Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Engineering (95)
- Materials Science and Engineering (68)
- Physical Chemistry (67)
- Chemical Engineering (59)
- Nanoscience and Nanotechnology (52)
-
- Engineering Science and Materials (46)
- Catalysis and Reaction Engineering (41)
- Electrical and Computer Engineering (41)
- Power and Energy (40)
- Analytical Chemistry (39)
- Computational Chemistry (23)
- Physics (21)
- Inorganic Chemistry (20)
- Semiconductor and Optical Materials (20)
- Polymer Chemistry (14)
- Mechanical Engineering (9)
- Organic Chemistry (9)
- Medicine and Health Sciences (8)
- Condensed Matter Physics (6)
- Environmental Sciences (6)
- Life Sciences (6)
- Biochemical and Biomolecular Engineering (5)
- Civil and Environmental Engineering (5)
- Metallurgy (5)
- Optics (5)
- Other Chemistry (5)
- Social and Behavioral Sciences (5)
- Institution
-
- Chinese Chemical Society | Xiamen University (53)
- Missouri University of Science and Technology (17)
- University of Kentucky (13)
- Universitas Indonesia (8)
- City University of New York (CUNY) (6)
-
- Clemson University (5)
- Technological University Dublin (5)
- Chinese Academy of Sciences (4)
- University at Albany, State University of New York (3)
- University of Arkansas, Fayetteville (3)
- University of Louisville (3)
- American University in Cairo (2)
- Dartmouth College (2)
- East Tennessee State University (2)
- Louisiana State University (2)
- Old Dominion University (2)
- Rowan University (2)
- The University of Southern Mississippi (2)
- University of South Dakota (2)
- University of Texas at Arlington (2)
- West Virginia University (2)
- Brigham Young University (1)
- California Polytechnic State University, San Luis Obispo (1)
- Central Washington University (1)
- Claremont Colleges (1)
- Duquesne University (1)
- Georgia Southern University (1)
- Missouri State University (1)
- New Jersey Institute of Technology (1)
- Northern Illinois University (1)
- Keyword
-
- Electrochemistry (7)
- Hydrogen evolution reaction (4)
- Catalyst (3)
- Corrosion (3)
- Electrocatalysis (3)
-
- Electrocatalyst (3)
- Holography (3)
- Lithium-ion battery (3)
- Molecular Dynamics (3)
- Nanoparticles (3)
- Additive manufacturing (2)
- Additives (2)
- Adsorption (2)
- Carbon nanotubes (2)
- Chemistry (2)
- Crystallography (2)
- DFT (2)
- Dendrite (2)
- Electrocatalysts (2)
- Electrochemical (2)
- Graphene nanoplatelet-Al O –MoS –TiO -nanoparticles 2 3 2 2 (2)
- High oleic vegetable oils (2)
- Hybrid-nanofluid (2)
- Isomerization (2)
- Magnetism (2)
- Materials chemistry (2)
- Mesoporous (2)
- Minimum quantity lubrication machining (2)
- Nuclear magnetic resonance (2)
- OER (2)
- Publication
-
- Journal of Electrochemistry (53)
- Theses and Dissertations--Chemistry (8)
- Chemistry Faculty Research & Creative Works (6)
- Electronic Theses and Dissertations (6)
- All Dissertations (5)
-
- Journal of Materials Exploration and Findings (5)
- Theses and Dissertations (5)
- Bulletin of Chinese Academy of Sciences (Chinese Version) (4)
- Articles (3)
- Chemical and Biochemical Engineering Faculty Research & Creative Works (3)
- Dissertations (3)
- Dissertations and Theses (3)
- Dissertations, Theses, and Capstone Projects (3)
- Geosciences and Geological and Petroleum Engineering Faculty Research & Creative Works (3)
- Makara Journal of Science (3)
- UK CARES Faculty Publications (3)
- Civil, Architectural and Environmental Engineering Faculty Research & Creative Works (2)
- Electronic Theses & Dissertations (2024 - present) (2)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (2)
- LSU Doctoral Dissertations (2)
- Physics Faculty Publications and Presentations (2)
- Publications and Research (2)
- All Graduate Theses and Dissertations, Fall 2023 to Present (1)
- All Master's Theses (1)
- Art Conservation Master's Projects (1)
- Books/Book Chapters (1)
- Chemical Engineering (1)
- Chemical and Materials Engineering Faculty Publications (1)
- Chemistry & Biochemistry Faculty Publications (1)
- Chemistry & Biochemistry Theses - Archive (1)
- Publication Type
Articles 151 - 165 of 165
Full-Text Articles in Materials Chemistry
Effect Of Π-Conjugated Ligands And A* Site Organic Cations On The Energetic Properties And Photovoltaic Performance Of Metal Halide Perovskites, Harindi R. Atapattu
Effect Of Π-Conjugated Ligands And A* Site Organic Cations On The Energetic Properties And Photovoltaic Performance Of Metal Halide Perovskites, Harindi R. Atapattu
Theses and Dissertations--Chemistry
