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2,537 full-text articles. Page 76 of 102.

Synthesis Of Diazonium Perfluoroalkyl(Aryl) Sufonimide (Pfsi) Zwitterions For Solid Acid Alkylation Catalysts, Husan Ahmad 2015 East Tennessee State University

Synthesis Of Diazonium Perfluoroalkyl(Aryl) Sufonimide (Pfsi) Zwitterions For Solid Acid Alkylation Catalysts, Husan Ahmad

Undergraduate Honors Theses

The final objective of this project is to create an environmentally friendly solid alkylation catalyst to replace the commercially available liquid acid catalysts, such as hydrofluoric acid and sulfuric acid, which are used in the petroleum industry. My research target is to synthesize the diazonium PFSI zwitterions, which can be chemically grafted on the silica as the solid alkylation catalyst. A 4-steps synthesis is designed to prepare the diazonium PFSI zwitterions. The first two steps were successfully completed in the lab. The first one is to prepare the starting material of 4-nitrobenzenesulfonamide from an ammonolysis reaction between 4-nitrobenzene sulfonyl chloride …


One-Step Synthesis Of Kanamycin Functionalized Gold Nanoparticles With Potent Antibacterial Activity Against Resistant Bacterial Strains, Hitesh Kumar Waghwani 2015 Western Kentucky University

One-Step Synthesis Of Kanamycin Functionalized Gold Nanoparticles With Potent Antibacterial Activity Against Resistant Bacterial Strains, Hitesh Kumar Waghwani

Masters Theses & Specialist Projects

On the verge of entering the post-antibiotic era, numerous efforts are in place to regain the losing potential of antibiotics which are proving ineffective against common bacterial infections. Engineered nanomaterials, especially gold nanoparticles (GNPs) capped with antibacterial agents are proving to be an effective and novel strategy against multi-drug resistant (MDR) bacteria. In this study, we report a one-step synthesis of kanamycin-capped GNPs (20 ± 5 nm) utilizing the combined reducing and capping ability of the aminoglycoside antibiotic, kanamycin. Antibacterial assays showed dosedependent broad spectrum activity of Kan-GNPs against Gram-positive (Staphylococcus epidermidis and Enterococcus durans), Gram-negative (Escherichia coli and Enterobacter …


Thiophene And Derivatives For Use In Pyridazines And Thiapentalenes, Benjamin Tyree Cannon 2015 Western Kentucky University

Thiophene And Derivatives For Use In Pyridazines And Thiapentalenes, Benjamin Tyree Cannon

Masters Theses & Specialist Projects

This thesis introduces the idea of Band Theory and how it can be used to describe a solid-state materials ability to carry an electrical charge. Next, this thesis defines what makes a material a conductor, semiconductor, or insulator. Semiconductors are attracting interest in chemistry, as well as in the manufacturing of consumer electronics, because of their ability to carry a charge, without the risk of short-circuiting like traditional conductors.1,4 Organic semiconductors, which behave differently than traditional semiconductors, are of particular interest because they offer mechanical flexibility, lowcost, simplicity, and the ability to be manufactures at low temperatures.6 Nonorganic and organic …


Green Chemistry As A Tool For Understanding The Toxic Substances Control Act: A Lecture Module For Undergraduate Students, Molly R. Blessing 2015 University of Connecticut - Storrs

Green Chemistry As A Tool For Understanding The Toxic Substances Control Act: A Lecture Module For Undergraduate Students, Molly R. Blessing

Honors Scholar Theses

The Toxic Substances Control Act (TSCA) is the central form of chemical regulation existent in the United States today, yet scientists are often unaware or uncertain of its provisions. Violations of TSCA by unknowing chemists set industry and government unnecessarily at odds. A lecture on TSCA was developed for undergraduate students that uses the concept of green chemistry to promote interest and incentivize learning. Green chemistry methods are cleaner and less wasteful than traditional chemical ones, and many companies using them are at the forefront of technological innovation. The lecture explains both green chemistry and TSCA, includes company case studies, …


