Preparation Of Perylene Bisimide Acceptors With Ethylcarboxyl And Pyrenylcyclohexyl Imide Groups,
2021
University of Mississippi
Preparation Of Perylene Bisimide Acceptors With Ethylcarboxyl And Pyrenylcyclohexyl Imide Groups, Michael Cashen Stark
Honors Theses
Multiple attempts were made to deprotect TBDMS-protected (tert-butyldimethylsilyl protected) serinol and swallowtailed PBI (Compound 2), synthesized by past researcher Tarrah Frederick, to generate Compound 1. The theoretical Compound 1 product is intended for use in molecular rectification of electricity because the perylene core acts as a good acceptor with high electron affinity, and it does not require an electron donor group. Many rectification molecules are amphiphilic Donor-σ-Acceptor compounds, which allow for electron transfer through localized molecular orbitals when placed between electrodes (Langmuir-Blodgett Method). However, PBIs can transfer electrons from one electrode, through the LUMO of perylene, and to the other …
Synthesis Of Phosphindolizine,
2021
Southern Adventist University
Synthesis Of Phosphindolizine, Tyler Bell
Campus Research Month
Synthesis of Phosphindolizine which hasn't been done before.
Greening Of Ferrocene Column Chromatography,
2021
Liberty University
Greening Of Ferrocene Column Chromatography, Marissa Scilley, Anderson Hill, Michael R. Korn
Liberty University Research Week
Undergraduate
Basic
Incorporating The Origin Of Life Theme In Organic Chemistry Laboratories: Analyses Of Amino Acids,
2021
Liberty University
Incorporating The Origin Of Life Theme In Organic Chemistry Laboratories: Analyses Of Amino Acids, Emmalyn Sarver, Michael R. Korn
Liberty University Research Week
Undergraduate
Basic
Nitro Group Reduction For Use In Organic, Cathodic Materials,
2021
University of South Dakota
Nitro Group Reduction For Use In Organic, Cathodic Materials, Brock G. Goeden
Honors Thesis
The industrial demand for higher capacity, light-weight battery materials has skyrocketed in recent years due to heavy investments in portable electronics, electronic vehicles, and renewable energy sources. However, rechargeable battery technology has seen little improvement since the invention of the Lithium-Ion battery in the 1980s. The low energy density of the traditionally utilized LiCoO2 cathodic material (specific capacity: 272 mAh g-1), has limited its potential to meet these increasing demands. To solve this problem, our research group is investigating new types of lightweight, organic, polymeric materials with conductive backbones as a possible replacement for the cathodic materials in Lithium-Ion batteries. …
Synthesis Of Dibenzophosphole Derivatives,
2021
Southern Adventist University
Synthesis Of Dibenzophosphole Derivatives, Allan Roy Sison
Campus Research Month
This presentation will demonstrate how dibenzophosphole derivatives are synthesized. There will also be studies on the properties of this complex compound. Our experiment is based on previous studies on dibenzophospholes. We will be using the methods from the previous studies and we will synthesize the derivatives of the dibenzophosphole compound using other compounds such as dibromophenol.
"What Lights Up Your "Tech"? - Subtitle: Synthesis Of Polycyclic Aromatic Hydrocarbons (Pah) Using To 2,2-Dibromo-1,1-Binapthalene,
2021
Southern Adventist University
"What Lights Up Your "Tech"? - Subtitle: Synthesis Of Polycyclic Aromatic Hydrocarbons (Pah) Using To 2,2-Dibromo-1,1-Binapthalene, Jefferd Daniel
Campus Research Month
The application of this molecule can be used eventually to add several elements like (Bromine, Chlorine, etc.) Previous done research that was conducted was in shortening the process to synthesize PAH. Since then, there has been research conducted to stabilize the compound by closing/linking two of the un-linked benzene rings.
Synthesize phosphyl-paralene, functionalize, and analyze the properties of those molecules and attach its derivatives
Synthesis Of Dibenzophospholes From Biphenyl,
2021
Southern Adventist University
Synthesis Of Dibenzophospholes From Biphenyl, Claudia Velasquez
Campus Research Month
The aim is a direct synthesis of various diphenzylphospholes using biphenyl, phosphonic acid, and Tf2O. Successful addition of the phosphonic acid in a one step reaction would result in a more efficient production of the diphenylphospholes.
Visible Light Generation And Mechanistic Investigation Of High-Valent Metal-Oxo Species Supported By Different Ligands,
2021
Western Kentucky University
Visible Light Generation And Mechanistic Investigation Of High-Valent Metal-Oxo Species Supported By Different Ligands, Seth Ellis Klaine
Masters Theses & Specialist Projects
Numerous transition metal catalysts have been designed as biomimetic model compounds for the active site of metalloenzymes found throughout Nature, most notably cytochrome P450 monooxygenases that carry out the oxidative transformations of organic substrates with near-perfect chemo-, regio-, and stereo-selectivity. The primary active oxidants in catalytic and enzymatic cycles are fleeting high-valent metal-oxo intermediates where the oxo ligand can transfer to an organic substrate in a process known as oxygen atom transfer (OAT).
