PODCAST · science
Ferroelectricity and Computing
by JJJason
Explore cutting-edge advancements in ferroelectric hafnia, a revolutionary material driving the future of memory and data processing technologies. Dive into the intersections of materials science, machine learning, and quantum computing, where groundbreaking discoveries are shaping the next generation of electronics.
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16
Superconductivity in Pr doped Nickelates
La₂PrNi₂O₇ compound, highlighting the importance of achieving a single-phase material with minimal oxygen vacancies for optimal superconductivity
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15
Thin Film Nickelates and Cuprates
The similarities and differences between nickelates and cuprates, the challenges in synthesizing nickelates, and the recent breakthroughs in achieving superconductivity in thin films.
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14
High-Temperature Nonvolatile Electrochemical Memory
Long-term data retention is achieved through composition phase separation within the tantalum oxide
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13
Origin of Nonvolatility in Resistive Memory
Composition phase separation, rather than solely slow diffusion, governs information storage
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12
High-Pressure Superconductivity in Nickelates
Experimental and theoretical work on nickelate superconductors.
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11
Ambient-Pressure Superconductivity in Lanthanum Nickel Oxide Thin Films
Ambient-pressure superconductivity in thin films of the bilayer nickelate La₃Ni₂O₇
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10
Computational Design of Amorphous Materials
The amorphous state as a frontier in computational materials design
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9
Low-thermal-hysteresis Shape-memory Ceramics
The thermal hysteresis of the tetragonal-monoclinic martensitic phase transformation in zirconia-based shape-memory ceramics.
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8
Fundamentals and Applications of Ferroelectric Hafnia
The origins of ferroelectricity in Hafnium oxide, emphasizing the roles of thermodynamic and kinetic factors, including doping, oxygen concentration, and stress/strain.
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7
Metal-Oxide Interactions in Catalysis
Nature of metal-oxide interaction for metal catalysts
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6
Machine Learning Guided Dopant Selection for Photocatalysis
Machine learning integrated photocatalysis
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5
Machine Learning of Energy Materials
A Critical Review of Machine Learning of Energy Materials
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4
Willow Chip
Willow chip and quantum error correction by Google Quantum
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3
Pulsed Laser Deposition
A practical guide to pulsed laser deposition
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2
Zeolite Phase Transformation and Intergrowth
Graph similarity, high-throughput simulations, and literature mining on zeolite synthesis and transformation.
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1
Epitaxial La-doped Hafnium Zirconium Oxide
Ferroelectrical La:HZO film
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ABOUT THIS SHOW
Explore cutting-edge advancements in ferroelectric hafnia, a revolutionary material driving the future of memory and data processing technologies. Dive into the intersections of materials science, machine learning, and quantum computing, where groundbreaking discoveries are shaping the next generation of electronics.
HOSTED BY
JJJason
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