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Articles 781 - 810 of 1828
Full-Text Articles in Chemistry
Investigations Of Technetium Metal And The Synthesis Of Binary Technetium Nitrides Under Extreme Conditions, Emily Siska
Investigations Of Technetium Metal And The Synthesis Of Binary Technetium Nitrides Under Extreme Conditions, Emily Siska
UNLV Theses, Dissertations, Professional Papers, and Capstones
Technetium (Tc) is the lightest of the radioactive elements and has no stable isotopes. Significant quantities of Tc are not naturally occurring on earth. However, technetium is found in high fission yield in nuclear reactors and produced for medical imaging. With its long half life, and high mobility in the environment make it of particular interest. To that end, the fundamental chemistry of Tc and Tc compounds is not as well understood compared to neighboring elements on the periodic table. Therefore, fundamental studies designed to better understand this transition metal, coupled with more targeted investigation at high temperature and pressure …
Richardsite, Zn2cugas4, A New Gallium-Essential Member Of The Stannite Group From The Gem Mines Near Merelani, Tanzania, Luca Bindi, John A. Jaszczak
Richardsite, Zn2cugas4, A New Gallium-Essential Member Of The Stannite Group From The Gem Mines Near Merelani, Tanzania, Luca Bindi, John A. Jaszczak
Michigan Tech Publications, Part 1
The new mineral richardsite occurs as overgrowths of small (50–400 μm) dark gray, disphenoidal crystals with no evident twinning, but epitaxically oriented on wurtzite–sphalerite crystals from the gem mines near Merelani, Lelatema Mountains, Simanjiro District, Manyara Region, Tanzania. Associated minerals also include graphite, diopside, and Ge,Ga-rich wurtzite. It is brittle, dark gray in color, and has a metallic luster. It appears dark bluish gray in reflected plane-polarized light, and is moderately bireflectant. It is distinctly anisotropic with violet to light-blue rotation tints with crossed polarizers. Reflectance percentages for Rmin and Rmax in air at the respective wavelengths are 23.5, 25.0 …
Volume 12, Haleigh James, Hannah Meyls, Hope Irvin, Megan E. Hlavaty, Samara L. Gall, Austin J. Funk, Karyn Keane, Sarah Ghali, Antonio Harvey, Andrew Jones, Rachel Hazelwood, Madison Schmitz, Marija Venta, Haley Tebo, Jeremiah Gilmer, Bridget Dunn, Benjamin Sullivan, Mckenzie Johnson
Volume 12, Haleigh James, Hannah Meyls, Hope Irvin, Megan E. Hlavaty, Samara L. Gall, Austin J. Funk, Karyn Keane, Sarah Ghali, Antonio Harvey, Andrew Jones, Rachel Hazelwood, Madison Schmitz, Marija Venta, Haley Tebo, Jeremiah Gilmer, Bridget Dunn, Benjamin Sullivan, Mckenzie Johnson
Incite: The Journal of Undergraduate Scholarship
Introduction, Dr. Roger A. Byrne, Dean
From the Editor, Dr. Larissa "Kat" Tracy
From the Designers, Rachel English, Rachel Hanson
Immortality in the Mortal World: Otherworldly Intervention in "Lanval" and "The Wife of Bath's Tale" by Haleigh James
Analysis of Phenolic Compounds in Moroccan Olive Oils by HPLC by Hannah Meyls
Art by Hope Irvin
The Effects of Cell Phone Use on Gameplay Enjoyment and Frustration by Megan E. Hlavaty, Samara L. Gall, and Austin J. Funk
Care, No Matter What: Planned Parenthood's Use of Organizational Rhetoric to Expand its Reputation by Karyn Keane
Analysis of Petroleum Products for …
An Experiential Report On The Thayer Method Of Teaching Across College-Level Chemistry, Biology, Math, And Physics Courses, Kevin P. O'Halloran, Sairam Tangirala, Fengjie Sun, Leonard E. Anagho, Gerald Agbegha, Clay Runck, David Roth, Amy H. Erickson
An Experiential Report On The Thayer Method Of Teaching Across College-Level Chemistry, Biology, Math, And Physics Courses, Kevin P. O'Halloran, Sairam Tangirala, Fengjie Sun, Leonard E. Anagho, Gerald Agbegha, Clay Runck, David Roth, Amy H. Erickson
Georgia Journal of Science
The Thayer method of instruction is a little-known active learning technique that dates back to 1817 at the U.S. Military Academy. This study describes the implementation and statistical evaluation of an adaptation of the Thayer method in a variety of college science and math courses. All courses had five characteristics in common: (i) students were given a daily reading schedule and instructed to prepare before class, (ii) each class started with a question and answer session, (iii) class time minimized the use of lecture, (iv) class time maximized the use of active learning, and (v) students were frequently quizzed. A …
The Generality Of The Guga Mrci Approach In Columbus For Treating Complex Quantum Chemistry, Hans Lischka, Ron Shepard, Thomas Müller, Peter G. Szalay, Russell M. Pitzer, Adelia J. A. Aquino, Carol A. Parish, Et Al.
