Joshua Snyder
Joshua Snyder
Associate Professor, Chemical and Biological Engineering Drexel University
Preverjeni e-poštni naslov na drexel.edu - Domača stran
Highly crystalline multimetallic nanoframes with three-dimensional electrocatalytic surfaces
C Chen, Y Kang, Z Huo, Z Zhu, W Huang, HL Xin, JD Snyder, D Li, ...
Science 343 (6177), 1339-1343, 2014
Oxygen reduction in nanoporous metal–ionic liquid composite electrocatalysts
J Snyder, T Fujita, MW Chen, J Erlebacher
Nature materials 9 (11), 904-907, 2010
Activity–stability trends for the oxygen evolution reaction on monometallic oxides in acidic environments
N Danilovic, R Subbaraman, KC Chang, SH Chang, YJ Kang, J Snyder, ...
The journal of physical chemistry letters 5 (14), 2474-2478, 2014
Using surface segregation to design stable Ru‐Ir oxides for the oxygen evolution reaction in acidic environments
N Danilovic, R Subbaraman, KC Chang, SH Chang, Y Kang, J Snyder, ...
Angewandte Chemie International Edition 53 (51), 14016-14021, 2014
Stabilized nanoporous metals by dealloying ternary alloy precursors
J Snyder, P Asanithi, AB Dalton, J Erlebacher
Advanced Materials 20 (24), 4883-4886, 2008
Structure/processing/properties relationships in nanoporous nanoparticles as applied to catalysis of the cathodic oxygen reduction reaction
J Snyder, I McCue, K Livi, J Erlebacher
Journal of the American Chemical Society 134 (20), 8633-8645, 2012
Balancing activity, stability and conductivity of nanoporous core-shell iridium/iridium oxide oxygen evolution catalysts
YT Kim, PP Lopes, SA Park, AY Lee, J Lim, H Lee, S Back, Y Jung, ...
Nature communications 8 (1), 1449, 2017
W‐Based Atomic Laminates and Their 2D Derivative W1.33C MXene with Vacancy Ordering
R Meshkian, M Dahlqvist, J Lu, B Wickman, J Halim, J Thörnberg, Q Tao, ...
Advanced materials 30 (21), 1706409, 2018
Catalytic reduction of oxygen and hydrogen peroxide by nanoporous gold
R Zeis, T Lei, K Sieradzki, J Snyder, J Erlebacher
Journal of Catalysis 253 (1), 132-138, 2008
Functional links between Pt single crystal morphology and nanoparticles with different size and shape: the oxygen reduction reaction case
D Li, C Wang, DS Strmcnik, DV Tripkovic, X Sun, Y Kang, M Chi, ...
Energy & Environmental Science 7 (12), 4061-4069, 2014
Oxygen reduction reaction performance of [MTBD][beti]‐encapsulated nanoporous NiPt alloy nanoparticles
J Snyder, K Livi, J Erlebacher
Advanced Functional Materials 23 (44), 5494-5501, 2013
Electrospinning and solution properties of Nafion and poly (acrylic acid)
H Chen, JD Snyder, YA Elabd
Macromolecules 41 (1), 128-135, 2008
Dealloying of noble-metal alloy nanoparticles
X Li, Q Chen, I McCue, J Snyder, P Crozier, J Erlebacher, K Sieradzki
Nano letters 14 (5), 2569-2577, 2014
Multimetallic core/interlayer/shell nanostructures as advanced electrocatalysts
Y Kang, J Snyder, M Chi, D Li, KL More, NM Markovic, VR Stamenkovic
Nano letters 14 (11), 6361-6367, 2014
Dealloying silver/gold alloys in neutral silver nitrate solution: Porosity evolution, surface composition, and surface oxides
J Snyder, K Livi, J Erlebacher
Journal of the Electrochemical Society 155 (8), C464, 2008
Eliminating dissolution of platinum-based electrocatalysts at the atomic scale
PP Lopes, D Li, H Lv, C Wang, D Tripkovic, Y Zhu, R Schimmenti, ...
Nature Materials 19 (11), 1207-1214, 2020
“Beyond adsorption” descriptors in hydrogen electrocatalysis
L Rebollar, S Intikhab, NJ Oliveira, Y Yan, B Xu, IT McCrum, JD Snyder, ...
ACS Catalysis 10 (24), 14747-14762, 2020
Adsorbed hydroxide does not participate in the Volmer step of alkaline hydrogen electrocatalysis
S Intikhab, JD Snyder, MH Tang
ACS Catalysis 7 (12), 8314-8319, 2017
Structure/processing relationships in the fabrication of nanoporous gold
F Kertis, J Snyder, L Govada, S Khurshid, N Chayen, J Erlebacher
Jom 62, 50-56, 2010
Free Standing Nanoporous Palladium Alloys as CO Poisoning Tolerant Electrocatalysts for the Electrochemical Reduction of CO2 to Formate
S Chatterjee, C Griego, JL Hart, Y Li, ML Taheri, J Keith, JD Snyder
Acs Catalysis 9 (6), 5290-5301, 2019
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