Tyler Martin
Tyler Martin
Materials Engineer and Beamline Scientist @ NIST
Verified email at
Cited by
Cited by
Enhanced photocatalytic hydrogen evolution from organic semiconductor heterojunction nanoparticles
J Kosco, M Bidwell, H Cha, T Martin, CT Howells, M Sachs, DH Anjum, ...
Nature materials 19 (5), 559-565, 2020
Polydispersity for tuning the potential of mean force between polymer grafted nanoparticles in a polymer matrix
TB Martin, PM Dodd, A Jayaraman
Physical review letters 110 (1), 018301, 2013
Wetting–dewetting and dispersion–aggregation transitions are distinct for polymer grafted nanoparticles in chemically dissimilar polymer matrix
TB Martin, KIS Mongcopa, R Ashkar, P Butler, R Krishnamoorti, ...
Journal of the American Chemical Society 137 (33), 10624-10631, 2015
Identifying the ideal characteristics of the grafted polymer chain length distribution for maximizing dispersion of polymer grafted nanoparticles in a polymer matrix
TB Martin, A Jayaraman
Macromolecules 46 (22), 9144-9150, 2013
Polydisperse homopolymer grafts stabilize dispersions of nanoparticles in a chemically identical homopolymer matrix: an integrated theory and simulation study
TB Martin, A Jayaraman
Soft Matter 9 (29), 6876-6889, 2013
Assembly of copolymer functionalized nanoparticles: A Monte Carlo simulation study
TB Martin, A Seifpour, A Jayaraman
Soft Matter 7 (13), 5952-5964, 2011
pyPRISM: a computational tool for liquid-state theory calculations of macromolecular materials
TB Martin, TE Gartner III, RL Jones, CR Snyder, A Jayaraman
Macromolecules 51 (8), 2906-2922, 2018
Effect of polymer architecture on the structure and interactions of polymer grafted particles: theory and simulations
KJ Modica, TB Martin, A Jayaraman
Macromolecules 50 (12), 4854-4866, 2017
Decreasing polymer flexibility improves wetting and dispersion of polymer-grafted particles in a chemically identical polymer matrix
B Lin, TB Martin, A Jayaraman
ACS Macro Letters 3 (7), 628-632, 2014
Effect of conjugation on phase transitions in thermoresponsive polymers: an atomistic and coarse-grained simulation study
JE Condon, TB Martin, A Jayaraman
Soft matter 13 (16), 2907-2918, 2017
Using theory and simulations to calculate effective interactions in polymer nanocomposites with polymer-grafted nanoparticles
TB Martin, A Jayaraman
Macromolecules 49 (24), 9684-9692, 2016
Bottlebrush polymers in the melt and polyelectrolytes in solution share common structural features
JM Sarapas, TB Martin, A Chremos, JF Douglas, KL Beers
Proceedings of the National Academy of Sciences 117 (10), 5168-5175, 2020
Emerging trends in machine learning: A polymer perspective
TB Martin, DJ Audus
ACS Polymers Au 3 (3), 239-258, 2023
Concentration Dependence of the Size and Symmetry of a Bottlebrush Polymer in a Good Solvent
DF Sunday, A Chremos, TB Martin, AB Chang, AB Burns, RH Grubbs
Macromolecules 53 (16), 7132-7140, 2020
Effect of matrix bidispersity on the morphology of polymer‐grafted nanoparticle‐filled polymer nanocomposites
TB Martin, A Jayaraman
Journal of Polymer Science Part B: Polymer Physics 52 (24), 1661-1668, 2014
Effect of blockiness in grafted monomer sequences on assembly of copolymer grafted nanoparticles: a Monte Carlo simulation study
TB Martin, C McKinney, A Jayaraman
Soft Matter 9 (1), 155-169, 2013
Tuning the wetting–dewetting and dispersion–aggregation transitions in polymer nanocomposites using composition of graft and matrix polymers
TB Martin, A Jayaraman
Materials Research Express 3 (3), 034001, 2016
The autonomous formulation laboratory: An open liquid handling platform for formulation discovery using x-ray and neutron scattering
PA Beaucage, TB Martin
Chemistry of Materials 35 (3), 846-852, 2023
Addressing the challenges of modeling the scattering from bottlebrush polymers in solution
DF Sunday, TB Martin, AB Chang, AB Burns, RH Grubbs
Journal of Polymer Science 58 (7), 988-996, 2020
Leveraging Nanoparticle Dispersion State To Tune Vanadium Ion Selectivity of Nanophase-Segregated Ionomer Nanocomposites for Redox Flow Batteries
A Domhoff, A Balwani, TB Martin, EM Davis
ACS applied energy materials 2 (12), 8535-8549, 2019
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