The Generality Of The Guga Mrci Approach In Columbus For Treating Complex Quantum Chemistry, Hans Lischka, Ron Shepard, Thomas Müller, Peter G. Szalay, Russell M. Pitzer, Adelia J. A. Aquino, Carol A. Parish, Et Al.
Chemistry Faculty Publications
The core part of the program system COLUMBUS allows highly efficient calculations using variational multireference (MR) methods in the framework of configuration interaction with single and double excitations (MR-CISD) and averaged quadratic coupled-cluster calcu- lations (MR-AQCC), based on uncontracted sets of configurations and the graphical unitary group approach (GUGA). The availability of analytic MR-CISD and MR-AQCC energy gradients and analytic nonadiabatic couplings for MR-CISD enables exciting applications including, e.g., investigations of π-conjugated biradicaloid compounds, calculations of multitudes of excited states, development of dia- batization procedures, and furnishing the electronic structure information for on-the-fly surface nonadiabatic dynamics. With fully vari- ational …
Sulfur Dioxide From The Atmospheric Chemistry Experiment Satellite, Doug Cameron
Sulfur Dioxide From The Atmospheric Chemistry Experiment Satellite, Doug Cameron
College of Sciences Posters
The version 4.0 dataset from the Atmospheric Chemistry Experiment – Fourier Transform Spectrometer (ACE-FTS) on SCISAT, released in March of 2019, has sulfur dioxide (SO2) volume mixing ratio (VMR) profiles as a routine data product. From this dataset, global SO2 distributions between the altitudes of 10.5 km and 23.5 km are analyzed. The global distribution of all SO2 VMR data by altitude is broken down into 30° and 5° latitude zones. Seasonality of the global SO2 distribution is explored. Volcanic SO2 plumes are isolated in the dataset and compared with extinction data from the …
Monitoring And Identifying The Rhodamine 6g-Hydroxide Ion Reaction Using In-Situ, Surface-Enhanced Raman Spectroscopy, Ryan Lamb
Masters Theses & Specialist Projects
An effective method for monitoring chemical reactions is necessary to better understand their mechanisms and kinetics. Effective reaction monitoring requires a spectroscopy technique with fast data acquisition, high sensitivity, structure-to-spectrum correlation, and low solvent interference. Surface-enhanced Raman spectroscopy (SERS) provides these features, which makes it a valuable tool for monitoring reactions. To obtain the Raman enhancement, metallic nanostructures typically made of silver or gold are aggregated using a salt. The nanoparticles aggregates must then be stabilized using a surfactant to use this method in situ due to eventual nanoparticle precipitation. In this study, gold nanoparticles stabilized with sodium dodecyl sulfate …
Study Of Deformation Parameters (Β2, Δ) For 18,20,22,24,26,28ne Isotopes In Sdpf Shell, Ahmed H. Ali, Maha Taha Idrees
Study Of Deformation Parameters (Β2, Δ) For 18,20,22,24,26,28ne Isotopes In Sdpf Shell, Ahmed H. Ali, Maha Taha Idrees
Karbala International Journal of Modern Science
The quadrupole deformation is basic to study the shape transitions; it is possible to predict many important properties of even-even nuclei as a function of the deformation parameter. The deformations of nuclei are important for understanding their shapes prolate or oblate. The quadrupole deformation parameters were calculated by the transition probability B (E2) for 18, 20, 22, 24, 26,28Ne isotopes, were adopted different interactions three. The calculations are performed with the Bohr-Mottelson (B-M) effective charges, which represent the effect of the core-polarizations. Also, the deformation parameters were calculated for different nuclei and adopted two methods of calculation: from reduced …
Investigation Of Glucose Oxidation At Gold Nanoparticles Deposited At Carbon Nanotubes Modified Glassy Carbon Electrode By Theoretical And Experimental Methods., Farhat Saira, Humaira Razzaq, Misbah Mumtaz, Safeer Ahmad, Muhammad Aftab Rafiq, Azra Yaqub, Nabiha Dilshad, Ayesha Ihsan, Muhammad Masood Ul Hasan
Investigation Of Glucose Oxidation At Gold Nanoparticles Deposited At Carbon Nanotubes Modified Glassy Carbon Electrode By Theoretical And Experimental Methods., Farhat Saira, Humaira Razzaq, Misbah Mumtaz, Safeer Ahmad, Muhammad Aftab Rafiq, Azra Yaqub, Nabiha Dilshad, Ayesha Ihsan, Muhammad Masood Ul Hasan
Karbala International Journal of Modern Science
In the current research work, AuNPs-CNTs nanocomposite was synthesized chemically and decoration of AuNPs on the surface of MWCNTs was confirmed by UV-Vis, SEM and XPS analysis. Synthesized nanocomposite was utilized for its application towards non-enzymatic glucose sensing by modifying glassy carbon electrode with nanocomposite employing electrochemical techniques. In addition, theoretical calculations were performed by Density Functional Theory (DFT), employing B3YLP with basis set 6- 311+G(d,p) in gaseous phase and LANL2DZ basis set. Both theoretical and experimental results predicted Au-CNTs composite as a better candidate for glucose oxidation as compared to CNTs and AuNPs alone, owing to the synergistic effect …
