De-en Jiang

De-en Jiang

University of California, Riverside

H-index: 92

North America-United States

About De-en Jiang

De-en Jiang, With an exceptional h-index of 92 and a recent h-index of 68 (since 2020), a distinguished researcher at University of California, Riverside, specializes in the field of Computational Chemistry, Materials Chemistry, Catalysis, Energy Storage, Separation.

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

Remote Activation of H–H Bonds by Platinum in Dilute Alloy Catalysts

Surpassing the Performance of Phenolate‐derived Ionic Liquids in CO2 Chemisorption by Harnessing the Robust Nature of Pyrazolonates

Minimal Kinetic Model of Direct Air Capture of CO2 by Supported Amine Sorbents in Dry and Humid Conditions

Frontispiece: Dynamic Monkey Bar Mechanism of Superionic Li‐ion Transport in LiTaCl6

Dynamic Monkey Bar Mechanism of Superionic Li‐ion Transport in LiTaCl6

The Influence of Ions on the Electrochemical Stability of Aqueous Electrolytes

Atomically synergistic Zn-Cr catalyst for iso-stoichiometric co-conversion of ethane and CO2 to ethylene and CO

Rücktitelbild: Significant Roles of Surface Hydrides in Enhancing the Performance of Cu/BaTiO2. 8H0. 2 Catalyst for CO2 Hydrogenation to Methanol (Angew. Chem. 1/2024)

De-en Jiang Information

University

Position

Professor of Chemistry

Citations(all)

30784

Citations(since 2020)

17806

Cited By

19882

hIndex(all)

92

hIndex(since 2020)

68

i10Index(all)

310

i10Index(since 2020)

273

Email

University Profile Page

Google Scholar

De-en Jiang Skills & Research Interests

Computational Chemistry

Materials Chemistry

Catalysis

Energy Storage

Separation

Top articles of De-en Jiang

Remote Activation of H–H Bonds by Platinum in Dilute Alloy Catalysts

ACS Catalysis

2024/4/23

Surpassing the Performance of Phenolate‐derived Ionic Liquids in CO2 Chemisorption by Harnessing the Robust Nature of Pyrazolonates

ChemSusChem

2024/3/22

Minimal Kinetic Model of Direct Air Capture of CO2 by Supported Amine Sorbents in Dry and Humid Conditions

Industrial & Engineering Chemistry Research

2024/3/19

Frontispiece: Dynamic Monkey Bar Mechanism of Superionic Li‐ion Transport in LiTaCl6

Angewandte Chemie International Edition

2024/3/18

Dynamic Monkey Bar Mechanism of Superionic Li‐ion Transport in LiTaCl6

Angewandte Chemie International Edition

2024/3/18

The Influence of Ions on the Electrochemical Stability of Aqueous Electrolytes

Angewandte Chemie International Edition

2024/3/17

Atomically synergistic Zn-Cr catalyst for iso-stoichiometric co-conversion of ethane and CO2 to ethylene and CO

Nature Communications

2024/1/30

Rücktitelbild: Significant Roles of Surface Hydrides in Enhancing the Performance of Cu/BaTiO2. 8H0. 2 Catalyst for CO2 Hydrogenation to Methanol (Angew. Chem. 1/2024)

Angewandte Chemie

2024/1/2

Significant Roles of Surface Hydrides in Enhancing the Performance of Cu/BaTiO2.8H0.2 Catalyst for CO2 Hydrogenation to Methanol

Angewandte Chemie

2024/1/2

Celebrating the 150th anniversary of Vanderbilt University

Nanoscale

2024

De-En Jiang
De-En Jiang

H-Index: 64

Bromonium-Mediated Electrochemical Synthesis of 3-Pyridinol from Biomass-Derived Furfurylamine

The Journal of Physical Chemistry C

2023/5/22

Selective formation of acetic acid and methanol by direct methane oxidation using rhodium single-atom catalysts

Journal of the American Chemical Society

2023/5/12

Atomically Precise Metal Nanoclusters as Electrocatalysts: From Experiment to Computational Insights

Atomically Precise Nanochemistry

2023/4/21

Atomically Precise Nanochemistry

2023/3/27

Rongchao Jin
Rongchao Jin

H-Index: 84

De-En Jiang
De-En Jiang

H-Index: 64

Vibrational signature of hydrated protons confined in MXene interlayers

Nature Communications

2023/3/10

Computational studies of MXenes

2023/3

Tao Wu
Tao Wu

H-Index: 9

De-En Jiang
De-En Jiang

H-Index: 64

Electrochemical CO2-to-ethylene conversion on metal-free covalent quinazoline network-derived electrodes

Chem Catalysis

2023/2/16

Dual hydrogen production from electrocatalytic water reduction coupled with formaldehyde oxidation via a copper-silver electrocatalyst

Nature Communications

2023/1/31

Reversible Cl2/Cl– Redox for Low-Temperature Aqueous Batteries

ACS Energy Letters

2023/1/17

Ming Lei
Ming Lei

H-Index: 2

De-En Jiang
De-En Jiang

H-Index: 64

Reversible Cl/Cl− redox in a spinel Mn 3 O 4 electrode

Chemical Science

2023

See List of Professors in De-en Jiang University(University of California, Riverside)

Co-Authors

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