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Articles 181 - 210 of 1435
Full-Text Articles in Chemistry
Fluselenamyl: A Novel Benzoselenazole Derivative For Pet Detection Of Amyloid Plaques (Aβ) In Alzheimer's Disease, Nigam Rath, G.S.M. Sundaram, Dhruva Dhavale, Julie Prior, Ping Yan, John Cirrito, Richard Laforest, Nigel Cairns, Jin-Moo Lee, Paul Kotzbauer, Vijay Sharma
Fluselenamyl: A Novel Benzoselenazole Derivative For Pet Detection Of Amyloid Plaques (Aβ) In Alzheimer's Disease, Nigam Rath, G.S.M. Sundaram, Dhruva Dhavale, Julie Prior, Ping Yan, John Cirrito, Richard Laforest, Nigel Cairns, Jin-Moo Lee, Paul Kotzbauer, Vijay Sharma
Chemistry & Biochemistry Faculty Works
Fluselenamyl (5), a novel planar benzoselenazole shows traits desirable of enabling noninvasive imaging of Aβ pathophysiology in vivo; labeling of both diffuse (an earlier manifestation of neuritic plaques) and fibrillar plaques in Alzheimer’s disease (AD) brain sections, and remarkable specificity for mapping Aβ compared with biomarker proteins of other neurodegenerative diseases. Employing AD homogenates, [18F]-9, a PET tracer demonstrates superior (2–10 fold higher) binding affinity than approved FDA tracers, while also indicating binding to high affinity site on Aβ plaques. Pharmacokinetic studies indicate high initial influx of [18F]-9 in normal mice brains accompanied by rapid clearance in the absence of …
Rapid High-Throughput Species Identification Of Botanical Material Using Direct Analysis In Real Time High Resolution Mass Spectrometry, Rabi A. Musah, Ashton D. Lesiak
Rapid High-Throughput Species Identification Of Botanical Material Using Direct Analysis In Real Time High Resolution Mass Spectrometry, Rabi A. Musah, Ashton D. Lesiak
Chemistry Department Faculty Scholarship
We demonstrate that direct analysis in real time-high resolution mass spectrometry can be used to produce mass spectral profiles of botanical material, and that these chemical fingerprints can be used for plant species identification. The mass spectral data can be acquired rapidly and in a high throughput manner without the need for sample extraction, derivatization or pH adjustment steps. The use of this technique bypasses challenges presented by more conventional techniques including lengthy chromatography analysis times and resource intensive methods. The high throughput capabilities of the direct analysis in real time-high resolution mass spectrometry protocol, coupled with multivariate statistical analysis …
Effect Of Surface Treatment On Liquid Adhesion Inside 3-D Structures, Madani A. Khan, Jeffrey Alston, Andrew Guenthner, Jacob Zavala
Effect Of Surface Treatment On Liquid Adhesion Inside 3-D Structures, Madani A. Khan, Jeffrey Alston, Andrew Guenthner, Jacob Zavala
STAR Program Research Presentations
This study explores the relationship between chemical surface treatments on the interior of glass tubes and their resistance to fluid flow. By treating the interior of the tubes with functional silanes we can decrease or increase the interaction of the tube walls with the fluid column, which translates to changes in fluid column height for a given pressure differential. Resistance to fluid flow is quantified by using the tubes as integral parts of a barometric pressure column and measuring the changes in column height as the fluid is pulled into the tube by a set pressure differential. The barometric pressure …
Characterization Of S-Swcnt/Pf-Pd Dispersions And Networks, Tamara N. El-Hayek Ms., Jeffrey Blackburn, Andrew Ferguson, Tammy Pheuphong
Characterization Of S-Swcnt/Pf-Pd Dispersions And Networks, Tamara N. El-Hayek Ms., Jeffrey Blackburn, Andrew Ferguson, Tammy Pheuphong
STAR Program Research Presentations
Single-Walled Carbon Nanotubes (SWCNTs) are being investigated for their use in a wide variety of renewable energy applications. Their unique physical properties contribute to desirable traits such as a high carrier mobility, strong optical absorption and tunable electronic band gap. Unfortunately, due to variability in certain parameters, SWCNTs are limited in their application. The major drawback is that SWCNTs are variable in size and type and typical synthetic methods are not selective. As a result, selective methods must be developed in order to sort these tubes and extract those which are desirable for a particular application. Though there are several …
Chemistry Department Newsletter 2016, Ken Overway
Chemistry Department Newsletter 2016, Ken Overway
Chemistry Department Newsletters
This document contains a summary of news and events from the chemistry department from the 2015-2016 academic year.
