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Dive into the research topics where Donna Ho is active.

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Featured researches published by Donna Ho.


Membranes (Basel) | 2012

U.S. DOE Progress Towards Developing Low-Cost, High Performance, Durable Polymer Electrolyte Membranes for Fuel Cell Applications.

Cassidy Houchins; Greg J. Kleen; Jacob S. Spendelow; John Kopasz; David Peterson; Nancy Garland; Donna Ho; Jason Marcinkoski; Kathi Epping Martin; Reginald Tyler; Dimitrios C. Papageorgopoulos

Low cost, durable, and selective membranes with high ionic conductivity are a priority need for wide-spread adoption of polymer electrolyte membrane fuel cells (PEMFCs) and direct methanol fuel cells (DMFCs). Electrolyte membranes are a major cost component of PEMFC stacks at low production volumes. PEMFC membranes also impose limitations on fuel cell system operating conditions that add system complexity and cost. Reactant gas and fuel permeation through the membrane leads to decreased fuel cell performance, loss of efficiency, and reduced durability in both PEMFCs and DMFCs. To address these challenges, the U.S. Department of Energy (DOE) Fuel Cell Technologies Program, in the Office of Energy Efficiency and Renewable Energy, supports research and development aimed at improving ion exchange membranes for fuel cells. For PEMFCs, efforts are primarily focused on developing materials for higher temperature operation (up to 120 °C) in automotive applications. For DMFCs, efforts are focused on developing membranes with reduced methanol permeability. In this paper, the recently revised DOE membrane targets, strategies, and highlights of DOE-funded projects to develop new, inexpensive membranes that have good performance in hot and dry conditions (PEMFC) and that reduce methanol crossover (DMFC) will be discussed.


Archive | 2010

V.B.3 Visualization of Fuel Cell Water Transport and Performance Characterization under Freezing Conditions

Satish Kandlikar; Thomas A. Trabold; Jeffrey S. Allen; Donna Ho; David Peterson; John P. Kopasz


Archive | 2003

Plate-Based Fuel Processing System

R. A. Dalla Betta; J. Barnes; Carlos Faz; T. Ho; Helen Liu; Jacques Nicole; V. Sokolovskii; David K. Yee; Donna Ho; Walt Podolski


Meeting Abstracts | 2011

U.S. Department of Energy Polymer Electrolyte Membrane Fuel Cell Catalyst Development Activities

Thomas Benjamin; Kathleen Epping-Martin; Nancy Garland; Donna Ho; John P. Kopasz; Dimitrios C. Papageorgopoulos; Walter F. Podolski


Fuel Cell Seminar and Exposition | 2011

The U.S. Department of Energy Efforts in Fuel Cells for Portable Power Applications

Donna Ho; John P. Kopasz; Thomas Benjamin; Walt Podolski


Archive | 2014

V.A.8 Development of Novel Non-PGM Electrocatalysts for Proton Exchange Membrane Fuel Cell Applications

Sanjeev Mukerjee; Donna Ho; David Peterson


Archive | 2014

V.E.4 Open-Source PEMFC-Performance and Durability Model Consideration of Membrane Properties on Cathode Degradation

David Harvey; Glenlyon Parkway; Donna Ho; David Peterson; John P. Kopasz


Archive | 2013

V.H.6 Stationery and Emerging Market Fuel Cell System Cost Analysis - Material Handling Equipment

Vince Contini; Kathya Mahadevan; Mike Jansen; Fritz Eubanks; Donna Ho; Reg Tyler


Archive | 2007

VII.K.1 Direct Methanol Fuel Cell Prototype Demonstration for Consumer Electronics Applications

Robert K. Sievers; Donna Ho; Reg Tyler; Thomas Benjamin


Archive | 2006

VII.C.8 Development of Transition Metal/Chalcogen Based Cathode Catalysts for PEM Fuel Cells

Stephen Campbell; Donna Ho; David Peterson

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David Peterson

United States Department of Energy

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John P. Kopasz

Argonne National Laboratory

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Thomas Benjamin

Argonne National Laboratory

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Walt Podolski

Argonne National Laboratory

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Dimitrios C. Papageorgopoulos

United States Department of Energy

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Nancy Garland

United States Department of Energy

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Walter F. Podolski

United States Department of Energy

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Cassidy Houchins

United States Department of Energy

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David Harvey

United States Department of Energy

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