In the present work, porphyrin-manganese(III), salen-chromium(III), and salenmanganese( III) derivatives were successfully synthesized and spectroscopically characterized using 1H NMR and UV-Vis spectroscopies. A facile photochemical approach was …
Synthesis And Catalytic Oxidation Of Organic Substrates By Light-Harvesting Metalloporphyrins,
2021
Western Kentucky University
Synthesis And Catalytic Oxidation Of Organic Substrates By Light-Harvesting Metalloporphyrins, Christian Alcantar
Masters Theses & Specialist Projects
note: Some notation in this abstract may not appear exactly as formatted in the thesis.
In this work, ruthenium, iron, and manganese light-harvesting metalloporphyrins have been successfully synthesized to serve as biomimetic models of the active site of Cytochrome P450 for the development of a green and efficient oxidation catalyst. The covalent introduction of light-harvesting boron-dipyrrin (BODIPY) fluorophores on the porphyrin macrocycle allows for the absorption of a broader range of visible light in addition to that captured by the porphyrin aromatic system alone. It is expected that this core-antenna system will increase the absorbed light energy and transfer it …
Use Of Anthraquinone Derivatives And Methods Of Efficient Syntheses,
2021
Liberty University
Use Of Anthraquinone Derivatives And Methods Of Efficient Syntheses, Alex Crespo
Senior Honors Theses
While the bromination of aromatic compounds is a well-researched topic, AQ and hydroxy substituted AQ derivatives, with two carbonyl groups acting as strong deactivators for electrophilic substitution, are notoriously difficult to brominate.11 Although there are well defined ways to brominate an AQ or hydroxy substituted AQ dating back to 1921,12 in order to synthesize more complex AQ derivatives, a method for halogenating AQ derivatives already bonded to more complicated or unstable functional groups is needed in order for the compound to carry out desirable activities. This represents an area of great need in research. The purpose of this …
Novel Synthetic Transformations Targeting Δ-Valerolactone And Isocoumarin,
2021
Louisiana State University and Agricultural and Mechanical College
Novel Synthetic Transformations Targeting Δ-Valerolactone And Isocoumarin, Joshua Paul Van Houten
LSU Doctoral Dissertations
The purpose of this dissertation is to describe the efforts undertaken to develop synthetic methodology targeting δ-valerolactone and isocoumarin. At the onset, an introduction to the δ-valerolactone and isocoumarin is given. Relevant examples of δ-valerolactone being utilized in the production of materials of biological and industrial application are then discussed. Following, current methods for forming δ-valerolactone are presented. After, an introduction to isocoumarin is begun. Current methods for producing isocoumarin are then discussed.
The results and discussion section of this dissertation will focus on two methods that were explored with the goal of producing α-acyl-δ-valerolactone with two different substitution patterns. …
Indolizine Donor-Based Dyes For Applications In Fluorescence Biological Imaging,
2021
University of Mississippi
Indolizine Donor-Based Dyes For Applications In Fluorescence Biological Imaging, William Meador
Honors Theses
NIR emissive fluorophores are intensely researched due to their potential to replace modern imaging procedures. Many molecular strategies have been employed in the literature to optimize fluorophores for deeper NIR absorption and emission, biocompatibility, and higher fluorescence quantum yields. Amongst the fluorophores studied to date, proaromatic indolizine donors are attractive alternatives to traditional alkyl amine and indoline based donors due to their 1) lower energy absorption and emission facilitated by proaromaticity, 2) large Stokes shifts due to increased dihedral angles about the π-system, 3) ease of functionalization and capacity for bioconjugation at the phenyl ring, and 4) potential for further …
Review Of Chemoselective Reagent Based-Breath Analysis Techniques,
2021
University of Louisville
Review Of Chemoselective Reagent Based-Breath Analysis Techniques, Madeline F. Mccloud
Grawemeyer Colloquium Papers
Volatile organic compounds (VOCs) pose a threat due to the negative effects of many compounds on human health. VOCs of interest are specific carbonyl compounds produced exogenously and endogenously, resultant of industrial pollution and diseases such as cancer. High concentrations of these carbonyl compounds are found in exhaled breath are linked to cancer, therefore non-invasive breath tests would prove beneficial for cancer diagnosis. Usage of chemoselective cationic reagents allows for efficient testing of these concentrations. The development of these breath tests is detailed in the report.
