Radenka Maric
President/Extradepartmental_Programs
radenka.maric@uconn.edu
Storrs Mansfield
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Scholarly Contributions
16 Scholarly Contributions
Solid Oxide Fuel Cells: From Fundamental Principles to Complete Systems
Research Type: Book
Nanoparticles for Batteries and Fuel Cell
Research Type: Book
High-Resolution Differential Mobility Analysis (HR-DMA) of naturally charged Platinum Nanoparticles synthesized in two Reactive Spray Deposition Technology Flames
Research Type: Conference Proceedings
In-situ laser measurements of a turbulent diffusion flame synthesizing Iridium nanoparticles for the Reactive Spray Deposition Technology
Research Type: Conference Proceedings
Light Scattering and Laser-Induced Incandescence for the Characterization of Platinum Nanoparticles manufactured by the Reactive Spray Deposition Technology
Research Type: Conference Proceedings
Pt Nanoparticles Characterization within the Reactive Spray Deposition Technology (RSDT)
Research Type: Conference Proceedings
Implementing on-line laser diagnostics to monitor the reactive spray deposition technology (RSDT) for catalyst manufacturing
Research Type: Conference Proceedings
flame synthesis of nanoparticles
Research Type: Journal Article
Nanostructure Formation of Platinum (Pt) Clusters on K-OMS-2 Manganese Oxide Paper Type Material by Reactive Spray Deposition Technique (RSDT) - CO Oxidation
Research Type: Journal Article
Enhanced oxygen reduction activity of Platinum nanoparticles on carbon and non-carbon support deposited by flame based process
Research Type: Journal Article
Synthesis of ceria supported Pt catalysts for water–gas shift reaction using one step reactive spray deposition technology
Research Type: Journal Article
In-situ laser diagnostics of Iridium nanoparticles during their synthesis in a turbulent diffusion flame of the Reactive Spray Deposition Technology
Research Type: Journal Article
A study on the effect of selected process parameters in a jet-diffusion flame for Pt nanoparticle formation
Research Type: Journal Article
Strategies to mitigate Pt dissolution in low Pt loading proton exchange membrane fuel cell: I. A gradient Pt particle size design
Research Type: Journal Article
Microstructure of low Pt-loaded catalysts dispersed via a dry one-step process onto corrosion resistant supports
Research Type: Journal Article
Strategies to mitigate Pt dissolution in low Pt loading proton exchange membrane fuel cell: II. A gradient Pt loading design
Research Type: Journal Article