Novel [3,3]- And [1,3]- Rearrangements Of Azole-Derived N,X-Ketene Acetals, Sefat A. Alwarsh 2015 University of Arkansas, Fayetteville

Novel [3,3]- And [1,3]- Rearrangements Of Azole-Derived N,X-Ketene Acetals, Sefat A. Alwarsh

Graduate Theses and Dissertations

The formation of carbon-carbon bonds in organic chemistry is fundamentally important. One of the major reactions that chemists have widely investigated is the Claisen rearrangement. Based on the fundamental features of this rearrangement, chemists exploited the capability of the transformation and invented their own variations of Claisen-type rearrangements. Our goal in this project is to develop a novel variation of the Claisen rearrangement using azole compounds, which are common heteroaromatic ring systems that are present extensively in the biomedically important natural products. We propose here novel methodologies of preparing 2-substitution azole derivatives using aza-based Claisen rearrangement, N,X-ketene acetals that requires …


Methodology Development In Green Chemistry: Oxoammonium Salt Oxidations And Fluoroform Incorporation, Rebecca J. Wiles 2015 University of Connecticut - Storrs

Methodology Development In Green Chemistry: Oxoammonium Salt Oxidations And Fluoroform Incorporation, Rebecca J. Wiles

Honors Scholar Theses

Central to the advancement of small molecule synthesis is the ability to develop methodologies that reimagine well known chemistry in a new, environmentally friendly manner. In this thesis two central themes emerge: oxoammonium salt oxidations and trifluoromethyl incorporation using fluoroform gas. Several projects have been developed surrounding oxoammonium salt chemistry, which are featured by their mild conditions, ease of use, and the metal-free, recyclable nature of the oxidant. Trifluoromethylation using fluoroform gas finds its utility in the use of a potent greenhouse gas waste product as a benchtop reagent.


Characterization Of Cellulase Enzyme Inhibitors Formed During The Chemical Pretreatments Of Rice Straw, Kalavathy Rajan 2015 University of Arkansas, Fayetteville

Characterization Of Cellulase Enzyme Inhibitors Formed During The Chemical Pretreatments Of Rice Straw, Kalavathy Rajan

Graduate Theses and Dissertations

Production of fuels and chemicals from a renewable and inexpensive resource such as lignocellulosic biomass is a lucrative and sustainable option for the advanced biofuel and bio-based chemical platform. Agricultural residues constitute the bulk of potential feedstock available for cellulosic fuel production. On a global scale, rice straw is the largest source of agricultural residues and is therefore an ideal crop model for biomass deconstruction studies. Lignocellulosic biofuel production involves the processes of biomass conditioning, enzymatic saccharification, microbial fermentation and ethanol distillation, and one of the major factors affecting its techno-economic feasibility is the biomass recalcitrance to enzymatic saccharification. Preconditioning …


The 8-Silyloxyquinoline Scaffold As A Versatile Platform For The Sensitive Detection Of Aqueous Fluoride, Xinqi Zhou 2015 University of Nebraska-Lincoln

The 8-Silyloxyquinoline Scaffold As A Versatile Platform For The Sensitive Detection Of Aqueous Fluoride, Xinqi Zhou

Department of Chemistry: Dissertations, Theses, and Student Research

As one of the most essential elements in nature, fluoride has been well known and extensively studied since the 16th century. Since then the two-edged nature of fluoride in biological systems has been well described. Specifically, moderate fluoride exposure can aid in tooth and bone development, while fluoride overexposure results in the depilating disease known as fluorosis. Because of the side effects upon overexposure of fluoride, there is a need to develop fast and straight forward methods to sensitively and selectively detect and quantify fluoride concentration in drinking water. With this goal in mind and by taking advantage of …


Synthesis Of Β-Triphosphotriester Pronucleotides, Yousef Beni, Chandravanu Dash, Keykavous Parang 2015 Tennessee State University

Synthesis Of Β-Triphosphotriester Pronucleotides, Yousef Beni, Chandravanu Dash, Keykavous Parang

