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2024

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Articles 1321 - 1341 of 1341

Full-Text Articles in Chemistry

Mixed Quantum/Classical Calculations Of Rotationally Inelastic Scattering In The Co + Co System: A Comparison With Fully Quantum Results, Dulat Bostan, Bikramaditya Mandal, Carolin Joy, Michał Żółtowski, François Lique, Jérôme Loreau, Ernesto Quintas-Sánchez, Adrian Batista-Planas, Richard Dawes, Dmitri Babikov Jan 2024

Mixed Quantum/Classical Calculations Of Rotationally Inelastic Scattering In The Co + Co System: A Comparison With Fully Quantum Results, Dulat Bostan, Bikramaditya Mandal, Carolin Joy, Michał Żółtowski, François Lique, Jérôme Loreau, Ernesto Quintas-Sánchez, Adrian Batista-Planas, Richard Dawes, Dmitri Babikov

Chemistry Faculty Research and Publications

An updated version of the CO + CO potential energy surface from [R. Dawes, X. G. Wang and T. Carrington, J. Phys. Chem. A 2013, 117, 7612] is presented, that incorporates an improved treatment of the asymptotic behavior. It is found that this new surface is only slightly different from the other popular PES available for this system in the literature [G. W. M. Vissers, P. E. S. Wormer and A. Van Der Avoird, Phys. Chem. Chem. Phys. 2003, 5, 4767]. The differences are quantified by expanding both surfaces over a set of analytic functions and comparing the behavior of …


Mixed Quantum/Classical Theory For Rotationally Inelastic Scattering Of Identical Collision Partners: Revised, Dulat Bostan, Bikramaditya Mandal, Dmitri Babikov Jan 2024

Mixed Quantum/Classical Theory For Rotationally Inelastic Scattering Of Identical Collision Partners: Revised, Dulat Bostan, Bikramaditya Mandal, Dmitri Babikov

Chemistry Faculty Research and Publications

Mixed quantum/classical theory (MQCT) for the treatment of rotationally inelastic transitions during collisions of two identical molecules, described either as indistinguishable or distinguishable partners, is reviewed. The treatment of two molecules as indistinguishable includes symmetrization of rotational wavefunctions, introduces exchange parity, and leads to state-to-state transition matrix elements different from those in the straightforward treatment of molecules as distinguishable. Moreover, the treatment of collision partners as indistinguishable is eight times faster. Numerical results presented herein for H2 + H2, CO + CO and H2O + H2O systems indicate good agreement of MQCT calculations …


Scattering In Extreme Environments: General Discussion, Dmitri Babikov Jan 2024

Scattering In Extreme Environments: General Discussion, Dmitri Babikov

Chemistry Faculty Research and Publications

No abstract provided.


Scattering At Condensed-Phase Surfaces: General Discussion, Dmitri Babikov Jan 2024

Scattering At Condensed-Phase Surfaces: General Discussion, Dmitri Babikov

Chemistry Faculty Research and Publications

No abstract provided.


Benzoquinone Ligand-Enabled Ruthenium-Catalyzed Deaminative Coupling Of 2-Aminoaryl Aldehydes And Ketones With Branched Amines For Regioselective Synthesis Of Quinoline Derivatives, Krishna Prasad Gnyawali, Aldiyar Shakenov, Pandula T. Kirinde Arachchige, Chae S. Yi Jan 2024

Benzoquinone Ligand-Enabled Ruthenium-Catalyzed Deaminative Coupling Of 2-Aminoaryl Aldehydes And Ketones With Branched Amines For Regioselective Synthesis Of Quinoline Derivatives, Krishna Prasad Gnyawali, Aldiyar Shakenov, Pandula T. Kirinde Arachchige, Chae S. Yi

Chemistry Faculty Research and Publications

The catalytic system generated in situ from the cationic Ru–H complex [(C6H6)(PCy3)(CO)RuH]+BF4– (1) with 2,3,4,5-tetrachloro-1,2-benzoquinone (L1) was found to be highly effective for promoting the deaminative coupling reaction of 2-aminoaryl aldehydes with branched amines to form 2-substituted quinoline products. The analogous deaminative coupling reaction of 2-aminoaryl ketones with branched amines led to the regioselective formation of 2,4-disubstituted quinoline products. A number of biologically active quinoline derivatives including graveolinine and a triplex DNA intercalator have been synthesized by using the catalytic method.


