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Medicinal-Pharmaceutical Chemistry Commons™

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1,034 full-text articles. Page 43 of 47.

A Facile, Low-Cost Route For The Preparation Of Calcined Porous Calcite And Dolomite And Their Application As Heterogeneous Catalysts In Biodiesel Production, Rui Wang, Hu Li, Fei Chang, Jiafeng Luo, Milford A. Hanna, Daoyang Tan, Deyu Hu, Yuping Zhang, Baoan Song, Song Yang 2013 Guiyang College

A Facile, Low-Cost Route For The Preparation Of Calcined Porous Calcite And Dolomite And Their Application As Heterogeneous Catalysts In Biodiesel Production, Rui Wang, Hu Li, Fei Chang, Jiafeng Luo, Milford A. Hanna, Daoyang Tan, Deyu Hu, Yuping Zhang, Baoan Song, Song Yang

Department of Chemistry: Faculty Publications

Despite their potential for biodiesel synthesis, directly calcined minerals rich in magnesium/calcium carbonates are used at the expense of large amounts of the catalyst, high alcohol loading, long processing times, and severe conditions. We report a facile and low-cost route for preparing calcined porous calcite (CPC) and dolomite (CPD) via simple thermal decomposition of the reaction mixtures of natural calcite and dolomite with stearic acid. CPC and CPD, both of which have porous structures, were compared with previously reported catalysts and examined as promising heterogeneous base catalysts under mild conditions. A 40% increase in conversion through CPC and CDC was …


Re2o7-Catalyzed Reaction Of Hemiacetals And Aldehydes With O-, S-, And C-Nucleophiles, Wantanee Sittiwong, Michael W. Richardson, Charles E. Schiaffo, Thomas J. Fisher, Patrick H. Dussault 2013 University of Nebraska - Lincoln

Re2o7-Catalyzed Reaction Of Hemiacetals And Aldehydes With O-, S-, And C-Nucleophiles, Wantanee Sittiwong, Michael W. Richardson, Charles E. Schiaffo, Thomas J. Fisher, Patrick H. Dussault

Department of Chemistry: Faculty Publications

Re(VII) oxides catalyze the acetalization, monoperoxyacetalization, monothioacetalization and allylation of hemiacetals. The reactions, which take place under mild conditions and at low catalyst loadings, can be conducted using hemiacetals, the corresponding O-silyl ethers, and, in some cases, the acetal dimers. Aldehydes react under similar conditions to furnish good yields of dithioacetals. Reactions of hemiacetals with nitrogen nucleophiles are unsuccessful. 1,2-Dioxolan-3-ols (peroxyhemiacetals) undergo Re(VII)-promoted etherification but not allylation. Hydroperoxyacetals (1-alkoxyhydroperoxides) undergo selective exchange of the alkoxide group in the presence of either Re2O7 or a Brønsted acid.


Stress Reduction For Pillar Filled Structures, Rebecca J. Nikolic, Adam Conway, Qinghui Shao, Lars Voss, Chin Li Cheung, Mushtaq A. Dar 2013 Oakland, CA

Stress Reduction For Pillar Filled Structures, Rebecca J. Nikolic, Adam Conway, Qinghui Shao, Lars Voss, Chin Li Cheung, Mushtaq A. Dar

Department of Chemistry: Faculty Publications

According to one embodiment, an apparatus for detecting neutrons includes an array of pillars, wherein each of the pillars comprises a rounded cross sectional shape where the cross section is taken perpendicular to a longitudinal axis of the respective pillar, a cavity region between each of the pillars, and a neutron sensitive material located in each cavity region.


Drug Delivery Via Nanoparticles, Laura Ward 2013 Parkland College

Drug Delivery Via Nanoparticles, Laura Ward

Natural Sciences Student Research Presentations

Much research is being conducted to investigate the potential use of nanoparticles as an efficient drug delivery system. Important characteristics of nanoparticles that affect how they interact with biological systems include size, composition ,surface characteristics and shape. One of the many potential medical uses of nanoparticles is targeted drug delivery; nanoparticles have the potential to deliver concentrated amounts of medication to select areas of the body, reducing toxic effects in healthy areas of the body.


Lyrica, Shannon Hayward 2013 Parkland College

Lyrica, Shannon Hayward

Natural Sciences Student Research Presentations

Illustrates the chemical components of Lyrica, a pain management medication.


