Stephen Dooley

Stephen Dooley

Trinity College

H-index: 36

North America-United States

About Stephen Dooley

Stephen Dooley, With an exceptional h-index of 36 and a recent h-index of 30 (since 2020), a distinguished researcher at Trinity College, specializes in the field of Energy, Fuels, Reaction Kinetics, Combustion Science, Biorefining.

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

Steady States and Kinetic Modelling of the Acid-Catalysed Ethanolysis of Glucose, Cellulose, and Corn Cob to Ethyl Levulinate

Ab Initio and Kinetic Modeling of β-d-Xylopyranose under Fast Pyrolysis Conditions

Hemicellulose pyrolysis: mechanism and kinetics of functionalized xylopyranose

Machine learned compact kinetic models for methane combustion

Quantum Chemical Modelling of Hemicellulose Fast Pyrolysis: β-D-xylopyranose as a Structural Motif

Low-dimensional high-fidelity kinetic models for NOX formation by a compute intensification method

Correction: Ethanolic gasoline, a lignocellulosic advanced biofuel

Toward Development of Machine Learned Techniques for Production of Compact Kinetic Models

Stephen Dooley Information

University

Position

University of Limerick Princeton University National University of Ireland

Citations(all)

5269

Citations(since 2020)

2402

Cited By

3961

hIndex(all)

36

hIndex(since 2020)

30

i10Index(all)

54

i10Index(since 2020)

51

Email

University Profile Page

Trinity College

Google Scholar

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Stephen Dooley Skills & Research Interests

Energy

Fuels

Reaction Kinetics

Combustion Science

Biorefining

Top articles of Stephen Dooley

Title

Journal

Author(s)

Publication Date

Steady States and Kinetic Modelling of the Acid-Catalysed Ethanolysis of Glucose, Cellulose, and Corn Cob to Ethyl Levulinate

Energy Advances

Conall McNamara

Stephen Dooley

Mohammad Reza Ghaani

Ailís O’Shea

Prajwal Rao

...

2024

Ab Initio and Kinetic Modeling of β-d-Xylopyranose under Fast Pyrolysis Conditions

The Journal of Physical Chemistry A

Jacopo Lupi

Leandro Ayarde-Henríquez

Mark Kelly

Stephen Dooley

2024/2/1

Hemicellulose pyrolysis: mechanism and kinetics of functionalized xylopyranose

Leandro Ayarde Henríquez

Jacopo Lupi

Stephen Dooley

2023/12/15

Machine learned compact kinetic models for methane combustion

Combustion and Flame

Mark Kelly

Mark Fortune

Gilles Bourque

Stephen Dooley

2023/7/1

Quantum Chemical Modelling of Hemicellulose Fast Pyrolysis: β-D-xylopyranose as a Structural Motif

Jacopo Lupi

Mark Kelly

Ailis O'Shea

Mohammad Reza Ghaani

Stephen Dooley

2023/3/3

Low-dimensional high-fidelity kinetic models for NOX formation by a compute intensification method

Proceedings of the Combustion Institute

Mark Kelly

Harry Dunne

Gilles Bourque

Stephen Dooley

2023/1/1

Correction: Ethanolic gasoline, a lignocellulosic advanced biofuel

Sustainable Energy & Fuels

Mícheál Séamus Howard

Gani Issayev

Nimal Naser

S Mani Sarathy

Aamir Farooq

...

2022

Toward Development of Machine Learned Techniques for Production of Compact Kinetic Models

arXiv preprint arXiv:2202.08021

Mark Kelly

Mark Fortune

Gilles Bourque

Stephen Dooley

2022/2/16

Prescreening of Sustainable Aviation Jet Fuels

Joshua Heyne

Zhibin Yang

Randy Boehm

Bastian Rauch

Patrick Le Clercq

...

2021

Toward machine learned highly reduced kinetic models for methane/air combustion

Mark Kelly

Stephen Dooley

Gilles Bourque

2021/6/7

Rational design and testing of anti-knock additives

Energies

Andrew D Ure

Manik K Ghosh

Maria Rappo

Roland Dauphin

Stephen Dooley

2020/9/19

See List of Professors in Stephen Dooley University(Trinity College)

Co-Authors

H-index: 98
Henry Curran

Henry Curran

National University of Ireland, Galway

H-index: 97
Frederick Dryer

Frederick Dryer

University of South Carolina

H-index: 87
Yiguang Ju

Yiguang Ju

Princeton University

H-index: 76
Chih-Jen Sung

Chih-Jen Sung

University of Connecticut

H-index: 48
Matthew Oehlschlaeger

Matthew Oehlschlaeger

Rensselaer Polytechnic Institute

H-index: 46
Sang Hee Won

Sang Hee Won

University of South Carolina

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