Analysis Of The Encapsulation Of Beeswax Microspheres With Ibuprofen, Chau To, Kermin Martinez-Hernandez
Analysis Of The Encapsulation Of Beeswax Microspheres With Ibuprofen, Chau To, Kermin Martinez-Hernandez
Undergraduate External Publications
Beeswax is extremely versatile, often used in candles, lubricants. This compound is readily available and is not very expensive. We are interested in using beeswax as a biodegradable capsule to self-encapsulate drugs like ibuprofen.
Water Quality In And Around Glen Helen Nature Preserve Fall 2016, Krista Baumgartner, Kellie Bohrer, Brandon Bresler, Thomas Chenault, Miriam Crane, Jennifer Dean, James Herbort, Kelsey Hood, Megan Shade, Kraig Strayer, Nicholas Yahana, Emily Warren, Ben Silliman, Brandon Myers, Steven Ujvary, Audrey E. Mcgowin
Water Quality In And Around Glen Helen Nature Preserve Fall 2016, Krista Baumgartner, Kellie Bohrer, Brandon Bresler, Thomas Chenault, Miriam Crane, Jennifer Dean, James Herbort, Kelsey Hood, Megan Shade, Kraig Strayer, Nicholas Yahana, Emily Warren, Ben Silliman, Brandon Myers, Steven Ujvary, Audrey E. Mcgowin
Chemistry Faculty Publications
No abstract provided.
Indigo Dying With Amy Deveau's Chemistry Class, Kim Bernard
Indigo Dying With Amy Deveau's Chemistry Class, Kim Bernard
Artist in Residence: Kim Bernard
Description and images from one of Kim Bernard's class "drop-ins" during her fall semester 2016 time as the University of New England Artist in Residence. Kim met with Professor Amy Deveau's chemistry class to integrate the process of dying with indigo into their subjects.
In Situ Ion Exchange In A Micro-Porous Transition Metal Silicate Framework, Jason M. Lively
In Situ Ion Exchange In A Micro-Porous Transition Metal Silicate Framework, Jason M. Lively
Masters Theses & Specialist Projects
Ion selectivity of minerals has traditionally been utilized in industry as a catalyst, metal separation, and environmental reclamation/sequestration tool. There is an increased interest in understanding ion selectivity mechanisms of micro-porous minerals and mineral-like structures and how they can be applied in various industries: environmental and, potentially, pharmaceutical. This study seeks to understand the ion exchange mechanisms in micro-porous zirconosilicates using time-resolved Raman spectroscopy and X-ray diffraction. The thesis material was exchanged with H+, Na+, K+, and Cs+ in order to better understand structural changes as well as the influence of the H+-bonding during the exchange process. It is hypothesized …
The Coastal Monitor: Vol. 1, No. 3, John Tanacredi Ph.D.
The Coastal Monitor: Vol. 1, No. 3, John Tanacredi Ph.D.