Anticancer Drugs Of Lysine Specific Histone Demethylase-1 (Lsd1) Display Variable Inhibition On Nucleosome Substrates, Dulmi Senanayaka, Danyun Zeng, Emre Deniz, Indunil K. Priyankara, Joceline Helmbreck, Owen Schneider, Aashay Mardikar, Aykut Uren, Nicholas J. Reiter Jan 2024

Anticancer Drugs Of Lysine Specific Histone Demethylase-1 (Lsd1) Display Variable Inhibition On Nucleosome Substrates, Dulmi Senanayaka, Danyun Zeng, Emre Deniz, Indunil K. Priyankara, Joceline Helmbreck, Owen Schneider, Aashay Mardikar, Aykut Uren, Nicholas J. Reiter

Chemistry Faculty Research and Publications

Lysine specific demethylase-1 (LSD1) serves as a regulator of transcription and represents a promising epigenetic target for anticancer treatment. LSD1 inhibitors are in clinical trials for the treatment of Ewing’s sarcoma (EWS), acute myeloid leukemia, and small cell lung cancer, and the development of robust inhibitors requires accurate methods for probing demethylation, potency, and selectivity. Here, the inhibition kinetics on the H3K4me2 peptide and nucleosome substrates was examined, comparing the rates of demethylation in the presence of reversible [CC-90011 (PD) and SP-2577 (SD)] and irreversible [ORY-1001 (ID) and tranylcypromine (TCP)] inhibitors. Inhibitors were also subject to viability studies in three …


Tracking The Reaction Networks Of Criegee Intermediates Formed In The Ozone-Assisted Oxidation Reactions Of C5 Acyclic And Endocyclic Alkenes, Arden M. Floyd Jan 2024

Tracking The Reaction Networks Of Criegee Intermediates Formed In The Ozone-Assisted Oxidation Reactions Of C5 Acyclic And Endocyclic Alkenes, Arden M. Floyd

Honors Undergraduate Theses

Uni- and bi-molecular reactions involving Criegee intermediates (CIs), characteristic to alkene-ozone reactions, play an important role in synthetic organic, atmospheric, and combustion chemistry. However, difficulty in detecting key intermediates has prevented a thorough understanding of the details of the ozonolysis mechanism. To gain new insights into how alkene structure affects the CI network, the ozone assisted oxidation reactions of trans-2-pentene and cyclopentene are investigated between 320 K and 760 K in an atmospheric pressure jet stirred reactor (JSR). Molecular-beam mass spectrometry in conjunction with single photon tunable synchrotron VUV radiation is used to identify elusive intermediates by means of …


Structural And Magnetic Properties Of Molecular Beam Epitaxy (Mnsb2te4)X(Sb2te3)1−X Topological Materials With Exceedingly High Curie Temperature, Candice R. Forrester, Christophe Testelin, Kaushini Wickramasinghe, Ido Levy, Dominique Demaille, David Hrabovsky, Xiaxin Ding, Lisa Krusin-Elbaum, Gustavo Lopez, Maria C. Tamargo Jan 2024

Structural And Magnetic Properties Of Molecular Beam Epitaxy (Mnsb2te4)X(Sb2te3)1−X Topological Materials With Exceedingly High Curie Temperature, Candice R. Forrester, Christophe Testelin, Kaushini Wickramasinghe, Ido Levy, Dominique Demaille, David Hrabovsky, Xiaxin Ding, Lisa Krusin-Elbaum, Gustavo Lopez, Maria C. Tamargo

Publications and Research

Tuning the properties of magnetic topological materials is of interest to realize exotic physical phenomena, new quantum phases and quasiparticles, and topological spintronic devices. However, current topological materials exhibit Curie temperature (TC) values far below those needed for practical applications. In recent years, significant progress has been made to control and optimize TC, particularly through defect-engineering of these structures. Most recently, we reported TC values up to 80 K for (MnSb2Te4)x(Sb2Te3)1−x when 0.7 ≤ x ≤ 0.85 by controlling the composition x and the …


Measuring The Properties Of Rod-Shaped Bacteria By Single-Entity Electrochemistry, Ashley Tubbs Jan 2024

Measuring The Properties Of Rod-Shaped Bacteria By Single-Entity Electrochemistry, Ashley Tubbs

