Open Access. Powered by Scholars. Published by Universities.®
Semiconductor and Optical Materials Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Physical Sciences and Mathematics (19)
- Physics (14)
- Electrical and Computer Engineering (13)
- Electronic Devices and Semiconductor Manufacturing (8)
- Atomic, Molecular and Optical Physics (6)
-
- Chemistry (6)
- Condensed Matter Physics (6)
- Materials Chemistry (5)
- Nanoscience and Nanotechnology (5)
- Optics (5)
- Electrical and Electronics (4)
- Mechanical Engineering (4)
- Nanotechnology Fabrication (4)
- Analytical Chemistry (3)
- Chemical Engineering (3)
- Electro-Mechanical Systems (3)
- Engineering Science and Materials (3)
- Power and Energy (3)
- Environmental Health and Protection (2)
- Environmental Monitoring (2)
- Environmental Sciences (2)
- Life Sciences (2)
- Medicine and Health Sciences (2)
- Nuclear Engineering (2)
- Physical Chemistry (2)
- Polymer and Organic Materials (2)
- Statistics and Probability (2)
- Institution
-
- Air Force Institute of Technology (6)
- Clemson University (5)
- University of New Mexico (4)
- Washington University in St. Louis (3)
- Chinese Chemical Society | Xiamen University (2)
-
- University of Denver (2)
- University of Kentucky (2)
- University of Nebraska - Lincoln (2)
- Arcadia University (1)
- Case Western Reserve University (1)
- City University of New York (CUNY) (1)
- Michigan Technological University (1)
- Mississippi State University (1)
- Missouri University of Science and Technology (1)
- University of Arkansas, Fayetteville (1)
- University of Louisville (1)
- West Virginia University (1)
- Keyword
-
- 2D material (3)
- College of Natural Science and Mathematics (2)
- Molybdenum Disulfide (2)
- Photovoltaics (2)
- Physics and Astronomy (2)
-
- Quantum efficiency (2)
- Semiconductor (2)
- Semiconductors (2)
- Sensor (2)
- 2D (1)
- Al2O3:C (1)
- AlGaN/GaN (1)
- Antennas (1)
- Apoptosis (1)
- Band gap (1)
- Bioconjugation (1)
- Biomarkers (1)
- Black Phosphorus (1)
- Blades (1)
- Blue light (1)
- Blue light-induced damage (1)
- Buffer layer (1)
- Cadmium germanium diphosphide (1)
- Cancer (1)
- Carbon nanotube (1)
- Carrier dynamics (1)
- Characterization (1)
- Charge transfer (1)
- Chemical Vapor Deposition (1)
- Community engagement (1)
- Publication
-
- All Dissertations (4)
- Electronic Theses and Dissertations (3)
- McKelvey School of Engineering Graduate Student Theses & Dissertations (3)
- Theses and Dissertations (3)
- AFIT Patents (2)
-
- Department of Physics and Astronomy: Faculty Publications (2)
- Electrical and Computer Engineering ETDs (2)
- Faculty Publications (2)
- Journal of Electrochemistry (2)
- All Theses (1)
- Capstone Showcase (1)
- Dissertations, Master's Theses and Master's Reports (1)
- Dissertations, Theses, and Capstone Projects (1)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (1)
- Markey Cancer Center Faculty Publications (1)
- Materials Science and Engineering Faculty Research & Creative Works (1)
- Mechanical Engineering ETDs (1)
- Optical Science and Engineering ETDs (1)
- Physics Undergraduate Honors Theses (1)
- Student Scholarship (1)
- Theses and Dissertations--Chemistry (1)
- Publication Type
Articles 31 - 35 of 35
Full-Text Articles in Semiconductor and Optical Materials
Methods For Determining The Infrared Complex Refractive Indices N(Λ) And K(Λ) From Organic Solid Powders: Comparison Of A Sucrose Single Crystal And A Pressed Pellet, Michael O. Yokosuk, Danielle L. Saunders, Charles Tom Resch, Jeremy D. Erickson, Charmayne E. Lonergan, Sarah D. Burton, Mark E. Bowden, Kelly A. Peterson, Timothy J. Johnson, Tanya L. Myers
Methods For Determining The Infrared Complex Refractive Indices N(Λ) And K(Λ) From Organic Solid Powders: Comparison Of A Sucrose Single Crystal And A Pressed Pellet, Michael O. Yokosuk, Danielle L. Saunders, Charles Tom Resch, Jeremy D. Erickson, Charmayne E. Lonergan, Sarah D. Burton, Mark E. Bowden, Kelly A. Peterson, Timothy J. Johnson, Tanya L. Myers
Materials Science and Engineering Faculty Research & Creative Works