Methylation Of The D2 Dopamine Receptor Affects Binding With The Human Regulatory Proteins Par-4 And Calmodulin,
2021
Old Dominion University
Methylation Of The D2 Dopamine Receptor Affects Binding With The Human Regulatory Proteins Par-4 And Calmodulin, Alexander Bowitch, Ansuman Sahoo, Andrea M. Clark, Christiana Ntangka, Krishna K. Raut, Paul Gollnick, Michael C. Yu, Steven M. Pascal, Sarah E. Walker, Denise M. Ferkey
Chemistry & Biochemistry Faculty Publications
No abstract provided.
Mechanism Of Action Of Dihydropteridine Reductase,
2021
CUNY Graduate Center
Mechanism Of Action Of Dihydropteridine Reductase, Gabriela Arias De La Rosa
Dissertations, Theses, and Capstone Projects
Human dihydropteridine reductase is an enzyme that transfers a hydride from NADH to reduce quinonoid 7,8-dihydropterin (qBH2) to 5,6,7,8-tetrahydropterin (BH4), which is a cofactor important in the production of neurotransmitters.DHPR deficiency causes a drastic form of the neurological genetic disease phenylketonuria (PKU) that does not benefit from a phenylalanine-free diet.From site-directed mutagenesis studies, mostly on Rat DHPR, we know that certain residues are important for cofactor binding, substrate binding, and hydride transfer; however, there are still some questions about how DHPR works, particularly, because there is not a crystal structure of the tertiary complex: What is …
Interactions Of Organic Fluorophores With Plasmonic Surface Lattice Resonances,
2021
CUNY Graduate Center
Interactions Of Organic Fluorophores With Plasmonic Surface Lattice Resonances, Robert J. Collison
Dissertations, Theses, and Capstone Projects
It is common knowledge that metals, alloys and pure elements alike, are lustrous and reflective, the more so when a metal surface is flat, polished, and free from oxidation and surface fouling. However, some metals reflect visible light, in the 380 nm to 740 nm range of wavelengths, much more strongly than others. In particular, some metals reflect wavelengths in certain portions of the ultraviolet (UV), visible, and near-infrared (NIR) regime, let us say 200 nm to 2000 nm, while absorbing light strongly in other segments of this range. There are several factors that account for this difference between various …
Using The Marcus Inverted Region And Artificial Cofactors To Create A Charge Separated State In De Novo Designed Proteins,
2021
CUNY Graduate Center
Using The Marcus Inverted Region And Artificial Cofactors To Create A Charge Separated State In De Novo Designed Proteins, Eskil Me Andersen
Dissertations, Theses, and Capstone Projects
To create an efficient de novo photosynthetic protein it is important to create long lived charge separated states. Achieving stable charge separation leads to an increase in the efficiency of the photosynthetic reaction which in turn leads to higher yields of end products, such as biofuels, electrical charge, or synthetic chemicals. In an attempt to create charge separated states in de novo proteins we hypothesized that we could engineer the free energy gaps in the proteins from excited primary donor (PD) to acceptor (A), and A back to ground state PD such that the forward electron transfer (ET) would be …
Design And Synthesis Of Non-Xanthone Structural Analogs Of Α-Mangostin,
2021
Saint John's University, Jamaica New York
Design And Synthesis Of Non-Xanthone Structural Analogs Of Α-Mangostin, Maryam Foroozmehr
Theses and Dissertations
α-Mangostin belongs to a class of polyphenolic compounds called xanthones. The potential pharmacological effects such as anti-bacterial and anti-cancer effects of α-mangostin have made it an important natural product for medicinal chemistry evaluation. During this thesis research, we have designed and synthesized a series of non-xanthone analogs of α-mangostin for medicinal chemistry evaluation. A commercially available starting material, methyl-4-methoxysalicylate was used to synthesize these non-xanthone analogs. The analogs were designed as more flexible derivatives compared to the tricyclic motif within α-mangostin yet retain the hydroxybenzoate scaffold. Through a one-pot chemical synthesis, with relatively high yield (70%), we prepared eight different …
Photoassisted Synthesis Of Complex Polyheterocycles Via Rational Design Of Tailored Photoprecursors,
2021
University of Denver
Photoassisted Synthesis Of Complex Polyheterocycles Via Rational Design Of Tailored Photoprecursors, Tina Alanna Holt
Electronic Theses and Dissertations
Natural products remain the most common source for drug leads, although diversity-oriented synthesis of unnatural complex molecules is gaining momentum. Our lab has been developing experimentally simple and straightforward approaches to complex molecular architectures via photochemical reactions involving a minimal number of experimental steps. In order to achieve this, photoprecursors were assembled via high yielding reactions. Next, we deployed photoinduced cycloadditions to create complex 3-dimentional structures. Lastly, with this obtained primary photoproduct, post-photochemical transformations were used to further grow its scaffold complexity.
One method to increase scaffold complexity is the [4+2] intramolecular cycloadditions of azaxylylenes, which are developed through standard …