The Coastal Monitor
Each fall I teach a course in “Ecology” and in the spring, “Marine Biology”; two seminal courses absolutely necessary and required to complete a BS Degree in Earth and Environmental Studies at Molloy College. To a large extent I draw on my 48 years of life experiences; flight meteorologist, “Hurricane Hunter” in the US Navy (1968-1970), environmental impact analyst with the US Coast Guard’s Bridge Administration on Governors Island (1974-1978); Coastal Barrier Parks Coordinator and Research Ecologist with the National Park Service (1978-2001); Research Associate in the Invertebrate Zoology Department at the American Museum of Natural History(1982-2000); Chairman Department of …
An Unexpected Restructuring Of Combustion Soot Aggregates By Subnanometer Coatings Of Polycyclic Aromatic Hydrocarbons, Chao Chen, Xiaolong Fan, Tasneem Shaltout, Chong Qiu, Yan Ma, Andrew Goldman, Alexei F. Khalizov
An Unexpected Restructuring Of Combustion Soot Aggregates By Subnanometer Coatings Of Polycyclic Aromatic Hydrocarbons, Chao Chen, Xiaolong Fan, Tasneem Shaltout, Chong Qiu, Yan Ma, Andrew Goldman, Alexei F. Khalizov
Chemistry and Chemical Engineering Faculty Publications
We investigated the effect of thin polycyclic aromatic hydrocarbon (PAH) coatings on the structure of soot aggregates. Soot aerosol from an inverted diffusion burner was size classified, thermally denuded, coated with six different PAHs, and then characterized using scanning electron microscopy, light scattering, and mass-mobility measurements. Contrary to our expectation, significant restructuring was observed in the presence of subnanometer layers of pyrene, fluoranthene, and phenanthrene. These PAHs remained in subcooled liquid state in thin films, whereby the liquid layer acted as a lubricant, reducing the force required to initiate the restructuring. Thin layers of PAH of higher melting temperatures (perylene, …
The Periodical Fall 2016, Southern Adventist University
The Periodical Fall 2016, Southern Adventist University
the Periodical – Chemistry Department Newsletter
Volume 4, issue 1 of the Periodical includes articles about renovations to the Chemistry and Math departments, a chemistry professor conference, the high school forensic chemistry academic summer camp, an alumni spotlight, and a pictorial listing of December 2016 graduates.
Feasibility Of The Use Of Neutron Activation Analysis Techniques In An Underwater Environment, Michael D. Chick
Feasibility Of The Use Of Neutron Activation Analysis Techniques In An Underwater Environment, Michael D. Chick
Masters Theses & Specialist Projects
Elements when bombarded with neutrons emit a gamma ray that is characteristic of the isotope that underwent a neutron induced nuclear reaction; this is known as neutron activation. The characteristic gamma energy of an isotope can then be detected and recorded. One can then analyze the gamma energies captured and determine the elemental makeup of the sample. This form of analysis can be used in an underwater environment making it potentially a valuable tool for agencies tasked with maritime security of ports and waterways, or clean-up operations. This thesis will focus on the feasibility of neutron interrogation using pulsed fast/thermal …
Metal-Organic Hybrid Nanocomposites For Energy Harvesting Applications, Thulitha Madawa Abeywickrama
Metal-Organic Hybrid Nanocomposites For Energy Harvesting Applications, Thulitha Madawa Abeywickrama
Masters Theses & Specialist Projects
Various synthetic methods have been developed to produce metal nanostructures including copper and iron nanostructures. Modification of nanoparticle surface to enhance their characteristic properties through surface functionalization with organic ligands ranging from small molecules to polymeric materials including organic semiconducting polymers is a key interest in nanoscience. However, most of the synthetic methods developed in the past depend widely on non-aqueous solvents, toxic reducing agents, and high temperature and high-pressure conditions. Therefore, to produce metal nanostructures and their nanocomposites with a simpler and greener method is indeed necessary and desirable for their nano-scale applications. Hence the objective of this thesis …