Cymbalta, Ryann S. Elder 2013 Parkland College

Cymbalta, Ryann S. Elder

Natural Sciences Student Research Presentations

Poster outlines the chemical make-up and uses of Cymbalta (Duloxetine Hydrochloride) which is used to treat major depression, generalized anxiety, fibromyalgia, and diabetic neuropathy. This is a project for the Natural Sciences Poster Session at Parkland College.


Xenical, Megan Brown 2013 Parkland College

Xenical, Megan Brown

Natural Sciences Student Research Presentations

Poster outlines the chemical make-up and uses of the weight loss drug, Xenical. This is a project for the Natural Sciences Poster Session at Parkland College.


Effects Of Iodine On Radioactive Treatment, Jun Ho Park 2013 Parkland College

Effects Of Iodine On Radioactive Treatment, Jun Ho Park

Natural Sciences Student Research Presentations

This poster investigates the causes and treatments of radioactive exposure and the diseases that follow and outlines how Iodine plays an effective treatment. Focuses on a specific isotope of Iodine, I-131, investigating its effects and uses in radioactive activity and treatment. This is a project for the Natural Sciences Poster Session at Parkland College.


Levothyroxine, Vanessa Powell 2013 Parkland College

Levothyroxine, Vanessa Powell

Natural Sciences Student Research Presentations

Poster outlines the chemical make-up and uses of the thyroid medication, Levothyroxine. This is a project for the Natural Sciences Poster Session at Parkland College.


Preparation Of Phosphonoterephthalic Acids Via Palladium-Catalyzed Coupling Of Aromatic Iodoesters, Nathaniel Ivan, Vladimir Benin, Alexander Morgan 2013 University of Dayton

Preparation Of Phosphonoterephthalic Acids Via Palladium-Catalyzed Coupling Of Aromatic Iodoesters, Nathaniel Ivan, Vladimir Benin, Alexander Morgan

Chemistry Faculty Publications

The current article reports in detail the preparation of two phosphonoterephthalic acids: 2-phosphonoterephthalic acid (1) and 2,5-diphosphonoterephthalic acid (2). Efficient, scalable syntheses have been developed for both compounds based on Pd-catalyzed coupling reactions of iodinated terephthalate esters. Phosphonoterephthalic acids are potentially useful as flame-retardant additives or as monomers for the construction of acid-pendant polymer chains.


Antiprotozoal Activity Against Acanthamoeba Castellanii, Leah E. Woodall 2013 University of Alabama in Huntsville

Antiprotozoal Activity Against Acanthamoeba Castellanii, Leah E. Woodall

Summer Community of Scholars Posters (RCEU and HCR Combined Programs)

No abstract provided.


High-Performance Flexible Solid-State Supercapacitors Based On Mno2-Decorated Nanocarbon Electrodes, Yang Gao, Yun Shen Zhou, Min Qian, Hao Ming Li, Jody G. Redepenning, Li Sha Fan, Xiang Nan He, Wei Xiong, Masoud Majhouri-Samani, Lan Jiang, Yongfeng Lu 2013 University of Nebraska-Lincoln

High-Performance Flexible Solid-State Supercapacitors Based On Mno2-Decorated Nanocarbon Electrodes, Yang Gao, Yun Shen Zhou, Min Qian, Hao Ming Li, Jody G. Redepenning, Li Sha Fan, Xiang Nan He, Wei Xiong, Masoud Majhouri-Samani, Lan Jiang, Yongfeng Lu

Department of Chemistry: Faculty Publications

Flexible energy storage units are highly desired to meet the ever-increasing demands for flexible electronics. In this paper, highly flexible solid-state supercapacitors are fabricated using MnO2-decorated nanocarbon electrodes and 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide–poly(vinylidene fluoride)- hexafluoropropylene ([EMIM][NTf2]–PVdF(HFP)) gel electrolytes. The flexible electrodes are prepared by electrodepositing MnO2 onto the carbon nanotube/carbon nanoonion (CNT/CNO) films. CNT/CNO films have a large surface area for MnO2 deposition and work as mechanical supports with high flexibility and light weight. CNOs act as spacers to separate CNTs, introducing mesopores inside the CNT/CNO films for preventing pore blocking during MnO2 deposition. The supercapacitor exhibits …


