Follow
Michael Julian Orella
Michael Julian Orella
PhD Student in Chemical Engineering, Massachusetts Institute of Technology
Verified email at mit.edu
Title
Cited by
Cited by
Year
Molecular structure, morphology and growth mechanisms and rates of 5-hydroxymethyl furfural (HMF) derived humins
G Tsilomelekis, MJ Orella, Z Lin, Z Cheng, W Zheng, V Nikolakis, ...
Green Chemistry 18 (7), 1983-1993, 2016
3402016
Emerging opportunities for electrochemical processing to enable sustainable chemical manufacturing
MJ Orella, Y Román-Leshkov, FR Brushett
Current opinion in chemical engineering 20, 159-167, 2018
932018
A general technoeconomic model for evaluating emerging electrolytic processes
MJ Orella, SM Brown, MLE Leonard, Y Román-Leshkov, FR Brushett
Energy Technology 8 (11), 1900994, 2020
682020
Editors’ choice—Flooded by success: on the role of electrode wettability in CO2 electrolyzers that generate liquid products
MLE Leonard, MJ Orella, N Aiello, Y Román-Leshkov, A Forner-Cuenca, ...
Journal of The Electrochemical Society 167 (12), 124521, 2020
672020
Lignin-KMC: A toolkit for simulating lignin biosynthesis
MJ Orella, TZH Gani, JV Vermaas, ML Stone, EM Anderson, GT Beckham, ...
ACS sustainable chemistry & engineering 7 (22), 18313-18322, 2019
452019
Computational evidence for kinetically controlled radical coupling during lignification
TZH Gani, MJ Orella, EM Anderson, ML Stone, FR Brushett, GT Beckham, ...
ACS sustainable chemistry & engineering 7 (15), 13270-13277, 2019
252019
Understanding the Impact of Convective Transport on Intercalation Batteries Through Dimensional Analysis
W Gao, MJ Orella, TJ Carney, Y Román-Leshkov, J Drake, FR Brushett
Journal of The Electrochemical Society 167 (14), 140551, 2020
42020
Electron transfer limitation in carbon dioxide reduction revealed by data-driven Tafel analysis
SM Brown, M Orella, YW Hsiao, Y Román-Leshkov, Y Surendranath, ...
42020
Understanding humins: molecular characterization and growth rates
M Orella
University of Delaware, 2014
42014
High-throughput analysis of contact angle goniometry data using DropPy
MJ Orella, MLE Leonard, Y Román-Leshkov, FR Brushett
SoftwareX 14, 100665, 2021
32021
Quantum mechanical calculations suggest that lignin polymerization is kinetically controlled
T Gani, M Orella, E Anderson, M Stone, F Brushett, G Beckham, ...
12019
Electrode Characterization in a Flowing Electrolyte Reactor for the Electrochemical Reduction of CO2 to CO
SM Brown, YW Hsiao, MJ Orella, FR Brushett
Electrochemical Society Meeting Abstracts 232, 2001-2001, 2017
12017
Convection-enhanced electrochemical energy storage devices and related methods
FR Brushett, W Gao, J Drake, M Orella
US Patent App. 17/504,909, 2022
2022
Quantifying Decay Rates of Electrochemically Active Species Using Microelectrode Voltammetry
J Hinricher, MJ Orella, JA Kowalski, FR Brushett
Electrochemical Society Meeting Abstracts 237, 509-509, 2020
2020
Automated analysis of contact angle goniometry data using DropPy
M Orella, ML Leonard, Y Román-Leshkov, F Brushett
2020
Models across multiple length scales to advance biomass upgrading
MJ Orella
Massachusetts Institute of Technology, 2020
2020
Assessing the Feasibility of Conceptual Electrocatalytic Processes through Inverse Techno-Economic Modeling
M Orella, Y Roman, F Brushett
2019 AIChE Annual Meeting, 2019
2019
Novel Electrochemical Technique to Track Rapid Decay of Redox Active Species
JJ Hinricher, M Orella, JA Kowalski, F Brushett
2019 AIChE Annual Meeting, 2019
2019
Cost-Constrained Design of Electrochemical Hydrogenation Processes
MJ Orella, Y Roman, FR Brushett
Electrochemical Society Meeting Abstracts 236, 1042-1042, 2019
2019
Understanding lignin polymerization using kinetic Monte Carlo methods
M Orella, T Gani, M Stone, E Anderson, F Brushett, Y Roman-Leshkov
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 257, 2019
2019
The system can't perform the operation now. Try again later.
Articles 1–20