Daniel T. Bregante

Daniel T. Bregante

Massachusetts Institute of Technology

H-index: 21

North America-United States

About Daniel T. Bregante

Daniel T. Bregante, With an exceptional h-index of 21 and a recent h-index of 19 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of Energy, Sustainability, Chemical Sciences, Engineering.

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

Aldol condensation and esterification over Ti-substituted* BEA zeolite: mechanisms and effects of pore hydrophobicity

Transition State Stabilization Depends on Solvent Identity, Pore Size, and Hydrophilicity for Epoxidations in Zeolites

Lewis Acid Strength of Interfacial Metal Sites Drives CH3OH Selectivity and Formation Rates on Cu-based CO2 Hydrogenation Catalysts

Reactive Species and Reaction Pathways for the Oxidative Cleavage of 4-Octene and Oleic Acid with H2O2 over Tungsten Oxide Catalysts

Alkene Epoxidations with H2O2 over Groups 4–6 Metal-Substituted BEA Zeolites: Reactive Intermediates, Reaction Pathways, and Linear Free-Energy Relationships

Influence of solvent structure and hydrogen bonding on catalysis at solid–liquid interfaces

The Shape of Water in Zeolites and Its Impact on Epoxidation Catalysis

Dioxygen Activation Kinetics over Distinct Cu Site Types in Cu-Chabazite Zeolites

Daniel T. Bregante Information

University

Position

___

Citations(all)

1120

Citations(since 2020)

1053

Cited By

330

hIndex(all)

21

hIndex(since 2020)

19

i10Index(all)

24

i10Index(since 2020)

23

Email

University Profile Page

Massachusetts Institute of Technology

Google Scholar

View Google Scholar Profile

Daniel T. Bregante Skills & Research Interests

Energy

Sustainability

Chemical Sciences

Engineering

Top articles of Daniel T. Bregante

Title

Journal

Author(s)

Publication Date

Aldol condensation and esterification over Ti-substituted* BEA zeolite: mechanisms and effects of pore hydrophobicity

ACS Catalysis

Zhongyao Zhang

Claudia E Berdugo-Díaz

Daniel T Bregante

Hongbo Zhang

David W Flaherty

2022/1/10

Transition State Stabilization Depends on Solvent Identity, Pore Size, and Hydrophilicity for Epoxidations in Zeolites

Journal of Catalysis

Jun Zhi Tan

Daniel T Bregante

Chris Torres

David W Flaherty

2022/1/1

Lewis Acid Strength of Interfacial Metal Sites Drives CH3OH Selectivity and Formation Rates on Cu-based CO2 Hydrogenation Catalysts

Angewandte Chemie

Gina Noh

Erwin Lam

Daniel T Bregante

Jordan Meyet

Petr Šot

...

2021/4/19

Reactive Species and Reaction Pathways for the Oxidative Cleavage of 4-Octene and Oleic Acid with H2O2 over Tungsten Oxide Catalysts

ACS Catalysis

Danim Yun

E Zeynep Ayla

Daniel T Bregante

David W Flaherty

2021/2/24

Alkene Epoxidations with H2O2 over Groups 4–6 Metal-Substituted BEA Zeolites: Reactive Intermediates, Reaction Pathways, and Linear Free-Energy Relationships

ACS Catalysis

E Zeynep Ayla

David S Potts

Daniel T Bregante

David W Flaherty

2020/12/15

Influence of solvent structure and hydrogen bonding on catalysis at solid–liquid interfaces

David S Potts

Daniel T Bregante

Jason S Adams

Chris Torres

David W Flaherty

2021

The Shape of Water in Zeolites and Its Impact on Epoxidation Catalysis

Nature Catalysis

Daniel T Bregante

Matthew C Chan

Jun Zhi Tan

E Zeynep Ayla

Christopher P Nicholas

...

2021/9

Dioxygen Activation Kinetics over Distinct Cu Site Types in Cu-Chabazite Zeolites

ACS Catalysis

Daniel T Bregante

Laura N Wilcox

Changming Liu

Christopher Paolucci

Rajamani Gounder

...

2021/9/10

Hydrophobic Zeolites with Low Silanol Densities

2021/12/2

Thermochemical aerobic oxidation catalysis in water can be analysed as two coupled electrochemical half-reactions

Nature Catalysis

Jaeyune Ryu

Daniel T Bregante

William C Howland

Ryan P Bisbey

Corey J Kaminsky

...

2021/9

Catalytic consequences of inner-and outer-sphere interactions at the solid-liquid interface in zeolites

Daniel Thomas Bregante

2020/4/21

Heteroatom Substituted Zeolite FAU with Ultralow Al Contents for Liquid-Phase Oxidation Catalysis

Catalysis Science & Technology

Daniel T Bregante

Jun Zhi Tan

Andre Sutrisno

David W Flaherty

2020

Catalytic Microgelators for Decoupled Control of Gelation Rate and Rigidity of the Biological Gels

Journal of controlled release

Yu-Tong Hong

Daniel T Bregante

Johnny Ching-Wei Lee

Yongbeom Seo

Dae-Hyun Kim

...

2020/1/10

Controlled Deposition of Silica on Titania-Silica to Alter the Active Site Surroundings on Epoxidation Catalysts

ACS Catalysis

M Alexander Ardagh

Daniel T Bregante

David W Flaherty

Justin M Notestein

2020/10/23

Catalytic Consequences of Oxidant, Alkene, and Pore Structure on Alkene Epoxidations within Titanium Silicates

ACS Catalysis

Daniel T Bregante

Jun Zhi Tan

Rebecca L Schultz

E Zeynep Ayla

David S Potts

...

2020/8/12

Effects of Hydrofluoric Acid Concentration on the Density of Silanol Groups and Water Adsorption in Hydrothermally Synthesized Transition Metal Substituted Silicalite-1

Chemistry of Materials

Daniel T Bregante

David S Potts

Ohsung Kwon

E Zeynep Ayla

Jun Zhi Tan

...

2020/8/10

Heteroatom Substituted Zeolites

2021/6/10

See List of Professors in Daniel T. Bregante University(Massachusetts Institute of Technology)

Co-Authors

H-index: 84
Jeffrey Greeley

Jeffrey Greeley

Purdue University

H-index: 81
Clayton J. RADKE

Clayton J. RADKE

University of California, Berkeley

H-index: 54
Yogesh Surendranath

Yogesh Surendranath

Massachusetts Institute of Technology

H-index: 44
Rajamani Gounder

Rajamani Gounder

Purdue University

H-index: 42
David W. Flaherty

David W. Flaherty

University of Illinois at Urbana-Champaign

H-index: 36
Justin Notestein

Justin Notestein

Northwestern University

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