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Materials Science and Engineering Faculty Publications and Presentations

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Panel Discussion On The History Of The Women In Engineering Division: Reflections From Past Chairs Of The Division, Beena Sukumaran, Janet Callahan, Donna C. Llewellyn, Beth M. Holloway, Noel N. Schulz, Sarah A. Rajala, Donna Reese Jun 2018

Panel Discussion On The History Of The Women In Engineering Division: Reflections From Past Chairs Of The Division, Beena Sukumaran, Janet Callahan, Donna C. Llewellyn, Beth M. Holloway, Noel N. Schulz, Sarah A. Rajala, Donna Reese

Materials Science and Engineering Faculty Publications and Presentations

In celebration of 125 years of the American Society of Engineering Education, past Chairs of the Women in Engineering Division (WIED), Beth Holloway, Donna Llewellyn, Sarah Rajala, and Noel Schulz convened in a focused panel that looked back through the division’s history. To help archive the historical perspective of these leaders, this paper was developed to help the former Chairs focus their perspectives with guiding questions. One additional chair, who could not attend the conference, Donna Reese participated in this paper. The guiding questions for chairs concerned: the influence of their leadership of the WIED on their career, their perspective …


Encouraging A Growth Mindset In Engineering Students, Megan Frary Jun 2018

Encouraging A Growth Mindset In Engineering Students, Megan Frary

Materials Science and Engineering Faculty Publications and Presentations

A person’s “mindset” guides a great deal of how one approaches life -- and especially how students approach education. While someone with a fixed mindset believes that their intelligence is fixed and unchangeable, someone with a growth mindset believes that their intelligence is changeable and can grow as they learn more. Most people’s mindset lies along a spectrum with these two extremes at either end. In addition to other outcomes, the mindset that a person has determines how they interpret mistakes they make; whereas someone with a fixed mindset thinks mistakes result from their innate lack of ability, someone with …


Work In Progress: Flexibility And Professional Preparation Via A Multidisciplinary Engineering Curriculum, Noah Salzman, Vicki Stieha, Amy J. Moll, Joann S. Lighty Jun 2018

Work In Progress: Flexibility And Professional Preparation Via A Multidisciplinary Engineering Curriculum, Noah Salzman, Vicki Stieha, Amy J. Moll, Joann S. Lighty

Materials Science and Engineering Faculty Publications and Presentations

This paper reports on one institution’s work-in-progress to build innovation and creativity into a flexible, ABET accredited undergraduate Engineering B.S. degree that provides a variety of choices to undergraduate engineering students. The new Engineering Plus degree has a core set of required foundational courses in engineering, a multi-year design sequence, and allows for self-defined pathways. The new curriculum also offers three defined degree pathways that have been chosen based on an examination of student “fate” data: secondary education, pre-medical, and environmental studies, with additional pathways planned for the near future. The fate analysis examined the paths of students who were …


Work In Progress: Institutional Context And The Implementation Of The Redshirt In Engineering Model At Six Universities, Ann Delaney, Donna C. Llewellyn, Janet Callahan Jun 2018

Work In Progress: Institutional Context And The Implementation Of The Redshirt In Engineering Model At Six Universities, Ann Delaney, Donna C. Llewellyn, Janet Callahan

Materials Science and Engineering Faculty Publications and Presentations

Low-income students are underrepresented in engineering and are more likely to struggle in engineering programs. Such students may be academically talented and perform well in high school, but may have relatively weak academic preparation for college compared to students who attended better-resourced schools. Four-year engineering and computer science curricula are designed for students who are calculus-ready, but many students who are eager to become engineers or computer scientists need additional time and support to succeed. The NSF-funded Redshirt in Engineering Consortium was formed in 2016 as a collaborative effort to build on the success of three existing “academic Redshirt” programs …


Valuing Women’S Contributions: Team Projects And Collaborative Writing, Jennifer C. Mallette, Harold Ackler Jun 2018

Valuing Women’S Contributions: Team Projects And Collaborative Writing, Jennifer C. Mallette, Harold Ackler

Materials Science and Engineering Faculty Publications and Presentations

Team projects offer opportunities for student engineers to learn how to work on a team and produce collaborative written reports. However, research has shown that women often do more writing during these projects, and that their writing labor is unrecognized or undervalued, particularly when the technical work is viewed as more essential. In this paper, we examine the results of a study focused on the writing component in a year-long senior capstone materials science and engineering (MSE) course sequence. This course requires students to complete projects for clients and produce a written report, among other deliverables. To focus more on …


