Microfabricated Fuel Cells with Thin-Film Silicon Dioxide Proton Exchange Membranes
نویسندگان
چکیده
Microfabricated fuel cells have been designed and constructed on silicon integrated circuit wafers using many processes common in integrated circuit fabrication, including sputtering, polymer spin coating, reactive ion etching, and photolithography. Proton exchange membranes PEMs for an “integrated” fuel cell have been made by low-temperature, plasma-enhanced chemical vapor deposition of silicon dioxide. Fuel delivery channels were made through the use of a patterned sacrificial polymer below the PEM and anode catalyst. Platinum-ruthenium catalyst was deposited by dc sputtering. The resistivity of the oxide films was higher than traditional polymer electrolyte membranes, e.g., Nafion, but they were also much thinner. Thus, the “area-resistance” product of resistivity times thickness was similar. Fuel cell performance shows that the amount of catalyst in the thin-film electrodes chiefly limits the performance. Steady-state power densities of 30 W at 0.3 V were achieved for a double-layer sputtered anode catalyst device with hydrogen fuel at room temperature. © 2005 The Electrochemical Society. DOI: 10.1149/1.1949027 All rights reserved.
منابع مشابه
Modified CNTs/Nafion composite: The role of sulfonate groups on the performance of prepared proton exchange methanol fuel cell’s membrane
A novel Nafion®-based nanocomposite membrane was synthesized to be applied as direct methanol fuel cells (DMFCs). Carbon nanotubes (CNTs) were coated with a layer of silica and then reacted by chlorosulfonic acid to produce sulfonate-functionalized silicon dioxide coated carbon nanotubes (CNT@SiO2-SO3H). The functionalized CNTs were then introduced to Nafion®, and subsequently, methanol permeab...
متن کاملSynthesis of Sulfonated Polystyrene/acrylate–ionic Liquid (Si-SPS/A–IL) Hybrid Membranes for Methanol Fuel Cells
In this paper, the silicon-containing sulfonated polystyrene/acrylate–ionic liquid (Si-SPS/A–IL)hybrid membranes was prepared to obtain the proton exchange membrane (PEM) materials withhigh methanol barrier and good selectivity. The Si-SPS/A–IL hybrid membranes characterized asthe function of IL to evaluate their potential as PEMs in direct methanol fuel cells (DMFCs).Fourdifferent Hybrid mater...
متن کاملNovel PVA/La2Ce2O7 hybrid nanocomposite membranes for application in proton exchange membrane fuel cells
Proton exchange membrane fuel cells (PEMFCs) are electrochemical devices that show the highest power densities compared to the other type of fuel cell. In this work, nanocomposite membranes used for proton exchange membrane fuel cells as poly(vinyl alcohol)/La2Ce2O7 (PVA-LC) with the aim of increasing the water uptake and proton conductivity. Glutaraldehyde (GA) was used as cross linking agent ...
متن کاملMixing Sourcing Technologies to Extend the Operational Life of Ultra-Portable Micro-Scale Electronics
Ultra-portable devices like wireless autonomous sensors can be as ubiquitous as cellular phones, if not more, because, among other things, they can retrofit and convert older macro-scale technologies that are difficult to upgrade and expensive to replace in places like factories, power plants, hospitals, and every-day living spaces into intelligent energyand power-efficient solutions [1]. The p...
متن کاملProton Exchange Membrane from the Blend of Copolymers of Vinyl Acetate-Acrylic Ester and Styrene-Acrylic Ester for Power Generation Using Fuel Cell
Proton exchange membranes for fuel cells were synthesized from the blend of copolymers of vinyl acetate-acrylic ester and styrene-acrylic ester, which were modified by sulfonation and addition of silica gel. Water uptake, ion exchange capacity, infrared spectroscopy and tensile tests were applied to characterize the prepared membranes. The results show that the prepared membranes with the proce...
متن کامل