Featured publications

B. J. Neyhouse, N. A. Price, F. R. Brushett

A computationally efficient, zero-dimensional stack model for simulating redox flow battery performance

ChemRxiv (2024). Preprint

https://doi.org/10.26434/chemrxiv-2024-73bsp

B. J. Neyhouse, F. R. Brushett

A spreadsheet-based redox flow battery cell cycling model enabled by closed-form approximations 

Journal of the Electrochemical Society (2024) 171, 080518.

https://doi.org/10.1149/1945-7111/ad5d68

B. J. Neyhouse, R. M. Darling, J. D. Saraidaridis, F. R. Brushett

A method for quantifying crossover in redox flow cells through compositionally unbalanced symmetric cell cycling

Journal of the Electrochemical Society (2023) 170, 8, 080514.

https://doi.org/10.1149/1945-7111/ace938

B. J. Neyhouse

A vision for policy education in science

MIT Science Policy Review (2023) 4, 1

https://doi.org/10.38105/spr.8cy9g9msd0

M. V. Majji, B. J. Neyhouse, N. J. Matteucci,  K. R. Lennon, C. T. Mallia, A. M Fenton Jr., J. W. Swan, F. R. Brushett

Modeling electrochemical and rheological characteristics of suspension-based electrodes for redox flow cells

Journal of the Electrochemical Society (2023) 170, 5, 050532.

doi.org/10.1149/1945-7111/accb74

B. J. Neyhouse, J. Lee, F. R. Brushett

Connecting material properties and redox flow cell cycling performance using zero-dimensional models

Journal of the Electrochemical Society (2022) 169, 9, 090503

doi.org/10.1149/1945-7111/ac86aa

B. J. Neyhouse, F. R. Brushett

From the synthesis vial to the full cell: Electrochemical methods for characterizing active materials for redox flow batteries

Encyclopedia of Energy Storage (2022) 2, 453

doi.org/10.1016/B978-0-12-819723-3.00058-5

B. J. Neyhouse, K. M. Tenny, Y.-M. Chiang, F. R. Brushett

Microelectrode-based sensor for measuring operando active species concentrations in redox flow cells

ACS Applied Energy Materials (2021) 4, 12, 13830

doi.org/10.1021/acsaem.1c02580

B. J. Neyhouse, A. M. Fenton Jr., F. R. Brushett

Too much of a good thing? Assessing performance tradeoffs of two-electron compounds for redox flow batteries

Journal of the Electrochemical Society (2021) 168, 5, 050501

doi.org/10.1149/1945-7111/abeea3

B. J. Neyhouse, T. A. White

Modifying the steric and electronic character within Re(I)-phenanthroline complexes for electrocatalytic CO2 reduction

Inorganica Chimica Acta (2018) 479, 49

doi.org/10.1016/j.ica.2018.04.008

Additional publications

R. K. Jha, B. J. Neyhouse, M. S. Young, D. E. Fagnani, A. J. McNeil

Revisiting poly(vinyl chloride) reactivity in the context of chemical recycling

Chemical Science (2024) 15, 5802

https://doi.org/10.1039/D3SC06758K

A. H. Quinn, K. M. Ripley, N. J. Matteucci, B. J. Neyhouse, C. A. O. Brown, W. P. Woltmann, F. R. Brushett

Elucidating the effects of temperature on nonaqueous redox flow cell cycling performance

Journal of the Electrochemical Society (2023) 170, 120520

https://doi.org/10.1149/1945-7111/ad0e44

N. J. Matteucci, C. T. Mallia, B. J. Neyhouse, M. V. Majji, F. R. Brushett

Toward electrochemical design principles of redox-mediated flow batteries

Current Opinion in Electrochemistry (2023) 42, 101380

https://doi.org/10.1016/j.coelec.2023.101380

A. M Fenton Jr., B. J. Neyhouse, K. M. Tenny, Y.-M. Chiang, F. R. Brushett

An automated and lightweight framework for electrolyte diagnostics using quantitative microelectrode voltammetry

Journal of Electroanalytical Chemistry (2023) 947, 117689

https://doi.org/10.1016/j.jelechem.2023.117689

T. A. Weiss, G. Fan, B. J. Neyhouse, E. B. Moore, A. L. Furst, F. R. Brushett

Characterizing the impact of oligomerization on redox flow cell performance

Batteries & Supercaps (2023) 6, 8, e202300034

https://doi.org/10.1002/batt.202300034

A. P. Kaur, B. J. Neyhouse, I. A. Shkrob, Y. Wang, N. H. Attanayake, R. K. Jha, Q. Wu, L. Zhang, R. H. Ewoldt, F. R. Brushett, S. A. Odom