De-Risking Transdisciplinary Research By Creating Shared Values, Donna C. Llewellyn, William L. Hughes Jun 2018

De-Risking Transdisciplinary Research By Creating Shared Values, Donna C. Llewellyn, William L. Hughes

Materials Science and Engineering Faculty Publications and Presentations

This Lessons Learned Paper describes a yearlong faculty development pilot program that was designed to help a team of faculty de-risk their pursuit of wicked research problems. Wicked problems are extraordinarily difficult to solve due to their incomplete, contradictory, and at times changing requirements. They often include multiple stakeholders with competing interests and worldviews. As a result, they are risky by definition because they are difficult to fund, publish, and collaborate on. Presented here, a team of eleven faculty, from six different academic units, explored their personal and professional values during an initial off-site two and a half day retreat. …


The Crux: Promoting Success In Calculus Ii, Doug Bullock, Janet Callahan, Jocelyn B. S. Cullers Jun 2018

The Crux: Promoting Success In Calculus Ii, Doug Bullock, Janet Callahan, Jocelyn B. S. Cullers

Materials Science and Engineering Faculty Publications and Presentations

In the 2013-14 school year, Boise State University (BSU) launched a major overhaul of Calculus I. The details of the reform, described elsewhere, involved both pedagogical and curricular changes. In subsequent years, we developed several assessment tools to measure the effects of the project on students’ grades and retention. The toolkit includes: (1) pass rate and GPA in Calculus I, (2) longitudinal analysis of pass rates and GPA in subsequent courses, (3) impact of Calculus I on retention in STEM and retention at BSU, (4) all of the above comparing students in reformed Calculus vs traditional Calculus, (5) all of …


Proton Irradiation Effect On Thermoelectric Properties Of Nanostructured N-Type Half-Heusler Hf0.25Zr0.75Nisn0.99Sb0.01, Karthik Chinnathambi, Brian J. Jaques Jun 2018

Proton Irradiation Effect On Thermoelectric Properties Of Nanostructured N-Type Half-Heusler Hf0.25Zr0.75Nisn0.99Sb0.01, Karthik Chinnathambi, Brian J. Jaques

Materials Science and Engineering Faculty Publications and Presentations

Thermoelectric properties of nanostructured half-Heusler Hf0.25Zr0.75NiSn0.99Sb0.01 were characterized before and after 2.5 MeV proton irradiation. A unique high-sensitivity scanning thermal microprobe was used to simultaneously map the irradiation effect on thermal conductivity and Seebeck coefficient with spatial resolution less than 2 μm. The thermal conductivity profile along the depth from the irradiated surface shows excellent agreement with the irradiation-induced damage profile from simulation. The Seebeck coefficient was unaffected while both electrical and thermal conductivities decreased by 24%, resulting in no change in thermoelectric figure of merit ZT. Reductions in thermal and …


Self-Assembly Of (111)-Oriented Tensile-Strained Quantum Dots By Molecular Beam Epitaxy, Christopher F. Schuck, Robin A. Mccown, Ashlie Hush, Austin Mello, Simon Roy, Joseph W. Spinuzzi, Paul J. Simmonds May 2018

Self-Assembly Of (111)-Oriented Tensile-Strained Quantum Dots By Molecular Beam Epitaxy, Christopher F. Schuck, Robin A. Mccown, Ashlie Hush, Austin Mello, Simon Roy, Joseph W. Spinuzzi, Paul J. Simmonds

Materials Science and Engineering Faculty Publications and Presentations

The authors report on a comprehensive study of the growth of coherently strained GaAs quantum dots (QDs) on (111) surfaces via the Stranski–Krastanov (SK) self-assembly mechanism. Recent reports indicate that the long-standing challenges, whereby the SK growth mechanism could not be used to synthesize QDs on (111) surfaces, or QDs under tensile strain, have been overcome. However, a systematic study of the SK growth of (111)-oriented, tensile-strained QDs (TSQDs) as a function of molecular beam epitaxy growth parameters is still needed. Here, the authors explore the effects of deposition amount, substrate temperature, growth rate, and V/III flux ratio on the …


Routine Million-Particle Simulations Of Epoxy Curing With Dissipative Particle Dynamics, Stephen Thomas, Monet Alberts, Michael M. Henry, Carla E. Estridge, Eric Jankowski May 2018