Using Freak Descriptor To Classify Plasma Influence In Mice Sperm, Ekhlas Falih, Alaa Noori Mazhar
Using Freak Descriptor To Classify Plasma Influence In Mice Sperm, Ekhlas Falih, Alaa Noori Mazhar
Karbala International Journal of Modern Science
Numerous classification mechanisms anticipate the class's instances to be carried out as the features' vectors, namely the points in a feature's space. It is oftentimes a chance to make an informative exemplification of an image's feature vector for classification problems in computer vision like utilizing global descriptors for the texture description or shape description. The proposed methodology is to classify the sperm image in mice that has been affected through plasma and this methodology consists of three stages. The points of interest could be elicited from sperm plasma images in the first stage by utilizing Adaptive and Generic Corner detector …
Laser-Induced Breakdown Spectroscopy For Elemental Analysis In Bioarchaeology And Forensic Anthropology, Kelsi N. Kuehn
Laser-Induced Breakdown Spectroscopy For Elemental Analysis In Bioarchaeology And Forensic Anthropology, Kelsi N. Kuehn
USF Tampa Graduate Theses and Dissertations
Within bioarchaeology and forensic anthropology, the current processes of differentiating between individual human skeletal remains are imprecise, costly, and inefficient. A novel analytical technique within anthropology, laser-induced breakdown spectroscopy (LIBS) can aid in the identification of human remains using rapid laser ablation occurring at the micro-scale, making the technique virtually non-destructive to the sample. Considering this, LIBS could offer a superior method for materials discrimination and human identification. This research sought to examine whether LIBS can be used to obtain elemental signatures within bones to distinguish individuals from one another in a rapid, non-destructive manner. Seven human skeletal donors and …
Computational Modeling Of Charge And Excitation Energy Transfer Dynamics In Complex Environments, Ning Chen
Computational Modeling Of Charge And Excitation Energy Transfer Dynamics In Complex Environments, Ning Chen
Dissertations, Theses, and Capstone Projects
This thesis describes computational simulations of charge and exciton dynamics and quantum calculations of organic conjugated oligomers. A comprehensive computational study of charge hopping dynamics was conducted for a model of disordered chain of sites coupled to quantum environments. Time-dependent mean square displacement, diffusion constant, and mobility were calculated by three different computational methods for solving the master equation, which validate the accuracy of calculations. Approximate rate kernels were also tested to understand the effects of approximations in representing quantum environments. In addition to the effects of temperature and disorder, different values of the gradient in the site energy were …
Aromatic Ouroboroi: Heterocycles Involving A Sigma-Donor-Acceptor Bond And 4n+2 Pi-Electrons, Kelling J. Donald, William Tiznado, Rodrigo Baez-Grez, Diego Inostroza
Aromatic Ouroboroi: Heterocycles Involving A Sigma-Donor-Acceptor Bond And 4n+2 Pi-Electrons, Kelling J. Donald, William Tiznado, Rodrigo Baez-Grez, Diego Inostroza
Chemistry Faculty Publications
The aromaticity and dynamics of a set of recently proposed neutral 5- and 6-membered heterocycles that are closed by dative (donor–acceptor) or multi-center s bonds, and have resonance forms with a Hu¨ckel number of p-electrons, are examined. The donors and acceptors in the rings include N, O, and F, and B, Be, and Mg, respectively. The planar geometry of the rings, coupled with evidence from different measures of aromaticity, namely the NICSzz, and NICSpzz components of the conventional nucleus independent chemical shifts (NICS), and ring current strengths (RCS), indicate non-trivial degrees of aromaticity in certain cases, including the cyclic C3B2OH6 …
Author Correction: Closing The Nuclear Fuel Cycle With A Simplified Minor Actinide Lanthanide Separation Process (Alsep) And Additive Manufacturing, Artem V. Gelis, Peter Kozak, Andrew T. Breshears, M. Alex Brown, Cari Launiere, Emily L. Campbell, Gabriel B. Hall, Tatiana G. Levitskaia, Vanessa E. Holfeltz, Gregg J. Lumetta
Author Correction: Closing The Nuclear Fuel Cycle With A Simplified Minor Actinide Lanthanide Separation Process (Alsep) And Additive Manufacturing, Artem V. Gelis, Peter Kozak, Andrew T. Breshears, M. Alex Brown, Cari Launiere, Emily L. Campbell, Gabriel B. Hall, Tatiana G. Levitskaia, Vanessa E. Holfeltz, Gregg J. Lumetta
Chemistry and Biochemistry Faculty Research
No abstract provided.