Theses and Dissertations

Antibiotic-resistant bacteria pose a significant and escalating threat to hospitals around the world, necessitating the development of rapid and sensitive detection methods. Single-entity electrochemistry has emerged as a promising approach for detecting and identifying such bacteria, and monitoring the efficacy of antibiotics in real-time. Herein, we employ the translational diffusion equation for circular cylinders to predict the collision frequency of rod-shaped bacteria, informing our experimental setup. Our work demonstrates that lab-fabricated Pt ultramicroelectrodes can sensitively detect bacteria at femtomolar concentrations under migration-controlled conditions. Further, we present a method implemented in MatLab to automate the analysis of step-like signals observed in …


Asymmetric Cuh-Catalyzed Reductive Coupling Of Allenamides With Carbonyl And Imine Electrophiles, Stephen Collins Jan 2024

Asymmetric Cuh-Catalyzed Reductive Coupling Of Allenamides With Carbonyl And Imine Electrophiles, Stephen Collins

Theses and Dissertations

The carbon scaffold of many drugs and natural products contain multiple stereogenic centers bearing heteroatoms. As a result of this, chemists have long sought methods to efficiently install these multi-heteroatom functionalities. Reductive coupling reactions have been extensively studied over the past decades, and the allylation of carbonyls via the reductive coupling approach has been a key method for generating chiral allylic alcohols. This work utilizes inexpensive Cu for the asymmetric reductive coupling of allenamides with carbonyls or imines to simultaneously install two heteroatoms (either oxygen and nitrogen or nitrogen and nitrogen, respectively) onto the product. These molecules have a polarity …


Effect Of Annealing On Photoluminescence From Defects In Gan, Oleksandr Andrieiev Jan 2024

Effect Of Annealing On Photoluminescence From Defects In Gan, Oleksandr Andrieiev

Theses and Dissertations

Annealing is a critical process in modern GaN technology, essential for achieving p-type conductivity by activating the MgGa acceptor, as first demonstrated by Shuji Nakamura in the early 1990s. Despite the omnipresence of hydrogen as an impurity in GaN crystals, the precise mechanisms governing hydrogen diffusion and acceptor passivation remain only partially understood. The presented research investigates the effects of annealing-induced activation and hydrogen passivation on C and Be acceptors in GaN grown by MOCVD, HVPE, and MBE methods. We explored these effects by using several annealing techniques, gas compositions, and thermal regimes. A transient behavior between the C …


Synthesis And Evaluation Of 5-(Heteroarylmethylene)Hydantoins As Glycogen Synthase Kinase-3Β Inhibitors, Nicholas O. Schneider, Keandra Gilreath, Daniel J. Burkett, Martin St. Maurice, William A. Donaldson Jan 2024

Synthesis And Evaluation Of 5-(Heteroarylmethylene)Hydantoins As Glycogen Synthase Kinase-3Β Inhibitors, Nicholas O. Schneider, Keandra Gilreath, Daniel J. Burkett, Martin St. Maurice, William A. Donaldson

Chemistry Faculty Research and Publications

Glycogen synthase kinase-3 (GSK-3) is a serine/threonine kinase which plays a center role in the phosphorylation of a wide variety of proteins, generally leading to their inactivation. As such, GSK-3 is viewed as a therapeutic target. An ever-increasing number of small organic molecule inhibitors of GSK-3 have been reported. Phenylmethylene hydantoins are known to exhibit a wide range of inhibitory activities including for GSK-3β. A family of fourteen 2-heterocycle substituted methylene hydantoins (14, 17–29) were prepared and evaluated for the inhibition of GSK-3β at 25 μM. The IC50 values of five of these compounds was determined; the two best inhibitors …


Efficient Synthesis Of Thiazole-Fused Bisnoralcohol Derivatives As Potential Therapeutic Agents, Subrata Roy, Hansa Raj Kc, Sanjay Adhikary, Alexander N. Erickson, Mohammad Abrar Alam Jan 2024

Efficient Synthesis Of Thiazole-Fused Bisnoralcohol Derivatives As Potential Therapeutic Agents, Subrata Roy, Hansa Raj Kc, Sanjay Adhikary, Alexander N. Erickson, Mohammad Abrar Alam

Chemistry Faculty Research and Publications

Thiazole derivatives are known for a wide range of therapeutic properties. Bisnoralcohol is an inexpensive natural product obtained by the biodegradation of sterols. This article describes an efficient synthesis of a library of thiazole-fused bisnoralcohol derivatives. These novel compounds have been studied for their antineoplastic and antibacterial properties, which led to the discovery of hit compounds with therapeutic potential. The antibacterial compound is noncytotoxic and nonhemolytic against cancer cell lines and sheep red blood cells, respectively. Several of the antineoplastic compounds showed activity against human cancer cell lines with growth inhibition at submicromolar concentration.