Metal halide perovskites have gained interest in optoelectronic applications such as photovoltaics, lasers, LEDs, transistors, and photodetectors due to their excellent semiconducting properties considering their low cost. Metal halide perovskite (HP) photovoltaics have rapidly increased in power conversion efficiency (PCE), which now exceeds 25%. HPs have gained attention in these applications due to their high tolerance towards defects, long charge carrier diffusion lengths, high charge carrier mobility, high optical absorption, and bandgaps that are tunable over a large range. Even though HP photovoltaic PCEs are improved these are still not commercially available due to them showing lower stability and energy …
Understanding Of Processing Additives Influence In Tin Halide Perovskites: Chemistry, Defect, And Photovoltaic Performance, Syed Rahmath Ullah Joy
Understanding Of Processing Additives Influence In Tin Halide Perovskites: Chemistry, Defect, And Photovoltaic Performance, Syed Rahmath Ullah Joy
Theses and Dissertations--Chemistry
Metal halide perovskite semiconductors have attracted much interest for various applications, such as solar cells, light emitting diodes, photodetectors, and lasers, due to their excellent optoelectronic properties. Photovoltaic cell development is centered on Pb-based perovskites, which have equal photovoltaic performance compared to the traditional silicon photovoltaic. But concerns arising from the usage of toxic lead metal have motivated the research community to seek an alternative derivative. Among those, tin halide perovskites show much promise as an alternative to Pb-counterparts due to their ideal bandgap for single junction photovoltaics and similar optoelectronic properties to Pb perovskites. Nevertheless, tin perovskites suffer from …
Synthesis, Functionalization, And Application Of Polymeric Membrane Blends Of Polysulfone, Poly-Ether Ether-Ketone, And Natural Fiber Additive Biochar For Optimal Water Treatment., Abelline Katusiime Fionah
Synthesis, Functionalization, And Application Of Polymeric Membrane Blends Of Polysulfone, Poly-Ether Ether-Ketone, And Natural Fiber Additive Biochar For Optimal Water Treatment., Abelline Katusiime Fionah
Theses and Dissertations--Chemistry
According to the Center for disease control (CDC), an estimated 1.7 to 2.2 million persons die from waterborne diseases annually. The majority of individuals dying from diseases resulting from unsafe drinking water, such as diarrhea and gastroenteritis, are children. This has in turn created a global water crisis. Different methods have been developed to treat contaminated water in response to the global water crisis such as adsorption, filtration, ozonolysis, catalysis, etc. Of the methods available, filtration via polymeric membranes has been one of the most successfully applied. A membrane is a thin semi-permeable barrier (often made of a polymer) used …
Stability Of Organic Metal Halide Perovskites, S S M Tareq Hossain
Stability Of Organic Metal Halide Perovskites, S S M Tareq Hossain
Theses and Dissertations--Chemistry
Perovskites have emerged as a promising candidate for low-cost production of solar cells. However, the most critical barrier for commercialization of perovskite solar cells (PSCs) is the inadequate stability of the organic metal halide perovskites (OMHPs). The degradation of OMHPs is induced by light, heat, air, and electrical bias. The known degradation pathways involve the oxidation of I- and Sn2+, dissolution of perovskites by moisture, irreversible reactions with water, ion migration, and ion segregation. To improve the stability of OMHPs various methods are adopted, such as additive engineering, perovskite surface treatment, and composition engineering. Surface ligands are used on top …
Fundamental Studies Of Optical Properties And Electrocatalytic Properties Of Low Dimensional Nanomaterials Carbon Nano Dots And 2d Transition Metal Dichalcogenides, Nadeesha Kothalawala
Fundamental Studies Of Optical Properties And Electrocatalytic Properties Of Low Dimensional Nanomaterials Carbon Nano Dots And 2d Transition Metal Dichalcogenides, Nadeesha Kothalawala
Theses and Dissertations--Chemistry
Low dimensional nanomaterials are widely used in a variety of applications such as opto-electronics, energy production and storage, and bio-medical applications due to their unique optical, catalytic, electronic, and mechanical properties. Most of the nanomaterials offer a plethora of modifications in their structure, composition, morphology, and dimensionality that can lead to the manipulation of their physiochemical properties. This dissertation presents insight into two types of compelling nanomaterials: carbon nanodots (CND) and transition metal dichalcogenides (TMD), investigating their optical and electrocatalytic properties respectively.