Chemistry Faculty Research

Dinucleoside phosphorochloridite was synthesized from phosphorus trichloride and three nucleoside analogs, 3′-fluoro-2′,3′-dideoxythymidine (FLT), 2′,3′-dideoxy-5-fluoro-3′-thiacytidine (FTC), and 2′,3′-dideoxy-3′-thiacytidine (3TC), in a multistep synthesis. Polymer-bound N-Boc p-acetoxybenzyl 5′-O-2′-deoxythymidine was reacted with dinucleoside phosphorochloridite in the presence of 2,6-lutidine, followed by the reaction with dodecyl alcohol and 5-(ethylthio)-1H-tetrazole, oxidation with tert-butyl hydroperoxide, and acidic cleavage, respectively, to afford the β-triphosphotriester derivatives containing three different nucleosides.


Novel Photodynamic Therapy Agents: Biochemical Analysis, Eboni D. Pullen 2015 Georgia Southern University

Novel Photodynamic Therapy Agents: Biochemical Analysis, Eboni D. Pullen

Honors College Theses

Bioinorganic photochemistry is a rapidly advancing research area in the field of bioinorganic chemistry. This project seeks to build upon the growing field by synthesizing and analyzing new photodynamic therapy (PDT) agents. There are three major generations of PDT agents. The first generation consists of chemically modified natural hematoporphyrins, which are not of great interest in the phototherapeutic field due to their low distinguishability between tumor cells and healthy cells, and extended skin photosensitivity in patients. The second generation consists of organic dyes, aromatic hydrocarbons, polypyrolics complexes, and semi-conductors, but is also not of much interest due to the same …


The Phytotoxic Virulence Factor Bcsnod 1 From Botrytis Cinerea, Gnana Sreekar Nidadavolu, Hana McFeeters 2015 University of Alabama in Huntsville

The Phytotoxic Virulence Factor Bcsnod 1 From Botrytis Cinerea, Gnana Sreekar Nidadavolu, Hana Mcfeeters

Research Horizons Day Posters

No abstract provided.


Synthesis And Characterization Study Of Biomimetic Tetradentate Ni Complexes, Nirupama Singh 2015 University of Alabama in Huntsville

Synthesis And Characterization Study Of Biomimetic Tetradentate Ni Complexes, Nirupama Singh

Research Horizons Day Posters

No abstract provided.


Active Site Mimics Of Nickel Superoxide Dismutase, Victoria Grace Snider 2015 University of Alabama in Huntsville

Active Site Mimics Of Nickel Superoxide Dismutase, Victoria Grace Snider

Research Horizons Day Posters

No abstract provided.


High Mannose Binding Lectins - A New Class Of Attractive Antifungals, Tyler Hays Jones 2015 University of Alabama in Huntsville

High Mannose Binding Lectins - A New Class Of Attractive Antifungals, Tyler Hays Jones

Research Horizons Day Posters

No abstract provided.


Non-Covalent Affinity Materials For Protein Structure Determination Via Single Particle Reconstruction Analysis Cryo-Electron Microscopy, Minji Ha 2015 Purdue University

Non-Covalent Affinity Materials For Protein Structure Determination Via Single Particle Reconstruction Analysis Cryo-Electron Microscopy, Minji Ha

Open Access Theses

Single particle analysis (SPA) by cryogenic electron microscopy (Cryo-EM) is one of the powerful tools for determining biological macromolecule structure, particularly when combined with computational methods or X-ray crystallography. However, the SPA is challenged by sample processing efficiency. In this work, polyrotaxane (PRTx) was designed and synthesized such that laterally and rotationally mobile lysine nitrolicacetic acid (Lys-NTA) modified α-cyclodextrins (α-CD) were threaded onto a polyethylene glycol (PEG) core. Polyrotaxanes threaded with amine modified α-CD were also designed and synthesized for stoichiometric control of His-tagged protein capture by PRTx. For higher efficiency of single particle analysis along a single strand of …


A Bracketing Method For Proton Affinity Measurements Of Dehydro-And Didehydropyridines, Guannan Li 2015 Purdue University

