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Ryan Gillis
Ryan Gillis
Verified email at mit.edu - Homepage
Title
Cited by
Cited by
Year
Characterization of Macromolecular Structure Elements from a Green River Oil Shale, II. Characterization of Pyrolysis Products by 13C NMR, GC/MS, and FTIR
TH Fletcher, R Gillis, J Adams, T Hall, CL Mayne, MS Solum, RJ Pugmire
Energy & fuels 28 (5), 2959-2970, 2014
962014
Thermochemical production of hydrogen from hydrogen sulfide with iodine thermochemical cycles
RJ Gillis, K Al-Ali, WH Green
International Journal of Hydrogen Energy 43 (29), 12939-12947, 2018
482018
RMG database for chemical property prediction
MS Johnson, X Dong, A Grinberg Dana, Y Chung, D Farina Jr, RJ Gillis, ...
Journal of Chemical Information and Modeling 62 (20), 4906-4915, 2022
422022
Temperature‐dependent vapor–liquid equilibria and solvation free energy estimation from minimal data
Y Chung, RJ Gillis, WH Green
AIChE Journal 66 (6), e16976, 2020
212020
Automated reaction kinetics and network exploration (Arkane): A statistical mechanics, thermodynamics, transition state theory, and master equation software
AG Dana, MS Johnson, JW Allen, S Sharma, S Raman, M Liu, CW Gao, ...
International Journal of Chemical Kinetics 55 (6), 300-323, 2023
182023
Thermochemistry prediction and automatic reaction mechanism generation for oxygenated sulfur systems: A case study of dimethyl sulfide oxidation
RJ Gillis, WH Green
ChemSystemsChem 2 (4), e1900051, 2020
132020
Scalability strategies for automated reaction mechanism generation
A Jocher, NM Vandewiele, K Han, M Liu, CW Gao, RJ Gillis, WH Green
Computers & Chemical Engineering 131, 106578, 2019
82019
Automated Reaction Kinetics and Network Exploration (Arkane): A Statistical Mechanics, Thermodynamics, Transition State Theory, and Master Equation Software
AG Dana, M Johnson, J Allen, S Sharma, S Raman, M Liu, C Gao, ...
72022
H2 Generation from H2O and H2S through an Iodine Cycle
RJ Gillis, P Lolur, WH Green
ACS Sustainable Chemistry & Engineering 7 (7), 7369-7377, 2019
52019
Hydrogen sulfide mediated water splitting for hydrogen gas an sulfur dioxide production
W Green, R Gillis
US Patent 11,104,574, 2021
2021
Theory and applications for sulfur chemistry: hydrogen from hydrogen sulfide
RJ Gillis
Massachusetts Institute of Technology, 2020
2020
Reducing Carbon Emissions through Novel Hydrogen Sulfide Processing Strategies to Produce Hydrogen Gas
RJ Gillis, W Green
2019 AIChE Annual Meeting, 2019
2019
H2 generation from H2S via an iodine thermochemical cycle
R Gillis, P Lolur, W Green
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 2018
2018
Alternative hydrogen generation process from hydrogen sulfide through an iodine based thermo-chemical cycle
P Lolur, R Gillis, W Green
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 2018
2018
Sulfur reactivity and mesomerism in automated kinetic model generation
AG Dana, R Gillis, YP Li, W Green
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 2018
2018
Thermochemistry Prediction and Automatic Mechanism Generation for Oxygenated
RJ Gillis, WH Green
Phys. Chem. Chem. Phys 20, 10637-10649, 2018
2018
Hydrogen Generation from Hydrogen Sulfide Decomposition
RJ Gillis, KA Al Ali, W Green
2017 AIChE Annual Meeting, 2017
2017
Thiohypoiodous Acid (HSI) Formation and Its Role As an Intermediate in H2 Production
P Lolur, RJ Gillis, W Green
2017 AIChE Annual Meeting, 2017
2017
Theoretical study of the formation of thiohypoiodous acid (HSI) and potential hydrogen generation processes
P Lolur, R Gillis, W Green
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 254, 2017
2017
Advances in Automatic Reaction Mechanism Generation for Sulfur Systems: A Case Study of Dimethyl Sulfide Oxidation
RJ Gillis, AG Dana, WH Green
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