Carbon nanodots (CND) are a promising class of photoluminescent nanomaterials that hold a significant potential in many optoelectronic …
Investigating The Behavior Of Redox–Active Organic Molecules In Electrochemical Energy Storage Through Experiment–Guided Computational Simulations, Anton Perera
Theses and Dissertations--Chemistry
The long–anticipated implementation of using renewable sources such as solar and wind to meet the world’s energy demand is still limited by not having appropriate grid–level energy storage systems on a global scale. When considering grid–scale energy storage solutions, environmental concerns, and techno–economic viability play a crucial role in the practical implementation of such technology. To address this, redox–active organic molecules (ROMs) have been explored for many uses including serving as redox–active molecules in redox flow batteries (RFBs) and providing overcharge protection in lithium–ion batteries (LIBs).
Nevertheless, in order to be a major player in electrochemical energy storage, further optimization …
Concentration Effects Of Ytterbium(Iii) Ions On The Physical, Structural, Thermal, And Optical Properties Of Barium Phosphate Glasses, Richard Amesimenu
Concentration Effects Of Ytterbium(Iii) Ions On The Physical, Structural, Thermal, And Optical Properties Of Barium Phosphate Glasses, Richard Amesimenu
College of Graduate Studies: Theses & Dissertations
Ytterbium(III)-doped glasses are widely known for their application in near-infrared (NIR) lasers and nowadays attract attention for solar spectral conversion in photovoltaic cells. In this study, the effects of ytterbium(III) concentration on the physical, structural, optical, and thermal characteristics of Yb-doped phosphate glasses were investigated. The glasses were synthesized using the melt-quenching technique with nominal compositions of 50P2O5:(50 – xBaO):xYb2O3 (x = 0, 0.5, 1.0, 2.0, 3.0 and 4 mol%). The properties were then examined by density and related parameters, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier transform-infrared …
Phosphorescent Carbon Dots Doped Silica Nanomaterials Via Microwave-Assisted And Modified Stöber Methods For Anti-Counterfeiting And Biosensing, Weichao Liu
Dissertations and Theses
Phosphorescent materials are essential in bioimaging, anti-counterfeiting, and other applications due to their prolonged light emission. However, current phosphorescent materials face challenges such as complex synthesis, high costs, and instability. Carbon dots (CDs), with size less than 10 nm, are a promising alternative due to their biocompatibility, tunable optical properties, and simple synthesis. This thesis explores the synthesis of CDs using ethylenediamine (EDA) and phosphoric acid via a microwave-assisted method, followed by silica encapsulation using a modified Stöber process to form CDs@SiO2, aiming to enhance their stability and optical properties. Optical characterization showed a slight blue shift in the excitation …
Designing Fluorescent Moscs For Potential Applications In Illicit Drugs Detection, Robyn Nicole Cook
Designing Fluorescent Moscs For Potential Applications In Illicit Drugs Detection, Robyn Nicole Cook
Dissertations and Theses
Illicit and hazardous substances pose a serious effect on the human body which can create longer-term issues on the mental and physical health which potentially lead to fatalities. Current methods for detecting illicit substances include analytical techniques like mass spectrometry (MS) and gas/liquid chromatography (GC/LC) which are known for accuracy and sensitivity. However, these instruments are bulky, costly, time-consuming, and require highly trained personnel. An alternative approach to overcoming these limitations is to employ nanostructured molecule-based chemical sensing technologies that are user-friendly, portable, and cost-effective with the sensitivity for detecting illicit substances. One such candidate is metal-organic super-containers (MOSCs), which …
Real-Time Spectroscopic Ellipsometry For Flux Calibrations In Multi-Source Co-Evaporation Of Thin Films: Application To Rate Variations In Cuinse₂ Deposition, Dhurba R. Sapkota, Balaji Ramanujam, Puja Pradhan, Mohammed A. Razooqi Alaani, Ambalanath Shan, Michael J. Heben, Sylvain Marsillac, Nikolas J. Podraza, Robert W. Collins
Real-Time Spectroscopic Ellipsometry For Flux Calibrations In Multi-Source Co-Evaporation Of Thin Films: Application To Rate Variations In Cuinse₂ Deposition, Dhurba R. Sapkota, Balaji Ramanujam, Puja Pradhan, Mohammed A. Razooqi Alaani, Ambalanath Shan, Michael J. Heben, Sylvain Marsillac, Nikolas J. Podraza, Robert W. Collins
Electrical & Computer Engineering Faculty Publications
Flux calibrations in multi-source thermal co-evaporation of thin films have been developed based on real-time spectroscopic ellipsometry (RTSE) measurements. This methodology has been applied to fabricate CuInSe2 (CIS) thin film photovoltaic (PV) absorbers, as an illustrative example, and their properties as functions of deposition rate have been studied. In this example, multiple Cu layers are deposited step-wise onto the same Si wafer substrate at different Cu evaporation source temperatures (TCu). Multiple In2Se3 layers are deposited similarly at different In source temperatures (TIn). Using RTSE, the Cu and In2Se3 deposition rates are determined as …
Understanding Catalyst Design Principles In Transition Metal Mixed Anionic Chalcogenides For Electrocatalytic Energy Conversion, Ibrahim Abdullahi
Understanding Catalyst Design Principles In Transition Metal Mixed Anionic Chalcogenides For Electrocatalytic Energy Conversion, Ibrahim Abdullahi
Doctoral Dissertations
"This research focused on the synthetic design of transition metal mixed anionic chalcogenide catalysts containing various ligand types around the central metal atom (chalcogen anion and chalcogen-based organic ligand) generating diverse crystal structure types applied for water splitting and carbon dioxide reduction reactions (CO2RR).