Routine Million-Particle Simulations Of Epoxy Curing With Dissipative Particle Dynamics, Stephen Thomas, Monet Alberts, Michael M. Henry, Carla E. Estridge, Eric Jankowski

Materials Science and Engineering Faculty Publications and Presentations

Mesoscale simulation techniques have helped to bridge the length scales and time scales needed to predict the microstructures of cured epoxies, but gaps in computational cost and experimental relevance have limited their impact. In this work, we develop an open-source plugin epoxpy for HOOMD-Blue that enables epoxy crosslinking simulations of millions of particles to be routinely performed on a single modern graphics card. We demonstrate the first implementation of custom temperature-time curing profiles with dissipative particle dynamics and show that reaction kinetics depend sensitively on the stochastic bonding rates. We provide guidelines for modeling first-order reaction dynamics in a classic …


Redshirt In Engineering: A Model For Improving Equity And Inclusion, Donna C. Llewellyn, Ann Delaney, Janet Callahan Apr 2018

Redshirt In Engineering: A Model For Improving Equity And Inclusion, Donna C. Llewellyn, Ann Delaney, Janet Callahan

Materials Science and Engineering Faculty Publications and Presentations

The NSF-funded Redshirt in Engineering Consortium was formed in 2016 with the goal of enhancing the ability of academically talented but underprepared students coming from low-income backgrounds to successfully graduate with engineering degrees. The Consortium takes its name from the practice of redshirting in college athletics, with the idea of providing an extra year and support to help promising engineering students complete a bachelor’s degree. The Consortium builds on the success of three existing “academic redshirt” programs and expands the model to three new schools. The Existing Redshirt Institutions (ERIs) help mentor and train the new Student Success Partners (SSP), …


Supramolecular Aptamer Nano-Constructs For Receptor-Mediated Targeting And Light-Triggered Release Of Chemotherapeutics Into Cancer Cells, Deepak K. Prusty, Volker Adam, Reza M. Zadegan, Stephan Irsen, Michael Famulok Feb 2018

Supramolecular Aptamer Nano-Constructs For Receptor-Mediated Targeting And Light-Triggered Release Of Chemotherapeutics Into Cancer Cells, Deepak K. Prusty, Volker Adam, Reza M. Zadegan, Stephan Irsen, Michael Famulok

Materials Science and Engineering Faculty Publications and Presentations

Platforms for targeted drug-delivery must simultaneously exhibit serum stability, efficient directed cell internalization, and triggered drug release. Here, using lipid-mediated self-assembly of aptamers, we combine multiple structural motifs into a single nanoconstruct that targets hepatocyte growth factor receptor (cMet). The nanocarrier consists of lipidated versions of a cMet-binding aptamer and a separate lipidated GC-rich DNA hairpin motif loaded with intercalated doxorubicin. Multiple 2′,6′-dimethylazobenzene moieties are incorporated into the doxorubicin-binding motif to trigger the release of the chemotherapeutics by photoisomerization. The lipidated DNA scaffolds self-assemble into spherical hybrid-nanoconstructs that specifically bind cMet. The combined features of the nanocarriers increase serum nuclease …


Atomic Layer Deposition Of Molybdenum Disulfide Films Using Mof6 And H2S, Steven Letourneau, Elton Graugnard Jan 2018

Atomic Layer Deposition Of Molybdenum Disulfide Films Using Mof6 And H2S, Steven Letourneau, Elton Graugnard

Materials Science and Engineering Faculty Publications and Presentations

Molybdenum sulfide films were grown by atomic layer deposition on silicon and fused silica substrates using molybdenum hexafluoride (MoF6) and hydrogen sulfide at 200 °C. In situ quartz crystal microbalance (QCM) measurements confirmed linear growth at 0.46 Å/cycle and self-limiting chemistry for both precursors. Analysis of the QCM step shapes indicated that MoS2 is the reaction product, and this finding is supported by x-ray photoelectron spectroscopy measurements showing that Mo is predominantly in the Mo(IV) state. However, Raman spectroscopy and x-ray diffraction measurements failed to identify crystalline MoS2 in the as-deposited films, and this might result …


Improving The Relative Calculations Of Volta Potential Differences Acquired From Scanning Kelvin Probe Force Microscopy (Skpfm) From Comparing An Inert Material To First-Principle Calculations, C. M. Efaw, T. Da Silva, P. H. Davis, L. Li, E. Graugnard, M. Hurley Jan 2018

