legend:
 Fuel Cells / Ceramic Sensors Fuel Cells / Ceramic Sensors
 Energy Conversion Processes for Solar Power Energy Conversion Processes for Solar Power
 Hydrogen Storage Hydrogen Storage
 Advanced Structural Materials for Energy Applications Advanced Structural Materials for Energy Applications

Participants


 
Researchers Department & Email Information
Ritesh Agarwal Energy Conversion Processes for Solar Power riteshag -at- seas.upenn.edu  
John Bassani Advanced Structural Materials for Energy Applications bassani -at- seas.upenn.edu  
Jason Baxter Energy Conversion Processes for Solar Power jbaxter -at- drexel.edu  
Eugene W. Beier geneb -at- physics.upenn.edu  
Kent Blasie Energy Conversion Processes for Solar Power jkblasie -at- sas.upenn.edu  
Dawn Bonnell Energy Conversion Processes for Solar Power MSE
bonnell -at- seas.upenn.edu
surfaces and interfaces in energy related devices
Robert W. Carpick Advanced Structural Materials for Energy Applications carpick -at- seas.upenn.edu Frictional energy dissipation at the nanoscale; nanomaterials for energy applications
I-Wei Chen  Fuel Cells / Ceramic Sensors iweichen -at- seas.upenn.edu  
Russ Composto composto -at- seas.upenn.edu  
Fevzi Daldal Energy Conversion Processes for Solar Power fdaldal -at- sas.upenn.edu structure-function and biogenesis of membrane cytochrome complexes involved in Photosynthesis and Respiration
Peter Davies  Fuel Cells / Ceramic Sensors davies -at- seas.upenn.edu  
William DeGrado Energy Conversion Processes for Solar Power wdegrado -at- mail.med.upenn.edu  
Dan Gianola gianola -at- seas.upenn.edu  
Marija Drndic drndic -at- physics.upenn.edu  
Leslie Dutton Energy Conversion Processes for Solar Power dutton -at- mail.med.upenn.edu  
Jim Eberwine

eberwine -at- pharm.med.upenn.edu

 
Joe Elabd  Fuel Cells / Ceramic Sensors Drexel Univ. - Chem & Bio Eng
elabd -at- drexel.edu
fuel cells
Charles L. Epstein Math
cle -at- math.upenn.edu
 
John Fischer Hydrogen Storage MSE
fischer -at- seas.upenn.edu
nanoporous carbons for on-board hydrogen storage
Michael Fryd Energy Conversion Processes for Solar Power Chemistry
mfryd -at- sas.upenn.edu

self-assembled block copolymer nanoreactor micelles for fuel cell catalysts; solar cell composite materials

Feng Gai gai -at- sas.upenn.edu  
Robert Ghrist Math
ghrist -at- math.upenn.edu
 
Yury Gogotsi Hydrogen Storage MSE (Drexel)
gogotsi -at- drexel.edu
nanostructured carbons for supercapacitors and other energy-related applications
Ray Gorte  Fuel Cells / Ceramic Sensors CBE
gorte -at- seas.upenn.edu
solid oxide fuel cell electrodes; heterogeneous catalysis for energy applications
Greg Guild gguild -at- sas.upenn.edu  
Cherie Kagan Energy Conversion Processes for Solar Power ESE
kagan -at- seas.upenn.edu
organic-inorganic composites for solar energy devices
Jay Kikkawa jkikkawa -at- physics.upenn.edu  
Junhyong Kim junhyong -at- sas.upenn.edu  
Daeyeon Lee daeyeon -at- seas.upenn.edu  
Marsha Lester Chemistry
milester -at- sas.upenn.edu
 
Andrea Liu ajliu -at- sas.upenn.edu  
Charles McMahon Advanced Structural Materials for Energy Applications cmcmahon -at- seas.upenn.edu  
Gene Mele mele -at- physics.upenn.edu  
Chris Murray Energy Conversion Processes for Solar Power Chemistry & MSE
cbmurray -at- sas.upenn.edu
 
So-Jung Park Energy Conversion Processes for Solar Power sojungp -at- sas.upenn.edu  
Pedro Ponte Castañeda Advanced Structural Materials for Energy Applications MEAM
ponte -at- seas.upenn.edu
multiscale modelling of nanostructured triblock copolymers
Virgil Percec Chemistry
percec -at- sas.upenn.edu
 
Andrew M. Rappe  Fuel Cells / Ceramic Sensors Energy Conversion Processes for Solar Power Chemistry
rappe -at- sas.upenn.edu
theoretical and computational design of new materials for solar light harvesting, solar production of chemical fuels, and fuel cell electrochemistry.
Phillip Rea parea -at- sas.upenn.edu  
Jeff Saven Energy Conversion Processes for Solar Power saven -at- sas.upenn.edu  
Eric Schelter schelter -at- sas.upenn.edu  
Talid Sinno Advanced Structural Materials for Energy Applications CBE
talid -at- seas.upenn.edu
microstructure evolution in crystalline materials under extreme environments; silicon and silicon-alloy solar materials
Larry Sneddon Hydrogen Storage lsneddon -at- sas.upenn.edu  
Jonathan Spanier  Fuel Cells / Ceramic Sensors spanier -at- drexel.edu  
Vasek Vitek Advanced Structural Materials for Energy Applications vitek -at- seas.upenn.edu  
John Vohs  Fuel Cells / Ceramic Sensors vohs -at- seas.upenn.edu  
Hugh H. Williams williams -at- physics.upenn.edu  
Karen Winey  Fuel Cells / Ceramic Sensors MSE
winey -at- seas.upenn.edu
Polymer membranes for fuel cells; morphology characterization of ion-containing polymers and block copolymers; polymer nanocomposites
Shu Yang Energy Conversion Processes for Solar Power shuyang -at- seas.upenn.edu advanced structural materials for energy applications" with potential applications in "energy conversion processes for solar power"
Taner Yildirim Hydrogen Storage MSE
taner -at- nist.gov
optimized hydrogen storage materials via metal
Arjun Yodh Advanced Structural Materials for Energy Applications yodh -at- physics.upenn.edu