Nanoscale Colocalization Of Fluorogenic Probes Reveals The Role Of Oxygen Vacancies In The Photocatalytic Activity Of Tungsten Oxide Nanowires, Meikun Shen, Tianben Ding, Steven T. Hartman, Fudong Wang, Christina Krucylak, Zheyu Wang, Che Tan, Bo Yin, Rohan Mishra, Matthew D. Lew, Bryce Sadtler
Nanoscale Colocalization Of Fluorogenic Probes Reveals The Role Of Oxygen Vacancies In The Photocatalytic Activity Of Tungsten Oxide Nanowires, Meikun Shen, Tianben Ding, Steven T. Hartman, Fudong Wang, Christina Krucylak, Zheyu Wang, Che Tan, Bo Yin, Rohan Mishra, Matthew D. Lew, Bryce Sadtler
Electrical & Systems Engineering Publications and Presentations
Defect engineering is a strategy that has been widely used to design active semiconductor photocatalysts. However, understanding the role of defects, such as oxygen vacancies, in controlling photocatalytic activity remains a challenge. Here, we report the use of chemically triggered fluorogenic probes to study the spatial distribution of active regions in individual tungsten oxide nanowires using super-resolution fluorescence microscopy. The nanowires show significant heterogeneity along their lengths for the photocatalytic generation of hydroxyl radicals. Through quantitative, coordinate-based colocalization of multiple probe molecules activated by the same nanowires, we demonstrate that the nanoscale regions most active for the photocatalytic generation of …
Magnetic Hyperthermia For Cancer Treatment, Çiğdem Elif Demirci Dönmez, Adem Dönmez
Magnetic Hyperthermia For Cancer Treatment, Çiğdem Elif Demirci Dönmez, Adem Dönmez
Science and Mathematical Science
The obtained results in this study clearly indicates the enhancing effect of polymer coating on hyperthermia efficiency. In a very recent study, the efficiency of the niclosamide-loaded hyperbranched polymerfunctionalized magnetic nanoparticles on mediated hyperthermia and niclosamide (an anticancer drug) bimodel therapy were investigated. The results in this study indicated that polymerfunctionalized nanoparticles showed sufficient temperature gain for magnetic hyperthermia.
Novel Integrated Nano-Sensors For Analysis Of Chemical Compounds In Natural Gas Applications, Taylor Robinson
Novel Integrated Nano-Sensors For Analysis Of Chemical Compounds In Natural Gas Applications, Taylor Robinson
Mahurin Honors College Capstone Experience/Thesis Projects
Semiconductor sensors have been important environmental gas detectors since the 1990s, and are commonly used to detect hydrogen, oxygen, alcohol vapor, and even harmful gases such as carbon monoxide. A gas chromatography approach is a well-proven and compact separation technique to identify and quantify multiple compounds in a complex background such as a true natural gas environment. Real time field monitoring implementing classical GC and standard sensors (FID, PID, etc.) have a lot of limitations due to its bulky size, heavy weight, and high maintenance. In this study, we developed a portable instrument through the utilization of novel solid-state sensors …
Spectroscopic Study On Pseudomonas Aeruginosa Biofilm In The Presence Of The Aptamer-Dna Scaffolded Silver Nanoclusters, Bidisha Sengupta, Prakash Adhikari, Esther Mallet, Ronald Havner, Prabhakar Pradhan
Spectroscopic Study On Pseudomonas Aeruginosa Biofilm In The Presence Of The Aptamer-Dna Scaffolded Silver Nanoclusters, Bidisha Sengupta, Prakash Adhikari, Esther Mallet, Ronald Havner, Prabhakar Pradhan
Faculty Publications
