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Physical Chemistry Chemical Physics : PCCP|October 29, 2020
The Born model can accurately describe electrostatic ion solvationTimothy T Duignan, X S Zhao
ACS Applied Materials & Interfaces|September 7, 2021
Lithium-Ion Transport Behavior in Thin-Film Graphite Electrodes with SEI Layers Formed at Different Current DensitiesYverick Rangom, Timothy T Duignan, X S Zhao
ACS Applied Materials & Interfaces|September 11, 2019
Improvement of Hard Carbon Electrode Performance by Manipulating SEI Formation at High Charging RatesYverick Rangom, Rohit R Gaddam, Timothy T Duignan, et al.
Journal of Chemical Theory and Computation|June 27, 2020
Method for Accurately Predicting Solvation StructureTimothy T Duignan, Christopher J Mundy, Gregory K Schenter, et al.
Physical Chemistry Chemical Physics : PCCP|July 10, 2023
Effect of fluoro and hydroxy analogies of diglyme on sodium-ion storage in graphite: a computational studyR M N M Rathnayake, Debra J Searles, Timothy T Duignan, et al.
Physical Chemistry Chemical Physics : PCCP|January 25, 2021
Exploring the effect of interlayer distance of expanded graphite for sodium ion storage using first principles calculationsR M N M Rathnayake, Timothy T Duignan, Debra J Searles, et al.
ACS Physical Chemistry Au|May 27, 2024
The Potential of Neural Network PotentialsTimothy T Duignan
Journal of Colloid and Interface Science|May 24, 2021
The surface potential explains ion specific bubble coalescence inhibitionTimothy T Duignan
The Journal of Chemical Physics|November 24, 2018
Detecting the undetectable: The role of trace surfactant in the Jones-Ray effectTimothy T Duignan, Mengsu Peng, Anh V Nguyen, et al.
Interface Focus|June 21, 2017
Cation effects on haemoglobin aggregation: balance of chemisorption against physisorption of ionsDrew F Parsons, Timothy T Duignan, Andrea Salis
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