Activity of Cu-containing Zeolite Y Prepared with 15-Crown-5

Catalysis Today

2024/2/27

OSDA-Free Seeded Cu-Containing ZSM-5 Applied for NH3–SCR-DeNOx

ACS omega

2023/10/24

Mechanistic insights into the promotion of low-temperature NH3-SCR catalysis by copper auto-reduction in Cu-zeolites

Applied Catalysis B: Environmental

2023/3/1

Effect of the preparation method on the catalytic properties of copper-containing zeolite Y applied for NH 3-SCR-DeNO x

Catalysis Today

2008/4/1

Review of the application of Cu-containing SSZ-13 in NH₃-SCR-DeNOₓ and NH₃-SCO

2022

Selective catalytic reduction of NO x over micro-/meso-/macroporous Cu-SAPO-34

Catalysis Science & Technology

2022

Influence of Framework n (Si)/n (Al) Ratio on the Nature of Cu S​ pecies in Cu‐ZSM‐5 for NH3‐SCR‐DeNOx

ChemCatChem

2022

Recent progress in the selective catalytic reduction of NOx with NH3 on Cu-SAPO-34 catalysts

2022/1/1

Facile coating of Co3O4 on open-cell metallic foam for N2O catalytic decomposition

Chemical Engineering Research and Design

2022/12/1

A Comparative Mini-Review on Transition Metal Oxides Applied for the Selective Catalytic Ammonia Oxidation (NH3-SCO)

2022/7/7

Micro-/mesoporous copper-containing zeolite Y applied in NH3-SCR, DeNOx

Microporous and Mesoporous Materials

2022/3/1

Progress on Noble Metal-Based Catalysts Dedicated to the Selective Catalytic Ammonia Oxidation into Nitrogen and Water Vapor (NH3-SCO)

2021/10/26

Promotion effect of rare earth elements (Ce, Nd, Pr) on physicochemical properties of M-Al mixed oxides (M= Cu, Ni, Co) and their catalytic activity in N2O decomposition

Journal of Materials Science

2021/9

Effect of Textural Properties and Presence of Co-Cation on NH3-SCR Activity of Cu-Exchanged ZSM-5

Catalysts

2021/7/13

Effect of zeolite topology on NH3-SCR activity and stability of Cu-exchanged zeolites

Applied Catalysis B: Environmental

2021/5/5

An Application of Steady‐state Isotopic‐transient Kinetic Analysis (SSITKA) in DeNOx Process

2021/2/5

Increasing the catalytic performance of erionite by hierarchization

Microporous and Mesoporous Materials

2020/6/1

Nanosized Cu-SSZ-13 and its application in NH3-SCR

Catalysts

2020/5/4

Progress on selective catalytic ammonia oxidation (NH3‐SCO) over Cu‐containing zeolite‐based catalysts

ChemCatChem

2020

See List of Professors in Magdalena Jabłońska (Wojciechowska) University(Universität Leipzig)

Co-Authors

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