Improving The Relative Calculations Of Volta Potential Differences Acquired From Scanning Kelvin Probe Force Microscopy (Skpfm) From Comparing An Inert Material To First-Principle Calculations, C. M. Efaw, T. Da Silva, P. H. Davis, L. Li, E. Graugnard, M. Hurley

Materials Science and Engineering Faculty Publications and Presentations

An improved relative scaling of Volta potential differences (VPD) acquired from scanning Kelvin probe force microscopy (SKPFM) was developed by quantifying the probe work function. In corrosion studies, SKPFM has been used to identify local nobility of complex metallic systems and provide theoretical corrosion initiation sites. However, large variability in measured VPD values for metallic phases has led to controversy in their interpretation. Tracking changes of the probe work function has been shown to decrease the variability seen in SKPFM results. To quantify the work function of SKPFM probes, the measured VPD of an inert gold standard was compared to …


Detection Of Methylation On Dsdna Using Nanopores In Mos2 Membrane, David Estrada Oct 2017

Detection Of Methylation On Dsdna Using Nanopores In Mos2 Membrane, David Estrada

Materials Science and Engineering Faculty Publications and Presentations

Methylation at the 5-carbon position of the cytosine nucleotide base in DNA has been shown to be a reliable diagnostic biomarker for carcinogenesis. Early detection of methylation and intervention could drastically increase the effectiveness of therapy and reduce the cancer mortality rate. Current methods for detecting methylation involve bisulfite genomic sequencing, which are cumbersome and demand a large sample size of bodily fluids to yield accurate results. Hence, more efficient and cost effective methods are desired. Based on our previous work, we present a novel nanopore-based assay using a nanopore in a MoS2 membrane, and the methyl-binding protein (MBP), …


Amorphous Boron Nanorod As An Anode Material For Lithium-Ion Batteries At Room Temperature, Changjian Deng, Miu Lun Lau, Riley Parrish, Kassiopeia A. Smith, Hui Xiong Aug 2017

Amorphous Boron Nanorod As An Anode Material For Lithium-Ion Batteries At Room Temperature, Changjian Deng, Miu Lun Lau, Riley Parrish, Kassiopeia A. Smith, Hui Xiong

Materials Science and Engineering Faculty Publications and Presentations

We report an amorphous boron nanorod anode material for lithium-ion batteries prepared through smelting non-toxic boron oxide in liquid lithium. Boron in theory can provide capacity as high as 3099 mAh g-1 by alloying with Li to form B4Li5. However, experimental studies of boron anode were rarely reported for room temperature lithium-ion batteries. Among the reported studies the electrochemical activity and cycling performance of bulk crystalline boron anode material are poor at room temperature. In this work, we utilized amorphous nanostructured one-dimensional (1D) boron material aiming at improving the electrochemical reactivity between boron and lithium ions …


Metrology Of Dna Arrays By Super-Resolution Microscopy, Christopher M. Green, Kelly Schutt, Noah Morris, Reza M. Zadegan, William L. Hughes, Wan Kuang, Elton Graugnard Aug 2017

Metrology Of Dna Arrays By Super-Resolution Microscopy, Christopher M. Green, Kelly Schutt, Noah Morris, Reza M. Zadegan, William L. Hughes, Wan Kuang, Elton Graugnard

Materials Science and Engineering Faculty Publications and Presentations

Recent results in the assembly of DNA into structures and arrays with nanoscale features and patterns have opened the possibility of using DNA for sub-10 nm lithographic patterning of semiconductor devices. Super-resolution microscopy is being actively developed for DNA-based imaging and is compatible with inline optical metrology techniques for high volume manufacturing. Here, we combine DNA tile assembly with state-dependent super-resolution microscopy to introduce crystal-PAINT as a novel approach for metrology of DNA arrays. Using this approach, we demonstrate optical imaging and characterization of DNA arrays revealing grain boundaries and the temperature dependence of array quality. For finite arrays, analysis …


Phase Separation In Ti-6al-4v Alloys With Boron Additions For Biomedical Applications: Scanning Kelvin Probe Force Microscopy Investigation Of Microgalvanic Couples And Corrosion Initiation, P. H. Davis, K. Robles, K. Livingston, S. Johns, V. A. Ravi, E. Graugnard, M. F. Hurley Aug 2017

