Tyrel McQueen
Appearances
- DateApril 16, 2021Layered intermetallic kagomés have served as an ideal platform to study the exotic phenomenon associated with flat bands and Dirac-type dispersions. It is essential to explore the electronic properties of these structures for the experimental realization of 2D kagomé lattice in bulk materials…
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PhD Candidate, The Johns Hopkins University - DateMarch 24, 2022High entropy materials, multicomponent systems with a high configurational entropy term, i.e…
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- DateMarch 20, 2022A Kitaev quantum spin liquid is a state expected to appear in magnetic honeycomb lattices when the Heisenberg exchange interaction is minimized…
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- DateMarch 20, 2022Chemistry is all about understanding and controlling the properties of matter -- Where are the electrons? How do particular arrangements of atoms and bonds result in the zoo of behaviors known in matter? What new properties can be created by arranging atoms in unnatural configurations? Today, there…
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- PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
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- HIGH-ENTROPY OXIDES (HEOS) ARE MULTICOMPONENT OXIDES WITH FIVE OR MORE DIFFERENT METAL CATIONS. THE LARGE CONFIGURATIONAL ENTROPY HELPS TO STABILIZE THE CRYSTAL STRUCTURE, WHICH CAN DIFFER FROM THE TYPICAL BINARY OXIDES CRYSTAL STRUCTURE. IN THE ROCK SALT STRUCTURE OF (MGNICUCOZN)0…
- In comparison to traditional electronics, which exclusively utilize charge, spintronic devices utilize both charge and spin. One avenue towards the design of spintronic devices is through materials that can host magnetic skyrmions…
Presenter
Johns Hopkins UniversitySpeakers
- PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
Speakers
- : [CELL] Division of Cellulose and Renewable Materials
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University of California Santa BarbaraVirginia TechCornell UniversityProfessor, Cornell UnivKramer Professor of Materials and Department Chair of Chemical Engineering, UC Santa BarbaraUniv of CaliforniaParastoo Azadi, PhDAssociate Director of CCRC, University of GeorgiaThe University of Texas at AustinThe Pennsylvania State University - University Park Campus - PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
Speakers
- : [CELL] Division of Cellulose and Renewable Materials
Speakers
University of California Santa BarbaraVirginia TechCornell UniversityProfessor, Cornell UnivKramer Professor of Materials and Department Chair of Chemical Engineering, UC Santa BarbaraUniv of CaliforniaParastoo Azadi, PhDAssociate Director of CCRC, University of GeorgiaThe University of Texas at AustinThe Pennsylvania State University - University Park Campus - PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
Speakers
- : [CELL] Division of Cellulose and Renewable Materials
Speakers
University of California Santa BarbaraVirginia TechCornell UniversityProfessor, Cornell UnivKramer Professor of Materials and Department Chair of Chemical Engineering, UC Santa BarbaraUniv of CaliforniaParastoo Azadi, PhDAssociate Director of CCRC, University of GeorgiaThe University of Texas at AustinThe Pennsylvania State University - University Park Campus - HIGH-ENTROPY OXIDES (HEOS) ARE MULTICOMPONENT OXIDES WITH FIVE OR MORE DIFFERENT METAL CATIONS. THE LARGE CONFIGURATIONAL ENTROPY HELPS TO STABILIZE THE CRYSTAL STRUCTURE, WHICH CAN DIFFER FROM THE TYPICAL BINARY OXIDES CRYSTAL STRUCTURE. IN THE ROCK SALT STRUCTURE OF (MGNICUCOZN)0…
- : [COMP] Division of Computers in Chemistry
Speakers
Michigan State UniversityIBM Almaden Research CenterGraduate Student, Massachusetts Institute of TechnologyMassachusetts Institute of TechnologySyracuse UniversityTemple University - PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
Speakers
- : [CELL] Division of Cellulose and Renewable Materials
Speakers
University of California Santa BarbaraVirginia TechCornell UniversityProfessor, Cornell UnivKramer Professor of Materials and Department Chair of Chemical Engineering, UC Santa BarbaraUniv of CaliforniaParastoo Azadi, PhDAssociate Director of CCRC, University of GeorgiaThe University of Texas at AustinThe Pennsylvania State University - University Park Campus - HIGH-ENTROPY OXIDES (HEOS) ARE MULTICOMPONENT OXIDES WITH FIVE OR MORE DIFFERENT METAL CATIONS. THE LARGE CONFIGURATIONAL ENTROPY HELPS TO STABILIZE THE CRYSTAL STRUCTURE, WHICH CAN DIFFER FROM THE TYPICAL BINARY OXIDES CRYSTAL STRUCTURE. IN THE ROCK SALT STRUCTURE OF (MGNICUCOZN)0…
- : [COMP] Division of Computers in Chemistry
Speakers
Michigan State UniversityIBM Almaden Research CenterGraduate Student, Massachusetts Institute of TechnologyMassachusetts Institute of TechnologySyracuse UniversityTemple University - DateMarch 29, 2023PARADIM, the Platform for the Accelerated Realization, Analysis, and Discovery of Interface Materials, is a national user facility initiated in 2016 to enable a more effective way of pursuing materials research…
Speaker
Presenter
- DateMarch 30, 2023High-entropy oxides (HEOs) are multicomponent oxides with five or more different metal cations. The large configurational entropy helps to stabilize the crystal structure, which can differ from the typical binary oxides crystal structure. In the rock salt structure of (MgNiCuCoZn)0…
- DateMarch 27, 2023In comparison to traditional electronics, which exclusively utilize charge, spintronic devices utilize both charge and spin. One avenue towards the design of spintronic devices is through materials that can host magnetic skyrmions…
Presenter
Johns Hopkins UniversitySpeakers
- DateMarch 20, 2024Multi-Principal Element Alloys (MPEAs) hold significant promise for state-of-the-art applications in sectors like aerospace and automotive racing due to their outstanding mechanical properties, such as enhanced strength, ductility, and fracture toughness…
- DateAugust 21, 2025The vast composition space of multi-principal element alloys (MPEAs) enables the tailored design of alloys with improved mechanical properties, having a significant impact on high-end structural applications in aerospace, automotive, and energy sectors…
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- DateAugust 20, 2025The design of novel quaternary materials can be a chemically challenging endeavor…
- DateAugust 20, 2025Heterostructured materials typically consist of two component materials layered on each other and bonded via “intermolecular” van der Waals (VdW) forces…
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Co-Authors
- DateAugust 18, 2025Low temperature topotactic chemistry has enabled the realization of materials through new synthetic pathways, allowing for the formation of metastable phases…
- DateAugust 20, 2025Flux syntheses can select for different products than analogous solid state reactions due to the increased role of solvation and kinetics over thermodynamics, altered redox potentials, and/or stabilization of preferred intermediates…
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