Mechanism Of Action Of Kl-50, A Candidate Imidazotetrazine For The Treatment Of Drug-Resistant Brain Cancers, Eric D. Huseman, Anna Lo, Olga Fedorova, James L. Elia, Susan E. Gueble, Kingson Lin, Ranjini K. Sundaram, Jooneseok Oh, Jinchan Liu, Fabian Menges, Matthew G. Rees, Melissa M. Ronan, Jennifer A. Roth, Victor S. Batista, Jason M. Crawford, Anna M. Pyle, Ranjit S. Bindra, Seth B. Herzon Jan 2024

Mechanism Of Action Of Kl-50, A Candidate Imidazotetrazine For The Treatment Of Drug-Resistant Brain Cancers, Eric D. Huseman, Anna Lo, Olga Fedorova, James L. Elia, Susan E. Gueble, Kingson Lin, Ranjini K. Sundaram, Jooneseok Oh, Jinchan Liu, Fabian Menges, Matthew G. Rees, Melissa M. Ronan, Jennifer A. Roth, Victor S. Batista, Jason M. Crawford, Anna M. Pyle, Ranjit S. Bindra, Seth B. Herzon

Chemistry Faculty Research and Publications

Aberrant DNA repair is a hallmark of cancer, and many tumors display reduced DNA repair capacities that sensitize them to genotoxins. Here, we demonstrate that the differential DNA repair capacities of healthy and transformed tissue may be exploited to obtain highly selective chemotherapies. We show that the novel N3-(2-fluoroethyl)imidazotetrazine “KL-50” is a selective toxin toward tumors that lack the DNA repair protein O6-methylguanine-DNA-methyltransferase (MGMT), which reverses the formation of O6-alkylguanine lesions. We establish that KL-50 generates DNA interstrand cross-links (ICLs) by a multistep process comprising DNA alkylation to generate an O6-(2-fluoroethyl)guanine (O6FEtG) …


Terra-Lsd1 Phase Separation Promotes R-Loop Formation For Telomere Maintenance In Alt Cancer Cells, Nicholas J. Reiter Jan 2024

Terra-Lsd1 Phase Separation Promotes R-Loop Formation For Telomere Maintenance In Alt Cancer Cells, Nicholas J. Reiter

Chemistry Faculty Research and Publications

The telomere repeat-containing RNA (TERRA) forms R-loops to promote homology-directed DNA synthesis in the alternative lengthening of telomere (ALT) pathway. Here we report that TERRA contributes to ALT via interacting with the lysine-specific demethylase 1A (LSD1 or KDM1A). We show that LSD1 localizes to ALT telomeres in a TERRA dependent manner and LSD1 function in ALT is largely independent of its demethylase activity. Instead, LSD1 promotes TERRA recruitment to ALT telomeres via RNA binding. In addition, LSD1 and TERRA undergo phase separation, driven by interactions between the RNA binding properties of LSD1 and the G-quadruplex structure of TERRA. Importantly, the …


Electrospun Pt-Tio₂ Nanofibers Doped With Hpa For Catalytic Hydrodeoxygenation, Amos Taiswa, Randy L. Maglinao, Jessica M. Andriolo, Sandeep Kumar, Jack L. Skinner Jan 2024

Electrospun Pt-Tio₂ Nanofibers Doped With Hpa For Catalytic Hydrodeoxygenation, Amos Taiswa, Randy L. Maglinao, Jessica M. Andriolo, Sandeep Kumar, Jack L. Skinner

Civil & Environmental Engineering Faculty Publications

Electrospinning is utilized to fabricate catalytic nanofiber scaffold for biocrude upgrading in hydrodeoxygenation (HDO) following computational studies suggesting the need for nano-catalysts for efficient HDO conversion and selectivity. Here, Pt-TiO2 nanofibers are fabricated through electrospinning, followed by wet impregnation with a heteropoly acid (HPA), tungstosilicic acid. Intensive heat treatments were incorporated during and after processes to obtain a HPA doped Pt-TiO2 nano-catalyst. Catalytic HDO was performed in a batch reactor with phenol as the raw biocrude dissolved in hexadecane. The HPA doped Pt-TiO2 catalyst demonstrated promising HDO performance of 37.2% conversion and a 78.9% selectivity to oxygen …