There exists a need to measure optical constants n and k for many materials, especially organic solids in the infrared spectral region, but at present, there are only two established methods for making such measurements: single-angle (SA) reflectance and infrared spectroscopic ellipsometry (IRSE). the former derives the n/k vectors via measurement of the change in the amplitude of light reflected from the sample and then uses the Kramers-Kronig transform, while the latter measures the change in polarization of the reflected light from the sample to derive n/k. Here we make a direct comparison between the n/k vectors derived from SA …
High Energy Blue Light Induces Oxidative Stress And Retinal Cell Apoptosis, Jessica Malinsky
High Energy Blue Light Induces Oxidative Stress And Retinal Cell Apoptosis, Jessica Malinsky
Capstone Showcase
Blue light (BL) is a high energy, short wavelength spanning 400 to 500 nm. Found in technological and environmental forms, BL has been shown to induce photochemical damage of the retina by reactive oxygen species (ROS) production. Excess ROS leads to oxidative stress, which disrupts retinal mitochondrial structure and function. As mitochondria amply occupy photoreceptors, they also contribute to oxidative stress due to their selectively significant absorption of BL at 400 to 500 nm. ROS generation that induces oxidative stress subsequently promotes retinal mitochondrial apoptosis. BL filtering and preventative mechanisms have been suggested to improve or repair BL-induced retinal damage, …
Fabrication And Optical Properties Of Two-Dimensional Transition Metal Dichalcogenides, Manpreet Boora
Fabrication And Optical Properties Of Two-Dimensional Transition Metal Dichalcogenides, Manpreet Boora
Dissertations, Master's Theses and Master's Reports
Two-dimensional layered materials such as graphene and transition metal dichalcogenides have gained a lot of attention because of their distinctive chemical, optical, and electronic properties. Transition metal dichalcogenides can have a tunable bandgap in the range of 1 − 3 eV (visible), which enables their applications in ultrathin field effect transistors, photovoltaics, sensors, and optoelectronic devices. They exhibit an indirect-to-direct band gap transition when thinned down from bulk to a single layer. They show strong photoluminescence, electron–photon interaction, valley pseudospin, nonlinear optical response, and lack of dangling bonds. Many exotic phenomena appear when materials are thinned to nanoscale size because …
Synthesis Of Quasi-Freestanding Graphene Films Using Radical Species Formed In Cold Plasmas, Michael A. Mathews Jr.
Synthesis Of Quasi-Freestanding Graphene Films Using Radical Species Formed In Cold Plasmas, Michael A. Mathews Jr.
Graduate Theses, Dissertations, and Problem Reports (ETD)
For over a decade, the Stinespring laboratory has investigated scalable, plasma assisted synthesis (PAS) methods for the growth of graphene films on silicon carbide (SiC). These typically utilized CF4-based inductively coupled plasma (ICP) with reactive ion etching (RIE) to selectively etch silicon from the SiC lattice. This yielded a halogenated carbon-rich surface layer which was then annealed to produce the graphene layers. The thickness of the films was controlled by the plasma parameters, and overall, the process was readily scalable to the diameter of the SiC wafer.
The PAS process reproducibly yielded two- to three-layer thick graphene films …
The Application Of Photoelectron Spectroscopies In Analyzing The Impact Of Interfacial Energetics On Perovskite Solar Cells, Tuo Liu
Theses and Dissertations--Chemistry
In recent years, organic-inorganic metal halide perovskites (HP) have garnered tremendous attention in photovoltaic research. This attention is attributed to their low cost and excellent optoelectronic properties, including large absorption coefficients, tunable bandgaps, long charge-carrier diffusion lengths, and low densities of deep trap states. Inverted p-i-n architecture perovskite solar cells (PSCs) are of intense interest and are generally regarded as more amenable to low-temperature solution processing. Nevertheless, the development of inverted PSCs is lagging the conventional architecture devices. Imperfect energy level alignments and charge carrier recombination, especially at the interface between perovskite and electron transport layers (ETLs), are two main …