Open Access. Powered by Scholars. Published by Universities.®
- Discipline
- Keyword
-
- Aluminum Oxide (1)
- Atomic layer deposition (1)
- BSCF (1)
- Catalyst layer (1)
- Cathode (1)
-
- Ceramic Materials (1)
- Contact angle (1)
- DFT (1)
- Degradation (1)
- Ductility (1)
- Electrical conductivity (1)
- Electrode (1)
- Field emission (1)
- Microstructural Engineering (1)
- Proton exchange membrane fuel cell (1)
- Sheet resistance (1)
- Solid oxide fuel cell (1)
- TBC (1)
- Thermal Barrier Coating (1)
- Titanium nitride (1)
- ZnO (1)
- Publication Type
Articles 1 - 5 of 5
Full-Text Articles in Ceramic Materials
Engineering Ceramic Ductility Into Aluminum Oxide, Krish Bhuva
Engineering Ceramic Ductility Into Aluminum Oxide, Krish Bhuva
Holster Scholar Projects
This project explores the enhancement of ductility in Aluminum Oxide (Al₂O₃) ceramics through microstructural engineering. The goal is to combine the hardness and stability of Al₂O₃ with enhanced ductility for diverse industrial applications. Inspired by the naturally occurring Itacolumite rock, known for its complex microstructure, this research aims to replicate similar microstructural features in engineering ceramics. By doping Al₂O₃ with Titanium Dioxide (TiO₂), Boron Nitride (BN), and a pore former, while employing innovative sintering techniques, we hypothesize that these modifications will lead to a measurable increase in ductility. Despite early challenges in achieving homogeneity in sintering, promising results were observed …
Characterization Of Platinum On Carbon Nanoparticles Selectively Coated With Titanium Nitride (Tin), Matthew Maramo
Characterization Of Platinum On Carbon Nanoparticles Selectively Coated With Titanium Nitride (Tin), Matthew Maramo
Honors Scholar Theses
Proton exchange membrane fuel cells are a promising low-carbon technology that still face problems including low durability during their normal operation cycles. At the cathode, the carbon supports of the catalysts may corrode. Atomic layer deposition of titanium nitride is performed on prepared catalyst layer samples. The purpose of the deposition is to create a thin film over the carbon supports to reduce carbon support corrosion and improve the lifespan of the fuel cell. Sheet resistances and contact angles are measured for the samples before and after the deposition, although some samples did not receive the deposition and post-deposition characterization …
Evaluation Of Cathode Materials For Low Temperature (500-700c) Solid Oxide Fuel Cells, Alexander M. Lassman
Evaluation Of Cathode Materials For Low Temperature (500-700c) Solid Oxide Fuel Cells, Alexander M. Lassman
Master's Theses
Solid oxide fuel cells (SOFC) have gained a great deal of interest, due to their potential for high efficiency power generation and ability to utilize hydrogen fuel, as well as various hydrocarbon-based fuels. A recent trend in SOFC development has been towards lower operating temperatures (500-700°C), which can substantially reduce the cost and complexity of the system. This thesis presents an investigation into state of the art Ba- and La- based cathode materials for use in low temperature (500-700°C) solid oxide fuel cells.
Synthesis of A-site deficient [A=0.97] Ba0.5Sr0.5Co0.8Fe0.2O3 (BSCF) was …
Synthesis, Field Emission And Associated Degradation Mechanisms Of Tapered Zno Nanorods, Gregory M. Wrobel Mr.
Synthesis, Field Emission And Associated Degradation Mechanisms Of Tapered Zno Nanorods, Gregory M. Wrobel Mr.
Master's Theses
Equation 1..... 4
Equation 2..... 4
Equation 3..... 6
Equation 4..... 7
Equation 5..... 9
Equation 6..... 10
Equation 7..... 11
Equation 8..... 12
Equation 9..... 14
Equation 10..... 40
Equation 11..... 51
Synthesis, Field Emission and Associated Degradation Mechanisms of Tapered ZnO Nanorods
Gregory Michael Wrobel, M.S.
University of Connecticut, 2011
Modern development of field emitter arrays (FEA) has been made possible, partly thanks to the synthesis and development of one-dimensional (1D) nanostructures. High aspect ratio 1D nanostructures effectively amplify the electric field at the emitter tips, allowing electrons to be extracted at relatively low electric field. An inexpensive …
Air Plasma Sprayed Thermal Barrier Coatings: Experiments And Finite Element Analysis, Charles H. Thistle
Air Plasma Sprayed Thermal Barrier Coatings: Experiments And Finite Element Analysis, Charles H. Thistle
Master's Theses
The purpose of this research was to examine the primary in-service failure mechanism of an air plasma sprayed thermal barrier coating commonly used in combustor applications, and to use that failure mechanism as a basis in developing a life prediction strategy. The research consisted of an experimental phase, in which the failure mechanism was identified and key features of the coating system measured, and a modeling phase, in which the findings of the experimental phase were used to build a system specific finite element model of the coating in order to extract quantitative data relevant to coating life.
Observations were …