Phase Separation In Ti-6al-4v Alloys With Boron Additions For Biomedical Applications: Scanning Kelvin Probe Force Microscopy Investigation Of Microgalvanic Couples And Corrosion Initiation, P. H. Davis, K. Robles, K. Livingston, S. Johns, V. A. Ravi, E. Graugnard, M. F. Hurley

Materials Science and Engineering Faculty Publications and Presentations

To investigate the effect of boron additions on the corrosion behavior of Ti-6Al-4V for potential use in biomedical implants and devices, cast samples of Ti-6Al-4V were alloyed with 0.01% to 1.09% boron by weight and subjected to hot isostatic pressing. Subsequent analysis via scanning Kelvin probe force microscopy and scanning electron microscopy/energy-dispersive spectroscopy revealed the presence of both alpha (α) and beta (β) phase titanium, enriched in aluminum and vanadium, respectively. At all concentrations, boron additions affected the grain structure and were dispersed throughout both phases, but above the solubility limit, needle-like TiB structures also formed. …


Testing Our Assumptions: The Role Of First Course Grade And Course Level In Mathematics And English, Janet Callahan, Marcia Belcheir Aug 2017

Testing Our Assumptions: The Role Of First Course Grade And Course Level In Mathematics And English, Janet Callahan, Marcia Belcheir

Materials Science and Engineering Faculty Publications and Presentations

Methods that provide an early indicator of factors that affect student persistence are important to colleges and universities. This quantitative research focused on the role of level of entry mathematics and English and also on grades earned in those classes as they relate to persistence after one year. The research showed that by far, the variable most predictive of first-time, full-time students enrolling one year later was earning a grade of “A” in English. Compared to those who did not pass their first English course, students who earned an “A” were three times more likely to persist. The variables which …


Computationally Connecting Organic Photovoltaic Performance To Atomistic Arrangements And Bulk Morphology, Matthew L. Jones, Eric Jankowski Jul 2017

Computationally Connecting Organic Photovoltaic Performance To Atomistic Arrangements And Bulk Morphology, Matthew L. Jones, Eric Jankowski

Materials Science and Engineering Faculty Publications and Presentations

Rationally designing roll-to-roll printed organic photovoltaics requires a fundamental understanding of active layer morphologies optimized for charge separation and transport, and which ingredients can be used to self-assemble those morphologies. In this review article we discuss advances in three areas of computational modeling that provide insight into active layer morphology and the charge transport properties that result. We explain the computational bottlenecks prohibiting atomistically-detailed simulations of device-scale active layers and the coarse-graining and hardware acceleration strategies for overcoming them. We review coarse-grained simulations of organic photovoltaic active layers and show that high throughput simulations of experimentally-relevant length scales are now …


Listening And Negotiation Ii, Adjo A. Amekudzi-Kennedy, Kevin D. Hall, Trevor Scott Harding, Amy J. Moll, Janet Callahan Jun 2017

Listening And Negotiation Ii, Adjo A. Amekudzi-Kennedy, Kevin D. Hall, Trevor Scott Harding, Amy J. Moll, Janet Callahan

Materials Science and Engineering Faculty Publications and Presentations

This paper is based on a panel held in June, 2017 in Columbus, Ohio, jointly sponsored by the Women in Engineering Division and by the Minorities in Engineering Division. It is focused on negotiation, with an emphasis on providing practical strategies that are relevant in an academic setting. The panel featured academic leaders at multiple levels, including professor, chair and dean, from diverse engineering institutions, ranging from teaching-centric to heavily research-focused. Panelists discussed strategies for negotiation, with an emphasis on an approach that meets the interests of both parties to the extent possible. The panel was administrated with an opening …


Establishing Doctoral Programs In Electrical Engineering, Materials Science And Engineering, And Computing In An Emerging Research Institution: Lessons Learned And Best Practices, Janet Callahan, Cheryl B. Schrader, Darryl P. Butt, Timothy Anderson, Tammi Vacha-Hasse, Amy J. Moll Jun 2017

Establishing Doctoral Programs In Electrical Engineering, Materials Science And Engineering, And Computing In An Emerging Research Institution: Lessons Learned And Best Practices, Janet Callahan, Cheryl B. Schrader, Darryl P. Butt, Timothy Anderson, Tammi Vacha-Hasse, Amy J. Moll