Development Of Dihydrochalcone Functionalized Gold Nanoparticles For Augmented Antineoplastic Activity, Jason N. Payne
Development Of Dihydrochalcone Functionalized Gold Nanoparticles For Augmented Antineoplastic Activity, Jason N. Payne
Masters Theses & Specialist Projects
Phloridzin, an antidiabetic and antineoplastic agent usually found in fruit trees, is a dihydrochalcone constituent that has a clinical/pharmaceutical significance as a sodiumglucose linked transport 2 (SGLT2) inhibitor. Phloridzin never experienced widespread clinical usage in the pharmaceutical market due to its side effects and poor bioavailability when compared to other antidiabetic therapeutics. The poor bioavailability is primarily attributed to the degradation of the glycosidic bond of the phloridzin, resulting in the formation of phloretin, the aglycone of phloridzin and glucose. While phloretin displays a reduced capacity of SGLT2 inhibition, this nutraceutical shows enhanced antineoplastic activity in comparison to phloridzin. Gold …
Visible-Light Generation Of High-Valent Metal-Oxo Intermediates And A Biomimetic Oxidation Catalyzed By Manganese Porphyrins With Iodobenzene Diacetate, Ka Wai Kwong
Masters Theses & Specialist Projects
High-valent iron-oxo intermediates play central roles as active oxidants in enzymatic and synthetic catalytic oxidations. Many transition metal catalysts are designed for biomimetic studies of the predominant oxidation catalysts in Nature, the cytochrome P450 enzymes.
In this work, a new photochemical method to generate high-valent iron-oxo porphyrin models was discovered. As controlled by the electronic nature of porphyrin ligands, iron(IV)-oxo porphyrin radical cations (Compound I model) and iron(IV)-oxo porphyrin derivatives (Compound II model) were produced. These observations indicate that the photochemical reactions involve a heterolytic cleavage of O-Br in precursors to give a putative iron(V)-oxo intermediate, which might relax to …
Responding To The U.S. Research Community's Liquid Helium Crisis, Simon R. Bare, Michael Lilly, Janie Chermak, Rod Eggert, William Halperin, Scott Hannahs, Sophia Hayes, Michael Hendrich, Alan Hurd, Mike Osofsky, Cathy Tway
Responding To The U.S. Research Community's Liquid Helium Crisis, Simon R. Bare, Michael Lilly, Janie Chermak, Rod Eggert, William Halperin, Scott Hannahs, Sophia Hayes, Michael Hendrich, Alan Hurd, Mike Osofsky, Cathy Tway
Chemistry Faculty Research
An Action Plan to Preserve U.S. Innovation. This report lays out the issues facing researchers who use liquid helium and the negative impact on U.S. innovation. The report then proposes five key steps that will have a transformative effect on the ability to maintain the ready availability of helium and ensure the vibrancy of the U.S. low-temperature research capability. These recommendations focus on: conservation of helium use; a mechanism to pay for the capital investment required for helium recycling; a mechanism to ensure an appropriate price is paid by researchers for helium; and a methodology which allows researchers to best …
The Investigation Of The Electrical Control Of Hemimicelles And Admicelles On Gold For Analyte Preconcentration, Dheyaa Hussein Al-Karawi
The Investigation Of The Electrical Control Of Hemimicelles And Admicelles On Gold For Analyte Preconcentration, Dheyaa Hussein Al-Karawi
Masters Theses & Specialist Projects
Hemimicelles and admicelles are well-investigated wonders in modern science; they are surfactant monolayers and surface adsorbed micelles, respectively. Capacitance measurements for monitoring the formation of dodecyl sulfate (DS) surfactant monolayer on positively charged gold substrates (planar gold) and the adsorbance of 2-naphthol onto DS surfactant monolayer were performed. The investigation of the electrical control of DS at various concentrations (4, 6, 16, and 32 mM) below and above the critical micelle concentration (CMC= 8 mM) on gold surfaces for analyte preconcentration, prior to chromatographic analysis, is presented. Charged ionic surfactants, such as DS, drawn to a surface of opposite charge …