Geochemistry Of Rare Earth Elements In Simulated Natural Waters: Experiments And Modelling Of Precipitation, Complexation, And Bioavailability., Samantha Zulian Jan 2024

Geochemistry Of Rare Earth Elements In Simulated Natural Waters: Experiments And Modelling Of Precipitation, Complexation, And Bioavailability., Samantha Zulian

Theses and Dissertations (Comprehensive)

Rare earth elements (REEs) are an important part of modern technology and used for many applications. Mining, agriculture, improper recycling and medical applications can increase the concentration of these elements in surface waters. Metals in the environment including REEs can be found naturally but understanding the implications increase concentrations from anthropogenic inputs is important. REE mobility, persistence and toxicity is imperative to risk assessment as Canada begins to mine REE. Ultimately, as with other metals, the impacts of REEs in the environment should be dependent on the specific physical and chemical forms of the elements. Fractionation provides a practical method …


Unexpected Ring Opening Reactions, Solid-State Structures, And A Chemiluminescent Reaction, L Hiscock Jan 2024

Unexpected Ring Opening Reactions, Solid-State Structures, And A Chemiluminescent Reaction, L Hiscock

Theses and Dissertations (Comprehensive)

Functional π-materials involve the use of an aromatic π-system to carry out a function such as electron transport (organic electronics), absorbing and emitting photons (dyes, fluorescent materials), self-assembly (discotic liquid crystals), or sensors for various analytes. Our lab has recently published the syntheses of heteroaromatic derivatives of tetrafluoroterephthalonitrile (TFTP, 2.24) synthesised via nucleophilic aromatic substitution chemistry. The prepared derivatives have displayed fluorescent (e.g. 2.2)1 and liquid crystalline (1.0)2 properties, as well as displaying close π-π interactions in the solid state (2.8).3 As the materials we are synthesising all belong to the class of aromatic compounds, an introduction to aromaticity and …


Coordination Chemistry Using Strategic Design Of Ligands For Switchable Properties, Delara Joekar Jan 2024

Coordination Chemistry Using Strategic Design Of Ligands For Switchable Properties, Delara Joekar

Theses and Dissertations (Comprehensive)

Coordination-driven self-assemblies are multifunctional molecular systems that provide an efficient method for miniaturization towards functional devices with diverse applications. Herein, the synthesis of novel pyrazole-based ligands suitable for construction of coordination assemblies is reported. These were designed using a strategy that incorporates the presence of both cationic and anionic coordination sites, and a third site for further functionalization. This design strategy has been used because there is still a knowledge gap for controlling the directionality of weak molecular forces in the presence of stronger competing forces. The structural characterization of these ligands, their Hirshfeld surface analysis, and select coordination complexes …


A Physicochemical Characterization Of Protein Aggregates: Influence Of Lipid Membranes And Surfaces, Connor J. Hall Jan 2024

A Physicochemical Characterization Of Protein Aggregates: Influence Of Lipid Membranes And Surfaces, Connor J. Hall

Dissertations, Master's Theses and Master's Reports

Protein aggregation is a hallmark of neurodegenerative diseases (NDs). Although there has been a greater emphasis in the past decade or more on the correlation between the physicochemical characteristics of aggregates and their cellular toxicity, it is still unclear what specific features of an aggregate render it toxic. To better understand that, there has been a renewed focus on the characterization of unique biochemical and biophysical properties of protein aggregates. Elucidation of these unique characteristics can help to better understand disease pathogenesis in vivo. Furthermore, the lipid-rich nature of the brain sets it apart from all other organs, and numerous …


Synthesis Of Long Oligodeoxynucleotides, Yipeng Yin Jan 2024

Synthesis Of Long Oligodeoxynucleotides, Yipeng Yin

Dissertations, Master's Theses and Master's Reports

Synthetic long oligodeoxynucleotides (ODNs) have found wide applications in diverse fields such as chemical biology, synthetic biology, and genes and genomes synthesis. Those applications leading to a significant demand for their production. However, traditional methods for purifying synthetic ODNs present notable drawbacks, particularly their inability to purify long ODNs, rendering long ODN synthesis challenging. To address these issues, chemical synthesis techniques for long ODNs coupled with non-chromatographic purification methods have been developed. This technology makes the purification of long synthetic ODNs feasible and offers a viable pathway for producing genes and genomes with extensive repeats or stable secondary structures, which …