We report the effectiveness of silver nanocluster (Ag-NC) against the biofilm of Pseudomonas aeruginosa (PA). Two DNA aptamers specific for PA and part of their sequences were chosen as templates for growing the Ag-NC. While circular dichroism (CD) studies determined the presence of secondary structures, UV/Vis absorption, and fluorescence spectroscopic studies confirmed the formation of the fluorescent Ag-NC on the DNA templates. Furthermore, mesoscopic physics-based partial wave spectroscopy (PWS) was used to analyze the backscattered light signal that can detect the degree of nanoscale mass density/refractive index fluctuations to identify the biofilm formation, comparatively among the different aptamers with respect …
Gravity-Drawing Flexible Silicone Filaments As Fiber Optics And Model Foldamers, Katherine Snell
Gravity-Drawing Flexible Silicone Filaments As Fiber Optics And Model Foldamers, Katherine Snell
CMC Senior Theses
Here, we present a method of gravity-drawing polydimethylsiloxane (PDMS) silicone fibers with application as fiber optics and as model foldamers. Beginning as a viscous liquid, PDMS is cured using heat until its measured viscosity reaches 4000 mPa•s. The semi-cured elastomer is then extruded through a tube furnace to produce thin (diameters on the order of hundred micrometers) filaments with scalable lengths. PDMS is biocompatible, gas-permeable, flexible, and hydrophobic. Additionally, the PDMS surface hydrophobicity can be modified via UV exposure, O2 plasma, and corona discharge. We demonstrate the patternibility (i.e patterns of hydrophobicity) of PDMS fibers, adding complexity to potential foldamer …
Recent Developments In The Pyscf Program Package, Qiming Sun, Xing Zhang, Samragni Banerjee, Peng Bao, Marc Barbry, Nick S. Blunt, Nikolay A. Bogdanov, George H. Booth, Jia Chen, Zhi-Hao Cui, Janus J. Eriksen, Yang Gao, Sheng Gun, Jan Hermann, Matthew R. Hermes, Kevin Koh, Peter Koval, Susi Lehtola, Zhendong Li, Junzi Liu, Narbe Mardirossian, James D. Mcclain, Mario Motta, Bastien Mussard, Hung Q. Pham, Artem Pulkin, Wirawan Purwanto, Paul J. Robinson, Enrico Ronca, Elvira R. Sayfutyarova, Maximillian Scheurer, Henry F. Schurkus, James E.T. Smith, Chong Sun, Shi-Ning Sun, Shiv Upadhyay, Lucas K. Wagner, Xiao Wang, Alec White, James Daniel Whitfield, Mark J. Williamson, Sebastian Wouters, Jun Yang, Jason M. Yu, Tianyu Zhu, Timothy C. Berkelbach, Sandeep Sharma, Alexander Yu Sokolov, Garnet Kin-Lic Chan
Recent Developments In The Pyscf Program Package, Qiming Sun, Xing Zhang, Samragni Banerjee, Peng Bao, Marc Barbry, Nick S. Blunt, Nikolay A. Bogdanov, George H. Booth, Jia Chen, Zhi-Hao Cui, Janus J. Eriksen, Yang Gao, Sheng Gun, Jan Hermann, Matthew R. Hermes, Kevin Koh, Peter Koval, Susi Lehtola, Zhendong Li, Junzi Liu, Narbe Mardirossian, James D. Mcclain, Mario Motta, Bastien Mussard, Hung Q. Pham, Artem Pulkin, Wirawan Purwanto, Paul J. Robinson, Enrico Ronca, Elvira R. Sayfutyarova, Maximillian Scheurer, Henry F. Schurkus, James E.T. Smith, Chong Sun, Shi-Ning Sun, Shiv Upadhyay, Lucas K. Wagner, Xiao Wang, Alec White, James Daniel Whitfield, Mark J. Williamson, Sebastian Wouters, Jun Yang, Jason M. Yu, Tianyu Zhu, Timothy C. Berkelbach, Sandeep Sharma, Alexander Yu Sokolov, Garnet Kin-Lic Chan
University Administration Publications
PySCF is a Python-based general-purpose electronic structure platform that supports first-principles simulations of molecules and solids as well as accelerates the development of new methodology and complex computational workflows. This paper explains the design and philosophy behind PySCF that enables it to meet these twin objectives. With several case studies, we show how users can easily implement their own methods using PySCF as a development environment. We then summarize the capabilities of PySCF for molecular and solid-state simulations. Finally, we describe the growing ecosystem of projects that use PySCF across the domains of quantum chemistry, materials science, machine learning, and …