Dealloying Behavior Of Nico And Nicocu Thin Films, Benjamin Peecher, Jennifer R. Hampton
Dealloying Behavior Of Nico And Nicocu Thin Films, Benjamin Peecher, Jennifer R. Hampton
Faculty Publications
Porous metals and alloys, such as those fabricated via electrochemical dealloying, are of interest for a variety of energy applications, ranging from their potential for enhanced catalytic behavior to their use as high surface area supports for pseudocapacitor materials. Here, the electrochemical dealloying process was explored for electrodeposited binary NiCo and ternary NiCoCu thin films. For each of the four different metal ratios, films were dealloyed using linear sweep voltammetry to various potentials in order to gain insight into the evolution of the film over the course of the linear sweep. Electrochemical capacitance, scanning electron microscopy, and energy dispersive X-ray …
Preface-Jes Focus Issue On Electrolysis For Increased Renewable Energy Penetration, B. Pivovar, M. Carmo, K. Ayers, X. Zhang, J. O'Brien
Preface-Jes Focus Issue On Electrolysis For Increased Renewable Energy Penetration, B. Pivovar, M. Carmo, K. Ayers, X. Zhang, J. O'Brien
Mechanical & Aerospace Engineering Faculty Publications
(First paragraph) Today represents a particularly exciting time, as our planet’s energy system is undergoing major changes due to dramatically decreasing renewable energy prices and increasing societal concerns over greenhouse gas emissions, criteria pollutants (arsenic, mercury, NOx, particulate matter), and climate change. These factors are pushing society toward deep decarbonization of our energy system, perhaps the most challenging issue facing the planet today. Unfortunately, wind and solar energy, while both promising generation sources, come with intermittency challenges and have limitations in their abilities to impact industrial and transportation sector demands where fossil fuel energy carriers based on chemical bonds have …
Mechanism Of Rifampicin Inactivation In Nocardia Farcinica, Heba Abdelwahab, Julia S.Martin Del Campo, Yumin Dai, Camelia Adly, Sohby El-Sohaimy, Pablo Sobrado
Mechanism Of Rifampicin Inactivation In Nocardia Farcinica, Heba Abdelwahab, Julia S.Martin Del Campo, Yumin Dai, Camelia Adly, Sohby El-Sohaimy, Pablo Sobrado
Chemistry Faculty Research & Creative Works
A novel mechanism of rifampicin (Rif) resistance has recently been reported in Nocardia farcinica. This new mechanism involves the activity of rifampicin monooxygenase (RifMO), a flavin-dependent monooxygenase that catalyzes the hydroxylation of Rif, which is the first step in the degradation pathway. Recombinant RifMO was overexpressed and purified for biochemical analysis. Kinetic characterization revealed that Rif binding is necessary for effective FAD reduction. RifMO exhibits only a 3-fold coenzyme preference for NADPH over NADH. RifMO catalyzes the incorporation of a single oxygen atom forming an unstable intermediate that eventually is converted to 20-N-hydroxy-4-oxo-Rif. Stable C4a-hydroperoxyflavin was not detected by rapid …
Bioenergetics: Experimental Demonstration Of Excess Protons And Related Features, Haitham A. Saeed
Bioenergetics: Experimental Demonstration Of Excess Protons And Related Features, Haitham A. Saeed
Chemistry & Biochemistry Theses & Dissertations
Over the last 50 years, ever since the Nobel-prize work of Peter Mitchell’s Chemiosmotic theory, the question whether bioenergetics energy transduction occurs through localized or delocalized protons has been a controversial issue among scientists. Recently, a proton-electrostatics localization hypothesis was formulated which may provide a new and clear understanding of localized and delocalized proton-coupling energy transduction in many biological systems. The aim of this dissertation was to test this new hypothesis.