Materials Science and Engineering Faculty Publications and Presentations

Over the past decade, three doctoral programs have been launched at Boise State University. The first doctoral program established was in Electrical and Computer Engineering, selected because of the need for a trained workforce in the region. The other two doctoral programs, Materials Science and Engineering, and Computing, were from the start designed as interdisciplinary degree programs. That is, they were designed for the participation of not just program faculty within the division, but for the participation of program faculty with related research interests in other departments at the university. This paper presents the steps taken to launch the programs, …


Vertically Integrated Projects (Vip) Programs: Multidisciplinary Projects With Homes In Any Discipline, Jocelyn B. S. Cullers, William L. Hughes, Donna C. Llewellyn Jun 2017

Vertically Integrated Projects (Vip) Programs: Multidisciplinary Projects With Homes In Any Discipline, Jocelyn B. S. Cullers, William L. Hughes, Donna C. Llewellyn

Materials Science and Engineering Faculty Publications and Presentations

A survey of papers in the ASEE Multidisciplinary Engineering Division over the last three years shows three main areas of emphasis: individual courses; profiles of specific projects; and capstone design courses. However, propagating multidisciplinary education across the vast majority of disciplines offered at educational institutions with varying missions requires models that are independent of the disciplines, programs, and institutions in which they were originally conceived. Further, models that can propagate must be cost effective, scalable, and engage and benefit participating faculty. Since 2015, a consortium of twenty-four institutions has come together around one such model, the Vertically Integrated Projects (VIP) …


Ten Years Later: Where Are They Now?, Janet Callahan, Donna C. Llewellyn, Vicki Stieha, Ann E. Delaney Jun 2017

Ten Years Later: Where Are They Now?, Janet Callahan, Donna C. Llewellyn, Vicki Stieha, Ann E. Delaney

Materials Science and Engineering Faculty Publications and Presentations

This paper explores the educational and career trajectories of the alumnae of an outreach activity for girls. The outreach activity was originally developed using an integrated marketing approach to attract girls into engineering programs.1 The program, a two day, overnight experience for rising 9th, 10th and 11th grade girls, focuses on showcasing engineering as an exciting, creative activity, including activities developed from that perspective. Started in 2005 and held annually since then, a total of over 500 girls have participated, with approximately 85% of them coming from Boise State University’s immediate metropolitan area. Facilitated by …


Effects Of Proton Irradiation On Structural And Electrochemical Charge Storage Properties Of Tio2 Nanotube Electrode For Lithium-Ion Batteries, Kassiopeia A. Smith, Andreas I. Savva, Changjian Deng, Hui Xiong Jun 2017

Effects Of Proton Irradiation On Structural And Electrochemical Charge Storage Properties Of Tio2 Nanotube Electrode For Lithium-Ion Batteries, Kassiopeia A. Smith, Andreas I. Savva, Changjian Deng, Hui Xiong

Materials Science and Engineering Faculty Publications and Presentations

The effects of proton irradiation on nanostructured metal oxides have been investigated. Recent studies suggest that the presence of structural defects (e.g. vacancies and interstitials) in metal oxides may enhance the material’s electrochemical charge storage capacity. A new approach to introduce defects in electrode materials is to use ion irradiation as it can produce a supersaturation of point defects in the target material. In this work we report the effect of low-energy proton irradiation on amorphous TiO2 nanotube electrodes at both room temperature and high temperature (250 ˚C). Upon room temperature irradiation the nanotubes demonstrate an irradiation-induced phase transformation …


Liquid-Gas Surface Tension Voltage Dependence During Electrowetting On Dielectric Of 5-90 Nm Gold Nanofluids, Saeid Vafaei, Karthik Chinnathambi, Theodorian Borca-Tasciuc Mar 2017

Liquid-Gas Surface Tension Voltage Dependence During Electrowetting On Dielectric Of 5-90 Nm Gold Nanofluids, Saeid Vafaei, Karthik Chinnathambi, Theodorian Borca-Tasciuc

Materials Science and Engineering Faculty Publications and Presentations

This article investigates the effective liquid-gas surface tension changes of water and 5-90nm gold nanofluids measured during electrowetting on dielectric experiments. The Young-Laplace equation for sessile droplets in air was solved to fit the experimental droplet shape and determine the effective liquid-gas surface tension at each applied voltage. A good agreement between experimental droplet shapes and the predictions was observed for all the liquids investigated in applied range of 0-30V. The measured liquid-gas effective surface tensions of water and gold nanofluid decreased with voltage. At a given voltage, the effective liquid-gas surface tension of gold nanofluids initially decreased as the …