Intra- And Intermolecular Self-Assembly Of A 20-Nm-Wide Supramolecular Hexagonal Grid, Zhe Zhang, Yiming Li, Bo Song, Yuan Zhang, Xin Jiang, Ming Wang, Ryan Tumbleson, Changlin Liu, Pingshan Wang, Xin-Qi Hao, Tomas Rojas, Anh T. Ngo, Jonathan L. Sessler, George R. Newkome, Saw Wai Hla, Xiaopeng Li
Intra- And Intermolecular Self-Assembly Of A 20-Nm-Wide Supramolecular Hexagonal Grid, Zhe Zhang, Yiming Li, Bo Song, Yuan Zhang, Xin Jiang, Ming Wang, Ryan Tumbleson, Changlin Liu, Pingshan Wang, Xin-Qi Hao, Tomas Rojas, Anh T. Ngo, Jonathan L. Sessler, George R. Newkome, Saw Wai Hla, Xiaopeng Li
Physics Faculty Publications
For the past three decades, the coordination-driven self-assembly of three-dimensional structures has undergone rapid progress; however, parallel efforts to create large discrete two-dimensional architectures—as opposed to polymers—have met with limited success. The synthesis of metallo-supramolecular systems with well-defined shapes and sizes in the range of 10–100 nm remains challenging. Here we report the construction of a series of giant supramolecular hexagonal grids, with diameters on the order of 20 nm and molecular weights greater than 65 kDa, through a combination of intra- and intermolecular metal-mediated self-assembly steps. The hexagonal intermediates and the resulting self-assembled grid architectures were imaged at submolecular …
Some Fermi-Lowdin Orbital Self-Interaction Correction Studies On Atomic Systems, Christopher Alexis Ibarra
Some Fermi-Lowdin Orbital Self-Interaction Correction Studies On Atomic Systems, Christopher Alexis Ibarra
Open Access Theses & Dissertations
Density Function Theory (DFT) is a popular quantum chemistry calculation method with many appeals but also deficiencies. Many modification and additions to the method have been made over the years, such as self-interaction corrections and new density functional approximations. We review here the theoretical background needed for a basic understanding of quantum chemistry calculations. In addition, we present the quantum chemistry calculation method used in this paper called Fermi-Lowdin Self-Interaction Correction (FLOSIC), including the base code it was implemented on, the Naval Research Laboratory Molecular Orbital Library (NRLMOL) Code, and the resulting modified code simply called FLOSIC. Furthermore, we explore …
Development Of A Novel Highly-Sensitive Brucellosis Sensor Based On Surface Plasmon Resonance Spectroscopy, Amal Kasry, Ihab Adly, Asharf Sayour, Hossam Sayour
Development Of A Novel Highly-Sensitive Brucellosis Sensor Based On Surface Plasmon Resonance Spectroscopy, Amal Kasry, Ihab Adly, Asharf Sayour, Hossam Sayour
Nanotechnology Research Centre
Brucellosis is considered a significant health threat, it is an infectious disease caused by the bacteria Brucella, which can spread from animals to humans causing severe diseases. Through this project, we aim to develop a very highly sensitive biosensor to detect Brucella early before spreading. This sensor is based on surface plasmon resonance (SPR) technique, which is used to analyze kinetics of interaction between biomolecules. It can detect down to picomolar concentrations of some proteins.
Spatial Defects Nanoengineering For Bipolar Conductivity In Mos2, Xiaorui Zheng, Annalisa Calò, Tengfei Cao, Xiangyu Liu, Zhujun Huang, Paul Masih Das, Marija Drndic, Edoardo Albisetti, Francesco Lavini, Tai-De Li, Vishal Narang, William P. King, Michele Vittadello, Carmela Aruta, Davood Shahrjerdi, Elisa Riedo
Spatial Defects Nanoengineering For Bipolar Conductivity In Mos2, Xiaorui Zheng, Annalisa Calò, Tengfei Cao, Xiangyu Liu, Zhujun Huang, Paul Masih Das, Marija Drndic, Edoardo Albisetti, Francesco Lavini, Tai-De Li, Vishal Narang, William P. King, Michele Vittadello, Carmela Aruta, Davood Shahrjerdi, Elisa Riedo