Probing The Bifunctional Catalytic Activity Of Ceria Nanorods Towards The Cyanosilylation Reaction, Gonghua Wang, Lu Wang, Xiang Fei, Yunyun Zhou, Renat F. Sabirianov, Wai Ning Mei, Chin Li Cheung 2013 University of Nebraska-Lincoln

Probing The Bifunctional Catalytic Activity Of Ceria Nanorods Towards The Cyanosilylation Reaction, Gonghua Wang, Lu Wang, Xiang Fei, Yunyun Zhou, Renat F. Sabirianov, Wai Ning Mei, Chin Li Cheung

Department of Chemistry: Faculty Publications

Ceria nanorods were demonstrated to be an active, bifunctional catalyst for the cyanosilylation of aldehydes. The catalytic activity of ceria was shown to be positively correlated with a decrease in the coordination numbers of neighbouring oxygen atoms around cerium atoms in the catalyst. Chemisorption and density functional theory studies suggested that the coordinatively unsaturated cerium sites exposed by the surface oxygen vacancy defects functioned as Lewis acid sites and the neighbouring oxygen atoms behaved as Lewis base sites in the catalytic cycle.


An Expanded Genetic Code In Mammalian Cells With A Functional Quadruplet Codon, Wei Niu, Peter G. Schultz, Jiantao Guo 2013 University of Nebraska-Lincoln

An Expanded Genetic Code In Mammalian Cells With A Functional Quadruplet Codon, Wei Niu, Peter G. Schultz, Jiantao Guo

Department of Chemistry: Faculty Publications

We have utilized in vitro evolution to identify tRNA variants with significantly enhanced activity for the incorporation of unnatural amino acids into proteins in response to a quadruplet codon in both bacterial and mammalian cells. This approach will facilitate the creation of an optimized and standardized system for the genetic incorporation of unnatural amino acids using quadruplet codons, which will allow the biosynthesis of biopolymers that contain multiple unnatural building blocks.


Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard 2013 University of Kentucky

Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard

Theses and Dissertations--Pharmacy

The rapid increase in antibiotic resistance demands the identification of novel antibiotics with novel targets. One potential antibacterial target is the biosynthesis of peptidoglycan cell wall, which is both ubiquitous and necessary for bacterial survival. Both the caprazamycin-related compounds A-90289 and muraminomicin, as well as the capuramycin-related compounds A-503083 and A-102395 are potent inhibitors of the translocase I enzyme, one of the key enzymes required for cell wall biosynthesis. The caprazamycin-related compounds contain a core nonproteinogen b-hydroxy-a-amino acid referred to as 5’-C-glycyluridine (GlyU). Residing within the biosynthetic gene clusters of the aforementioned compounds is a shared open reading …


Reaction Between Polyol-Esters And Phosphate Esters In The Presence Of Metal Carbides, David W. Johnson, Carolyn Iacullo, John E. Hils 2013 University of Dayton

Reaction Between Polyol-Esters And Phosphate Esters In The Presence Of Metal Carbides, David W. Johnson, Carolyn Iacullo, John E. Hils

Chemistry Faculty Publications

The reaction of metal carbides with polyol esters found in aerospace lubricants and phosphate esters commonly used as additives was investigated. Carbides were of particular interest since modern materials under consideration at high temperature bearings have surfaces that are primarily metal carbides. Vanadium and chromium carbide were found to react with the ester and phosphate ester by a transesterification reaction, producing an alkyl phosphate which is less stable than the aromatic phosphate esters. In the process, the metal carbide is converted to the metal phosphate and metal polyphosphate, evidenced by the infrared and Raman spectra of the solid residue and …


Probing The Bifunctional Catalytic Activity Of Ceria Nanorods Towards The Cyanosilylation Reaction, Gonghua Wang, Lu Wang, Xiang Fei, Yunyun Zhou, Renat F. Sabirianov, Wai-Ning Mei, Chin Li Cheung 2013 University of Nebraska-Lincoln

Probing The Bifunctional Catalytic Activity Of Ceria Nanorods Towards The Cyanosilylation Reaction, Gonghua Wang, Lu Wang, Xiang Fei, Yunyun Zhou, Renat F. Sabirianov, Wai-Ning Mei, Chin Li Cheung

Department of Chemistry: Faculty Publications

Ceria nanorods were demonstrated to be an active, bifunctional catalyst for the cyanosilylation of aldehydes. The catalytic activity of ceria was shown to be positively correlated with a decrease in the coordination numbers of neighbouring oxygen atoms around cerium atoms in the catalyst. Chemisorption and density functional theory studies suggested that the coordinatively unsaturated cerium sites exposed by the surface oxygen vacancy defects functioned as Lewis acid sites and the neighbouring oxygen atoms behaved as Lewis base sites in the catalytic cycle.