A series of catalysts were synthesized starting with isolated metal complexes (MEn) with a central metal core (M = Co, Ni, Cu, and Cr) through molecular clusters, to bulk nanostructured solids of similar M-E coordination. Bis(dichalcogenoimidodiphosphinato) were employed as ligands in the metal complexes, and anionic chalcogen (E = S, Se, and …
Molecular-Level Design Of Heterometallic Precursors For Rechargeable Battery Cathode Materials, Yuxuan Zhang
Molecular-Level Design Of Heterometallic Precursors For Rechargeable Battery Cathode Materials, Yuxuan Zhang
Electronic Theses & Dissertations (2024 - present)
The synthetic methods for rechargeable battery cathodes are rapidly evolving along with the continuous advancement of the materials themselves. Utilizing precursors for the synthesis of Li- and Na-ion cathode materials are known to ensure a phase-pure product with isotropic element distribution, thereby further enhancing the electrochemical properties of the cathode material. As more cathode materials with complex compositions continue to emerge, the strategies for designing the corresponding precursors are also getting diversified. One of the most promising directions is the employment of single-source precursors (SSPs), defined as molecules that contain all necessary elements in the proper ratio and decomposable under …
Stabilizing Bulk Lead-Free Tin Halide Perovskites, William Rice
Stabilizing Bulk Lead-Free Tin Halide Perovskites, William Rice
Electronic Theses & Dissertations (2024 - present)
Tin halide perovskites are a growing candidate in the semiconducting materials field due to their band gap, and ability to be doped (specifically p-type doped). Halide perovskites are sensitive to light and air which causes the degradation of the material from its preferred cubic perovskite lattice. This thesis introduces a way of stabilizing bulk CsSnCl3 through the Goldschmidt tolerance factor. It will also introduce potential new ways to p-type dope halide perovskites. We attempted to p-type dope our halide perovskite by substitutional, interstitial, and vacancy doping to increase the carrier concentration to compete with current perovskites. During our trials of …
Investigation Of Space Charge Effects On Co2 Electrocatalytic Reduction On Gd-Doped Ceria Via Scanning Kelvin Probe And Model-Based Bayesian Analysis, Alejandro Mejia
Investigation Of Space Charge Effects On Co2 Electrocatalytic Reduction On Gd-Doped Ceria Via Scanning Kelvin Probe And Model-Based Bayesian Analysis, Alejandro Mejia
Graduate Theses, Dissertations, and Problem Reports (ETD)
In studying novel energy conversion and storage systems, such as high-temperature electrolysis, numerous underlying fundamental physical processes remain unclear or inadequately understood. Among these, the modeling and comprehension of surface reaction mechanisms, coupled with the intricate effects of space‑charge interfaces, remains an unclear and challenging area of research.
The work of this dissertation involves the development of a 2D finite element analysis model, leveraging the robust MOOSE framework from INL. This model, featuring inhomogeneous defect thermodynamics for near-surface chemistry, formulated through Poisson‑Cahn variational theory, has been exploited for studying the electrocatalytic reduction of CO2 on gadolinia doped ceria. The …
Data-Driven Modeling Of Oxygen Kinetics In La0.6sr0.4co0.2fe0.8o3−Δ (Lscf) For High-Temperature Reduction Of Co2 In An Electrolysis Cell, Ferron Campbell
Data-Driven Modeling Of Oxygen Kinetics In La0.6sr0.4co0.2fe0.8o3−Δ (Lscf) For High-Temperature Reduction Of Co2 In An Electrolysis Cell, Ferron Campbell
Graduate Theses, Dissertations, and Problem Reports (ETD)
Electrolysis systems are critical to several societal applications, particularly energy storage and conversion. Developing these systems requires a detailed knowledge of the chemistry and thermodynamics of the materials used in the electrolysis cell. This work focuses on using embedded scientific machine learning as an efficient way to build an interpretable model for the reaction and transport kinetics in the LSCF electrode, whose performance directly influences the electrolysis system’s performance. The models developed in this study are trained using the publicly available machine learning package, FoKL-GP. This package incorporates a robust Gibbs sampler that employs a forward variable selection process to …