To demonstrate the fundamental behavior of localized protons in a pure water-membrane-water system in relation to the newly derived pmf equation, excess protons and excess hydroxyl anions were generated …
Assessing The Protective Quality Of Wax Coatings On Bronze Sculptures Using Hydrogel Patches In Impedance Measurements, Alice H. England, Kathryn N. Hosbein, Capri A. Price, Morgan K. Wylder, Kenna S. Miller, Tami Lasseter Clare
Assessing The Protective Quality Of Wax Coatings On Bronze Sculptures Using Hydrogel Patches In Impedance Measurements, Alice H. England, Kathryn N. Hosbein, Capri A. Price, Morgan K. Wylder, Kenna S. Miller, Tami Lasseter Clare
Chemistry Faculty Publications and Presentations
In this work, we used chemically cross-linked acrylamide-based hydrogel patches that have been specifically developed for use as solid electrolytes in Electrochemical Impedance Spectroscopy to measure the impedance of two waxed bronze sculptures at the Seattle Art Museum’s (SAM) Olympic Sculpture Park (OSP) and compare those results to laboratory test panels. We determined that the impedance response in the frequency range in which measurements may be taken (10 kHz to 1 MHz) is mostly capacitive and that a freshly applied wax coating should ideally be less than 1 nF·cm−2for optimal protective performance.
Crystal Structure Of Di-Μl-Chlorido-Bis[Chloridobis( 1,2-Dimethyl-5-Nitro-1h-Imidazole-Κn3)- Copper(Ii)] Acetonitrile Disolvate, Patrick J. Quinlivan, Rita K. Upmacis
Crystal Structure Of Di-Μl-Chlorido-Bis[Chloridobis( 1,2-Dimethyl-5-Nitro-1h-Imidazole-Κn3)- Copper(Ii)] Acetonitrile Disolvate, Patrick J. Quinlivan, Rita K. Upmacis
Faculty Papers and Publications
1,2-Dimethyl-5-nitroimidazole (dimetridazole, dimet) is a compound that belongs to a class of nitroimidazole drugs that are effective at inhibiting the activity of certain parasites and bacteria. However, there are few reports that describe structures of compounds that feature metals complexed by dimet. Therefore, we report here that dimet reacts with CuCl2•H2O to yield a chloridebridged copper(II) dimer, [Cu2Cl4(C5H7N3O2)4] or [Cu(μ-Cl)Cl(dimet)2]2. In this molecule, the CuII ions are coordinated in an approximately trigonal– bipyramidal manner, and the molecule lies across an …
An Investigation Of The Requirements For Excimer Formation And Charge Stabilization In Model Pi-Stacked Assemblies, Brandon Uhler
An Investigation Of The Requirements For Excimer Formation And Charge Stabilization In Model Pi-Stacked Assemblies, Brandon Uhler
Dissertations (1934 -)
Formation of -stacked excimers plays an important role in many systems, ranging from biological phenomena and polymer formation and function to photovoltaic devices and organic molecular electronics. In these systems, the geometrical reorganization of the ground state upon photoexcitation is still a subject of debate. In this work, we compare the dynamics of excimer formation and hole (charge) stabilization in fluorene and fluorene-based model systems. We use a variety of gas-phase methods to examine the spectroscopy and dynamics of these systems, including Two-Color Resonant Two-Photon Ionization (2CR2PI), Hole-Burning (HB), Laser Induced Fluorescence (LIF), and Dispersed Fluorescence (DF). In order to …
Cellulose-Based Material For Remediation Of Oil Spills, Khaled Khalil Jarrah
Cellulose-Based Material For Remediation Of Oil Spills, Khaled Khalil Jarrah
Chemistry Theses
Oil and organic chemical pollution of aquatic and terrestrial environment is a major concern to the Gulf Countries. The goal of this thesis is to use natural fibers for the remediation of oil-contaminated water. Three natural fibers (cotton, loofa and palm leaves) were chemically modified by silylation and esterification reactions to make the fibers lipophilic. Cotton was the most promising and both chemical processes improved its oil-absorption capacity significantly. Successful modification of the cotton with chlorosilanes (methyl trichloro silane, butyl trichlorosilane, dichlorodimethyl silane, trichloro-3,3 ,3-trifluoropropyl silane) and the alkanoyl chlorides (acetyl, propionyl, butyryl, valeroyl, hexanoyl, and perfluorobutyl chlorides) were supported …
Quantitative Analysis Of Acetylsalicylic Acid By Q-Nmr (Quantitative-Nuclear Magnetic Resonance Spectroscopy), Charles Flemming Jr.