A Bracketing Method For Proton Affinity Measurements Of Dehydro-And Didehydropyridines, Guannan Li

Open Access Theses

Proton affinity (PA) is a fundamental property that is related to the structure and reactivity of a molecule. Currently, very few experimental PA values are available for organic radicals and none for biradicals. Equilibrium methods cannot be used for these measurements. The traditional bracketing method is based on monitoring reactions of different reference bases with known proton affinities with the protonated analyte for the occurrence of exothermic proton transfer to determine the upper and lower limits of proton affinity. However, the energy deposited into the precursor ions upon CAD when forming protonated radicals may cause endothermic proton transfer reactions occur …


Studies Of Arctic Halogen Chemistry From The Snowpack To The Gas Phase, Kyle D Custard 2015 Purdue University

Studies Of Arctic Halogen Chemistry From The Snowpack To The Gas Phase, Kyle D Custard

Open Access Dissertations

The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime has been a focus of active research over the past several decades. Both of these phenomena have been linked to chemical reactions with halogen radicals. In particular, bromine atoms have been shown to act as the primary driver for these chemical depletions, although both chlorine and iodine atoms also contribute. Molecular bromine, along with its oxidation products, have been well studied in the Arctic, yet chlorine has not. Chlorine is known to impact the local oxidation capacity via its high reactivity with volatile organic compounds. Despite …


Comprehensive Organic Synthesis Ii (Book Review), Jeffrey H. Glans 2015 Sacred Heart University

Comprehensive Organic Synthesis Ii (Book Review), Jeffrey H. Glans

Chemistry & Physics Faculty Publications

Jeffrey Glans' review focuses on the online version available through ScienceDirect.

Knochel, Paul and Gary A. Molander, eds. Comprehensive Organic Synthesis II. 2nd ed. Amsterdam; Waltham, MA: Elsevier, 2014. Web.

http://www.sciencedirect.com/science/referenceworks/9780080977430

ISBN: 9780080977430 (e-book)


New Methods For Synthesis Of Organic Peroxides And Application Of Peroxide Electrophiles To Synthesis Of Functionalized Ethers, Shiva Kumar Kyasa 2015 University of Nebraska-Lincoln

New Methods For Synthesis Of Organic Peroxides And Application Of Peroxide Electrophiles To Synthesis Of Functionalized Ethers, Shiva Kumar Kyasa

Department of Chemistry: Dissertations, Theses, and Student Research

New Method for Synthesis of Alkyl Hydroperoxides: There are a number of methods reported for synthesis of alkyl hydroperoxides, but most of them suffer either from poor yields or the formation of unwanted side products. I will be discussing new methodology for efficient synthesis of pure samples of 1° and 2° alkyl hydroperoxides via alkylation of readily available cyclododecanone 1,1-dihydroperoxide followed by hydrolysis of the resulting bis peroxyacetals.

Peroxide Electrophiles for Synthesis of Functionalized Ethers: Peroxides are underexplored functional groups as precursors for C-O bond formation and ether synthesis. The reactivity of dialkyl peroxides towards organometallics such as alkyl lithium …


Toward Electronic Materials Based On Metal Pincer-Type Complexes, Jeewantha Sampath Hewage 2015 Marquette University

Toward Electronic Materials Based On Metal Pincer-Type Complexes, Jeewantha Sampath Hewage

Master's Theses (2009 -)

There is currently a lot of interest in developing electrically conducting or semiconducting metal-organic frameworks (MOF's), highly porous materials constructed by organic ligands bridging metal centers. Typically MOF's are non-conducting and, moreover, they are susceptible to hydrolytic degradation. If hydrolytically stable and electrically conducting MOFs could be realized, then revolutionary new technologies could be envisioned. Currently, organic dicarboxylates are used as bridging organic ligands and one simple strategy to obtain the desired materials is to explore other ligand systems. Pincer ligands are organic compounds that are uninegative and bind metals in a tridentate, meridional fashion with two five-member chelate rings. …


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