Porous Polymer Coatings As Substrates For The Formation Of High-Fidelity Micropatterns By Quill-Like Pens, Michael Hirtz, Marcus Lyon, Wenqian Feng, Andrea E. Holmes, Harald Fuchs, Pavel A. Levkin 2013 Karlsruhe Institute of Technology

Porous Polymer Coatings As Substrates For The Formation Of High-Fidelity Micropatterns By Quill-Like Pens, Michael Hirtz, Marcus Lyon, Wenqian Feng, Andrea E. Holmes, Harald Fuchs, Pavel A. Levkin

Department of Chemistry: Faculty Publications

We explored the potentials of microarray printing using quill-like microcantilevers onto solid supports that are typically used in microspot printing, including paper, polymeric nitrocellulose and nylon membranes. We compared these membranes with a novel porous poly(2-hydroxyethyl methacrylate-co-ethylene dimethacrylate) support (HEMA) with narrow pore size distribution in the 150 nm range, which demonstrated advantages in pattern definition, spot homogeneity, and consistent spot delivery of different dyes (phloxine B and bromophenol blue) with diameters of several micrometres. The bromophenol blue arrays on HEMA support were used to detect the presence of bovine serum albumin (BSA). In the presence of BSA, …


Single Transcriptional And Translational Preq1 Riboswitches Adopt Similar Pre-Folded Ensembles That Follow Distinct Folding Pathways Into The Same Ligand-Bound Structure, Krishna C. Suddala, Arlie J. Rinaldi, Jun Feng, Anthony M. Mustoe, Catherine D. Eichhorn, Joseph A. Liberman, Joseph E. Wedekind, Hashim M. Al-Hashimi, Charles L. Brooks III, Nils G. Walter 2013 University of Michigan - Ann Arbor

Single Transcriptional And Translational Preq1 Riboswitches Adopt Similar Pre-Folded Ensembles That Follow Distinct Folding Pathways Into The Same Ligand-Bound Structure, Krishna C. Suddala, Arlie J. Rinaldi, Jun Feng, Anthony M. Mustoe, Catherine D. Eichhorn, Joseph A. Liberman, Joseph E. Wedekind, Hashim M. Al-Hashimi, Charles L. Brooks Iii, Nils G. Walter

Department of Chemistry: Faculty Publications

Riboswitches are structural elements in the 50 untranslated regions of many bacterial messenger RNAs that regulate gene expression in response to changing metabolite concentrations by inhibition of either transcription or translation initiation. The preQ1 (7-aminomethyl-7-deazaguanine) riboswitch family comprises some of the smallest metabolite sensing RNAs found in nature. Once ligand-bound, the transcriptional Bacillus subtilis and translational Thermoanaerobacter tengcongensis preQ1 riboswitch aptamers are structurally similar RNA pseudoknots; yet, prior structural studies have characterized their ligand-free conformations as largely unfolded and folded, respectively. In contrast, through single molecule observation, we now show that, at nearphysiological Mg2+ concentration and pH, …


Iodonium Cyclophanes For Secure Arene Functionalization, Stephen DiMagno 2013 Lincoln, NE

Iodonium Cyclophanes For Secure Arene Functionalization, Stephen Dimagno

Department of Chemistry: Faculty Publications

This disclosure relates to compounds, reagents, and methods useful in the synthesis of aryl fluorides, for example, in the preparation of 18F labeled radiotracers. For example, this disclosure provides universal “locked” aryl substituents that result in StereoElectronic Control of Unidirectional Reductive Elimination (SECURE) from diaryliodonium salts. The reagents and methods provided herein may be used to access a broad range of compounds, including aromatic compounds, heteroaromatic compounds, amino acids, nucleotides, and synthetic compounds.


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