Advanced Science Research Center
Understanding the atomistic origin of defects in two-dimensional transition metal dichalcogenides, their impact on the electronic properties, and how to control them is critical for future electronics and optoelectronics. Here, we demonstrate the integration of thermochemical scanning probe lithography (tc-SPL) with a flow-through reactive gas cell to achieve nanoscale control of defects in monolayer MoS2. The tc-SPL produced defects can present either p- or n-type doping on demand, depending on the used gasses, allowing the realization of field effect transistors, and p-n junctions with precise sub-μm spatial control, and a rectification ratio of over 104. Doping …
Td-Dft Spin-Adiabats With Analytic Nonadiabatic Derivative Couplings, Nicole Bellonzi, Ethan Alguire, Shervin Fatehi, Yihan Shao, Joseph E. Subotnik
Td-Dft Spin-Adiabats With Analytic Nonadiabatic Derivative Couplings, Nicole Bellonzi, Ethan Alguire, Shervin Fatehi, Yihan Shao, Joseph E. Subotnik
School of Integrative Biological & Chemical Sciences (Formerly Dept. of Chemistry)
Wepresent an algorithm for efficient calculation of analytic nonadiabatic derivative couplings between spin-adiabatic, time-dependent density functional theory states within the Tamm-Dancoff approximation. Our derivation is based on the direct differentiation of the Kohn-Sham pseudowavefunction using the framework of Ou et al. Our implementation is limited to the case of a system with an even number of electrons in a closed shell ground state, and we validate our algorithm against finite difference at an S1/T2 crossing of benzaldehyde. Through the introduction of a magnetic field spin-coupling operator, we break time-reversal symmetry to generate complex valued nonadiabatic derivative couplings. Although the nonadiabatic …
กระบวนการพัฒนาโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์ด้วยเทคนิคโลวโค้ดบนโอดู, โสภณวิชญ์ พิชิตเธียรธรรม
กระบวนการพัฒนาโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์ด้วยเทคนิคโลวโค้ดบนโอดู, โสภณวิชญ์ พิชิตเธียรธรรม
Chulalongkorn University Theses and Dissertations (Chula ETD)
งานวิจัยนี้นำเสนอมอดูลเจนเนอเรเตอร์ ซึ่งเป็นเครื่องมือสำหรับการเขียนโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์บนโอดู โอดูเป็นซอฟต์แวร์อีอาร์พีแบบเปิดเผยรหัสต้นฉบับที่รวบรวมมอดูลที่จำเป็นสำหรับการจัดการธุรกิจต่าง ๆ และผู้พัฒนาสามารถพัฒนามอดูลเพื่อขยายขีดความสามารถของโอดูได้ โดยในช่วงไม่กี่ปีที่ผ่านมาการพัฒนาซอฟต์แวร์บนโอดู มักต้องใช้เวลาในการเรียนรู้เพราะมีความซับซ้อนของเฟรมเวิร์ก จึงมีการนำแนวทางการพัฒนาซอฟต์แวร์แบบโลวโค้ด (การเขียนโค้ดที่น้อยกว่าปกติ) มาใช้ในการพัฒนามอดูลเจนเนอเรเตอร์ขึ้น เพื่อให้เป็นเครื่องมือสำหรับออกแบบและสร้างรหัสต้นฉบับสำหรับมอดูล ทำให้ผู้พัฒนาซอฟต์แวร์บนโอดูไม่ต้องกังวลเรื่องข้อผิดพลาดอันเนื่องมาจากความซับซ้อนของเฟรมเวิร์ก และให้ความสำคัญกับการเขียนโปรแกรมในด้านอื่น ๆ ได้มากขึ้น โดยเครื่องมือนี้ถูกพัฒนาด้วยภาษา ไพธอนให้เป็นเว็บแอปพลิเคชันทำงานบนเว็บเบราว์เซอร์ และได้มีการทดสอบการใช้งานกับทั้งผู้พัฒนามอดูลบนโอดู ผู้ใช้งานโอดูที่มีทักษะการเขียนโปรแกรม ผู้ที่ไม่เคยมีประสบการณ์กับโอดู และอาสาสมัครภายนอกบริษัท ซึ่งได้ผลลัพธ์ว่า ผู้ทดสอบทั้งหมดสามารถพัฒนามอดูลโดยใช้มอดูลเจนเนอเรเตอร์ได้สำเร็จ เครื่องมือนี้จึงสามารถช่วยให้ผู้ที่ไม่มีประสบการณ์ในการพัฒนามอดูลบนโอดูสามารถพัฒนามอดูลขึ้นมาได้โดยใช้เวลาไม่นาน และเมื่อเปรียบเทียบเวลาที่ใช้ในการพัฒนามอดูลของกลุ่มผู้พัฒนามอดูลบนโอดู ระหว่างแบบปกติที่เขียนโค้ดด้วยตนเองกับการใช้ มอดูลเจนเนอเรเตอร์ พบว่าการใช้เครื่องมือนี้สามารถลดเวลาการพัฒนามอดูลโดยเฉลี่ยได้ถึง 20% อีกทั้งมอดูลเจนเนอเรเตอร์ยังนำไปใช้ได้จริงในโครงการการพัฒนาซอฟต์แวร์ของบริษัท
การวิเคราะห์การเกิดตำหนิในการผลิตกระจกโฟลต, คณุตม์ ไพบูลย์
การวิเคราะห์การเกิดตำหนิในการผลิตกระจกโฟลต, คณุตม์ ไพบูลย์
Chulalongkorn University Theses and Dissertations (Chula ETD)
