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Christopher D. Williams
Christopher D. Williams
Research Scientist, The University of Manchester
Verified email at manchester.ac.uk - Homepage
Title
Cited by
Cited by
Year
Tunable sieving of ions using graphene oxide membranes
J Abraham, KS Vasu, CD Williams, K Gopinadhan, Y Su, CT Cherian, ...
Nature Nanotechnology 12 (6), 546-550, 2017
17062017
Effective Polarization in Pairwise Potentials at the Graphene-Electrolyte Interface
CD Williams, J Dix, A Troisi, P Carbone
Journal of Physical Chemistry Letters 8, 703-708, 2017
882017
Selective Removal of Technetium from Water Using Graphene Oxide Membranes
CD Williams, P Carbone
Environmental science & technology 50 (7), 3875-3881, 2016
722016
A Telescoping View of Solute Architectures in a Complex Fluid System
R Motokawa, T Kobayashi, H Endo, J Mu, CD Williams, AJ Masters, ...
ACS Central Science 5 (1), 85-96, 2019
592019
The Development of a Classical Force Field To Determine the Selectivity of an Aqueous Fe3+–EDA Complex for TcO4–and SO42–
CD Williams, NA Burton, KP Travis, JH Harding
Journal of chemical theory and computation 10 (8), 3345-3353, 2014
442014
In Silico Design and Characterization of Graphene Oxide Membranes with Variable Water Content and Flake Oxygen Content
CD Williams, P Carbone, FR Siperstein
ACS Nano 13 (3), 2995-3004, 2019
392019
Comparative Molecular Dynamics Study on Tri-n-butyl Phosphate in Organic and Aqueous Environments and Its Relevance to Nuclear Extraction Processes
J Mu, R Motokawa, CD Williams, K Akutsu, S Nishitsuji, AJ Masters
The Journal of Physical Chemistry B 120 (23), 5183-5193, 2016
382016
Computational Characterisation of Dried and Hydrated Graphene Oxide Membranes
CD Williams, P Carbone, FR Siperstein
Nanoscale 10, 1946-1956, 2018
362018
A classical force field for tetrahedral oxyanions developed using hydration properties: The examples of pertechnetate (TcO4−) and sulfate (SO42−)
CD Williams, P Carbone
The Journal of chemical physics 143 (17), 174502, 2015
352015
A new method for the generation of realistic atomistic models of siliceous MCM-41
CD Williams, KP Travis, NA Burton, JH Harding
Microporous and Mesoporous Materials 228, 215-223, 2016
272016
Design Rules for Graphene and Carbon Nanotube Solvents and Dispersants
A Hardy, J Dix, CD Williams, FR Siperstein, P Carbone, H Bock
ACS Nano 12 (2), 1043-1049, 2018
242018
Initial Studies Directed Towards the Rational Design of Aqueous Graphene Dispersants
KWJ Heard, C Bartlam, CD Williams, J Zhang, AA Alwattar, MS Little, ...
ACS Omega 4 (1), 1969-1981, 2019
232019
A Molecular Simulation Study into the Stability of Hydrated Graphene Nanochannels used in Nanofluidics Devices
CD Williams, Z Wei, MR Shaharudin, P Carbone
Nanoscale 14, 3467-3479, 2022
192022
Coarse Grained Models of Graphene and Graphene Oxide for Use in Aqueous Solution
CD Williams, M Lisal
2D Materials 7, 025025, 2020
192020
High-Throughput Molecular Simulations Reveal the Origin of Ion Free Energy Barriers in Graphene Oxide Membranes
CD Williams, FR Siperstein, P Carbone
Nanoscale 13, 13693-13702, 2021
162021
The role of surface ionisation in the hydration-induced swelling of graphene oxide membranes
MRB Shaharudin, CD Williams, P Carbone
Journal of Membrane Science, 120489, 2022
132022
Removal of Cs, Sr, U and Pu Species from Simulated Nuclear Waste Effluent using Graphene Oxide
T Carey, CD Williams, DJ McArthur, T Malkinson, OR Thompson, ...
Journal of Radioanalytical and Nuclear Chemistry 317 (1), 93-102, 2018
122018
The Potential Applications of Graphene (and Related Compounds) Relevant to the NDA’s Decommissioning Mission
P Davies, S Walton, S Ashley, A Tzalenchuk, CD Williams, P Wiper
62017
Decoding the Interplay Between Topology and Surface Charge in Graphene Oxide Membranes During Humidity Induced Swelling
MR Shaharudin, CD Williams, A Achari, R Nair, P Carbone
ACS Nano 17 (21), 21923-21934, 2023
52023
Hierarchical Aggregation in a Complex Fluid - The Role of Isomeric Interconversion
D Massey, CD Williams, J Mu, AJ Masters, R Motokawa, N Aoyagi, ...
Journal of Physical Chemistry B 127 (9), 2052-2065, 2023
22023
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