Concentration-dependent cycling of phenothiazine-based electrolytes in nonaqueous redox flow cells

ChemistryAn Asian Journal (2023) 18, 5, e202201171

https://doi.org/10.1002/asia.202201171

A. M. Fenton Jr., Y. Ashraf-Gandomi, C. T. Mallia, B. J. Neyhouse, M. A. Kpeglo, W. E. Exson, F. R. Brushett

Towards a mechanically-rechargeable solid fuel flow battery based on earth-abundant materials 

ACS Omega (2022) 7, 44, 40540

https://doi.org/10.1021/acsomega.2c05798

A. M. Fenton Jr., R. K. Jha, B. J. Neyhouse, A. P. Kaur, D. A. Dailey, S. A. Odom, F. R. Brushett 

On the challenges of materials and electrochemical characterization of concentrated electrolytes for redox flow batteries

Journal of Materials Chemistry A (2022) 10, 35, 17988

doi.org/10.1039/D2TA00690A

Y. Ashraf-Gandomi, I. V. Krasnikova, M. A. Pogosova, N. O. Akhmetov, N. A. Ovsyannikov, M. A. Pogosova, N. J. Matteucci, C. T. Mallia, B. J. Neyhouse, A. M. Fenton Jr., F. R. Brushett, K. J. Stevenson

Synthesis and characterization of lithium-conducting composite polymer-ceramic membranes for use in nonaqueous redox flow batteries 

ACS Applied Materials & Interfaces (2021) 13, 45, 53746

doi.org/10.1021/acsami.1c13759

Z. Liang, N. H. Attanayake, K. V. Greco, J. L. Barton, A. P. Kaur, W. L Eubanks, B. J. Neyhouse, J. Landon, S. A. Odom

A comparison of separators vs. membranes in non-aqueous redox flow battery electrolytes

ACS Applied Energy Materials (2021) 4, 5443

doi.org/10.1021/acsaem.1c00017

A. Ramanujam, B. J. Neyhouse, R. E. Keogh, R. A. Carroll, G. G. Botte

Rapid electrochemical detection of Escherichia coli using nickel oxidation at a rotating disk electrode

Chemical Engineering Journal (2021) 411, 128453

doi.org/10.1016/j.cej.2021.128453

J. A. Kowalski, A. M. Fenton Jr., B. J. Neyhouse, F. R. Brushett

A method for evaluating soluble redox couple stability using microelectrode voltammetry

Journal of the Electrochemical Society (2020) 167, 16, 160513

doi.org/10.1149/1945-7111/abb7e9

J. A. Kowalski, B. J. Neyhouse, F. R. Brushett

The impact of bulk electrolysis cycling conditions on the perceived stability of redox active materials

Electrochemistry Communications (2020) 111, 106625

doi.org/10.1016/j.elecom.2019.106625

M. Gigli, J. A. Kowalski, B. J. Neyhouse, A. D'Epifanio, F. R. Brushett, S. Licoccia

Investigating the factors that influence resistance rise of PIM-1 membranes in nonaqueous electrolytes

Electrochemistry Communications (2019) 107, 106530

doi.org/10.1016/j.elecom.2019.106530

S. Saeedi, C. Xue, B. J. McCullough, S. E. Roe, B. J. Neyhouse, T. A. White

Probing the diphosphine ligand’s impact within heteroleptic, visible light-absorbing Cu(I) photosensitizers for solar fuels production

ACS Applied Energy Materials (2019) 2, 131

doi.org/10.1021/acsaem.8b02098

R. N. Pickens, B. J. Neyhouse, D. T. Reed, S. T. Ashton, J. K. White

Visible light-activated CO release and 1O2 photosensitizer formation with Ru(II),Mn(I) complexes

Inorganic Chemistry (2018) 57, 18, 11616

doi.org/10.1021/acs.inorgchem.8b01759

B. J. McCullough, B. J. Neyhouse, B. R. Schrage, D. T. Reed, A. J. Osinski, C. J. Ziegler, T. A. White

Visible light-driven photosystems using heteroleptic Cu(I) photosensitizers and Rh(III) catalysts to produce H2

Inorganic Chemistry (2018) 57, 5, 2865

doi.org/10.1021/acs.inorgchem.7b03273