งานวิจัยนี้มุ่งเน้นศึกษาปัจจัยที่มีผลต่อการเกิดตำหนิและหาแนวทางปรับปรุงกระบวนการผลิตเพื่อลดปริมาณตำหนิชนิดฟองอากาศและรีม ด้วยการนำตัวแปรจากกระบวนการผลิตได้แก่ การชั่งน้ำหนักส่วนผสม อุณหภูมิในการหลอม อุณหภูมิในการขึ้นรูปและองค์ประกอบทางเคมีของกระจก มาหาความสัมพันธ์กับปริมาณตำหนิที่เกิดขึ้นด้วยการวิเคราะห์การถดถอย จากผลการวิเคราะห์ตำหนิฟองอากาศด้วยเทคนิคแมสสเปกโทรเมตรีและเทคนิครามานสเปคโทรสโคปีพบว่าฟองอากาศส่วนใหญ่พบแก๊ส CO2 เป็นองค์ประกอบอยู่ที่ 30 ถึง 70 เปอร์เซ็นต์ ซึ่งเกิดจากการสลายตัวทางความร้อนของวัตถุดิบและการไล่ฟองอากาศที่ไม่สมบูรณ์ และจากความสัมพันธ์ของปริมาณฟองอากาศและตัวแปรจากกระบวนการผลิตพบว่า อุณหภูมิการหลอมที่สูงขึ้น ปริมาณ fining agent ที่น้อยลง และกำลังการผลิตที่เพิ่มขึ้นส่งผลให้ตำหนิชนิดฟองอากาศเพิ่มขึ้น จากการศึกษาตำหนิชนิดรีมโดยใช้กล้องจุลทรรศน์อิเล็กตรอนแบบส่องกราดร่วมกับการวัดการกระจายพลังงานของรังสีเอกซ์ในการวิเคราะห์องค์ประกอบธาตุของตำหนิชนิดรีมเทียบกับบริเวณโดยรอบโดยพบว่ารีมมีปริมาณธาตุ Si และ Na สูงกว่าบริเวณโดยรอบ ซึ่งเกิดจากการชั่งวัตถุดิบที่คลาดเคลื่อนไปจากสูตรการผลิต โดยเกิดจากวัตถุดิบติดค้างบริเวณกรวยรับวัตถุดิบ ส่งผลให้องค์ประกอบทางเคมีของส่วนผสมไม่สม่ำเสมอ ยิ่งความแตกต่างของน้ำหนักส่วนผสมจากสูตรการผลิตยิ่งมาก จะทำให้ปริมาณรีมเพิ่มสูงขึ้น ซึ่งสามารถความผิดพลาดจากการชั่งนี้สามารถแก้ไขได้โดยติดตั้งค้อนลมเพื่อเคาะวัตถุดิบให้ลงไปในโม่ผสมวัตถุดิบครบถ้วนตามสูตรการผลิต
ผลของลำดับการผสมวัตถุดิบต่อประสิทธิภาพการใช้พลังงานในการหลอมแก้ว, ปรีณาพรรณ ปิ่นหอม
ผลของลำดับการผสมวัตถุดิบต่อประสิทธิภาพการใช้พลังงานในการหลอมแก้ว, ปรีณาพรรณ ปิ่นหอม
Chulalongkorn University Theses and Dissertations (Chula ETD)
โดยทั่วไปกระบวนการหลอมแก้วระดับอุตสาหกรรมต้องการพลังงานสูงสำหรับการเปลี่ยนแปลงจากวัตถุดิบเป็นน้ำแก้ว วัตถุประสงค์ในงานวิจัยนี้จะกล่าวถึงการพัฒนากระบวนการหลอมแก้วโซดาไลม์โดยวิธีปรับลำดับการผสมในระดับห้องปฏิบัติการ ซึ่งอาศัยกลไกของปฏิกิริยาสถานะของแข็งระหว่างทรายแก้วและโซเดียมคาร์บอเนตในช่วงแรกของการหลอม การเตรียมส่วนผสมแบบดั้งเดิมเป็นการผสมวัตถุดิบทั้งหมดภายในครั้งเดียว ในงานวิจัยนี้ต้องการปรับเปลี่ยนวิธีการเตรียมส่วนผสมให้เหมาะสมที่สุดต่อการหลอมโดยการปรับลำดับของการผสม ประกอบด้วยสองขั้นตอนการผสม ขั้นตอนแรกคือการผสมทรายแก้วและโซเดียมคาร์บอเนต จากนั้นจึงผสมวัตถุดิบที่เหลือเป็นขั้นตอนที่สอง เพื่อเปรียบเทียบและศึกษาผลของการเตรียมส่วนผสมทั้งสองวิธี ได้ทำการศึกษาสภาพและการเปลี่ยนแปลงระหว่างกระบวนการหลอมที่อุณหภูมิตั้งแต่ 600 ถึง 1000 องศาเซลเซียส นอกจากนี้มีผลของปริมาณวัตถุดิบที่หลอมไม่หมดบนพื้นผิวซึ่งยังคงลงเหลือในสภาพผลึก ณ สภาวะที่กำหนด เพื่อเปรียบเทียบแนวโน้มประสิทธิผลในการหลอมของส่วนผสมจากการผสมสองวิธี โดยภาพถ่ายผิวหน้าและโดยเทคนิคการเลี้ยวเบนรังสีเอกซ์ ผลการวิจัยพบว่าการจัดลำดับการผสมเป็นวิธีการผสมที่เหมาะสมกว่า ส่งผลต่ออัตราการหลอม พื้นผิวสัมผัสที่เพิ่มขึ้นระหว่างทรายแก้วและโซเดียมคาร์บอเนตจากการผสมขั้นตอนแรกนำไปสู่การเพิ่มอัตราการหลอมของทั้งระบบ ต่างจากวิธีการเดิมที่อาจมีวัตถุดิบอื่นเป็นตัวขัดขวางการเกิดปฏิกิริยาสถานะของแข็งดังกล่าว
A Theoretical And Experimental Study Of Charge Transport In Organic Thermoelectric Materials And Charge Transfer States In Organic Photovoltaics, Ashkan Abtahi
Theses and Dissertations--Physics and Astronomy
Applications of organic electronics have increased significantly over the past two decades. Organic semiconductors (OSC) can be used in mechanically flexible devices with potentially lower cost of fabrication than their inorganic counterparts, yet in many cases organic semiconductor-based devices suffer from lower performance and stability. Investigating the doping mechanism, charge transport, and charge transfer in such materials will allow us to address the parameters that limit performance and potentially resolve them. In this dissertation, organic materials are used in three different device structures to investigate charge transport and charge transfer. Chemically doped π-conjugated polymers are promising materials to be used …