Quantitative Analysis Of Acetylsalicylic Acid By Q-Nmr (Quantitative-Nuclear Magnetic Resonance Spectroscopy), Charles Flemming Jr.
All Student Theses and Dissertations
Quantitative analysis is an important step during pharmaceutical drug development. Currently, the pharmaceutical industry uses high performance liquid chromatography (HPLC) for quantitative analysis of organic compounds as the preferred technique. The proton nuclear magnetic resonance (NMR) technique has an inherent ability to quantify a given analyte and may be used to quantify organic compounds. Quantitative nuclear magnetic resonance spectroscopy (q-NMR) of acetylsalicylic acid (ASA) was conducted using tert-butyl alcohol (tert-butanol) as the internal standard and deuterated chloroform (CDCl3) as the solvent. Preparations of ASA solutions in low and high concentration ranges, 1.0 mM – 10.1 …
Electrochemical Nanoprobes For Electron Transfer Kinetics And Electrocatalysis Study, Yun Yu
Electrochemical Nanoprobes For Electron Transfer Kinetics And Electrocatalysis Study, Yun Yu
Dissertations, Theses, and Capstone Projects
The studies of electrochemical processes on the nanoscale have led to a significant progress in understanding of electrochemical mechanisms and characterization of nanomaterials in the fields of energy, catalysis, and biological research. Electrochemical experiments at nanoscale require the fabrication and characterization of nanometer-sized electrochemical probes. The main advantages of the nanoprobes include very fast mass-transfer rate, high signal-to-noise ratio and extremely fine spatial resolution of electrochemical imaging. In the course of my Ph.D. research, different types of electrochemical probes were developed for measuring electron-transfer kinetics, probing single catalytic nanoparticles and sampling ultra-small volume of liquids.
We developed methodologies to fabricate …
Development Of New Radiolabeling Methods And Insights On Ionizing Radiation Interactions With Nanoparticles, Travis Shaffer
Development Of New Radiolabeling Methods And Insights On Ionizing Radiation Interactions With Nanoparticles, Travis Shaffer
Dissertations, Theses, and Capstone Projects
Nanoparticles are often combined with radionuclides for various applications, ranging from waste remediation to imaging and therapy in the medical field. The overarching aim of this body of work is two-fold. The first aim is development of new radiolabeling methods for various nanoparticles that allow stable attachment of a variety of imaging and therapeutic radionuclides. The second portion more fully describes mechanisms of interaction between ionizing radiation and nanoparticles.
The following advancements will be presented in this dissertation: i) a new radiolabeling method for silica and silica-based nanoparticles that does not require the use of specific chelators, with both radiochemical …
Sustainable Molecular Gelators: Beta-D-Glucoside Derived Structuring Agents And Their Material Application, Julian R. Silverman
Sustainable Molecular Gelators: Beta-D-Glucoside Derived Structuring Agents And Their Material Application, Julian R. Silverman
Dissertations, Theses, and Capstone Projects
Though molecular gelators may by synthesized and formulated into gels following a variety of methods, it should serve that the most valued methods may utilize renewable and waste resources and follow sustainable procedures. Molecular gelators are systems capable of structuring liquids into solid-like materials and they represent a class of surfactant and amphiphilic materials which posses the capability to be not only useful in their ability to form gels, but multifunctional in the ability to respond smartly to a variety of stimuli. Thus there is an interest in the development of sustainable molecular gelators capable of being applied to applications, …