Availability: A Metric For Nucleic Acid Strand Displacement Systems, Xiaoping Olson, Shohei Kotani, Jennifer E. Padilla, Natalya Hallstrom, Sara Goltry, Jeunghoon Lee, Bernard Yurke, William L. Hughes, Elton Graugnard Jan 2017

Availability: A Metric For Nucleic Acid Strand Displacement Systems, Xiaoping Olson, Shohei Kotani, Jennifer E. Padilla, Natalya Hallstrom, Sara Goltry, Jeunghoon Lee, Bernard Yurke, William L. Hughes, Elton Graugnard

Materials Science and Engineering Faculty Publications and Presentations

DNA strand displacement systems have transformative potential in synthetic biology. While powerful examples have been reported in DNA nanotechnology, such systems are plagued by leakage, which limits network stability, sensitivity, and scalability. An approach to mitigate leakage in DNA nanotechnology, which is applicable to synthetic biology, is to introduce mismatches to complementary fuel sequences at key locations. However, this method overlooks nuances in the secondary structure of the fuel and substrate that impact the leakage reaction kinetics in strand displacement systems. In an effort to quantify the impact of secondary structure on leakage, we introduce the concepts of availability and …


Signal-To-Noise Ratio Enhancement Using Graphene-Based Passive Microelectrode Arrays, Sepideh Rastegar, Justin Stadlbauer, Kiyo Fujimoto, Kari Mclaughlin, David Estrada, Kurtis D. Cantley Jan 2017

Signal-To-Noise Ratio Enhancement Using Graphene-Based Passive Microelectrode Arrays, Sepideh Rastegar, Justin Stadlbauer, Kiyo Fujimoto, Kari Mclaughlin, David Estrada, Kurtis D. Cantley

Materials Science and Engineering Faculty Publications and Presentations

This work is aimed toward the goal of investigating the influence of different materials on the signal-to-noise ratio (SNR) of passive neural microelectrode arrays (MEAs). Noise reduction is one factor that can substantially improve neural interface performance. The MEAs are fabricated using gold, indium tin oxide (ITO), and chemical vapor deposited (CVD) graphene. 3D-printed Nylon reservoirs are then adhered to the glass substrates with identical MEA patterns. Reservoirs are filled equally with a fluid that is commonly used for neuronal cell culture. Signal is applied to glass micropipettes immersed in the solution, and response is measured on an oscilloscope from …


Application Of Artificial Neural Networks To Identify Equilibration In Computer Simulations, Michael H. Leibowitz, Evan D. Miller, Michael M. Henry, Eric Jankowski Jan 2017

Application Of Artificial Neural Networks To Identify Equilibration In Computer Simulations, Michael H. Leibowitz, Evan D. Miller, Michael M. Henry, Eric Jankowski

Materials Science and Engineering Faculty Publications and Presentations

Determining which microstates generated by a thermodynamic simulation are representative of the ensemble for which sampling is desired is a ubiquitous, underspecified problem. Artificial neural networks are one type of machine learning algorithm that can provide a reproducible way to apply pattern recognition heuristics to underspecified problems. Here we use the open-source TensorFlow machine learning library and apply it to the problem of identifying which hypothetical observation sequences from a computer simulation are "equilibrated" and which are not. We generate training populations and test populations of observation sequences with embedded linear and exponential correlations. We train a two-neuron artificial network …


High-Temperature Corrosion Testing Of Uranium Silicide Surrogates, B. J. Jaques, G. Alanko, D. P. Butt Oct 2016

High-Temperature Corrosion Testing Of Uranium Silicide Surrogates, B. J. Jaques, G. Alanko, D. P. Butt

Materials Science and Engineering Faculty Publications and Presentations

The corrosion resistance of cerium silicide, a surrogate of uranium silicide, is investigated to gain insight into the reaction of uranium silicide with water. As-received and proton-irradiated Ce3Si2, CeSi2, and CeSi1.x monolithic pellets are subjected to corrosion tests in water at 300°C and 9 MPa for up to 48 h. Results show that an oxide layer composed of Ce4.67 (SiO4)3O forms on the surface of all samples, and it grows thicker with extended exposure times. Irradiated samples corrode to a greater extent than their unirradiated counterparts, which is …