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Semiconductors/Photonics/Organic Electronics
2D Polar Metals and Heterostructures
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Center for Nanoscale Science
Active Interfaces Between Highly-Deformable Nanomaterials
Advanced metamaterials and near-field tools
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Center for Photonic and Multiscale Nanomaterials
Complex Metal Oxides
Controlled Function in Inter-dimensional Materials
Development of Ultra-Coherent Quantum Materials (IRG 3)
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Princeton Center for Complex Materials
Electrostatic Control of Materials
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UMN Materials Research Science and Engineering Center
Functional Heteroanionic Materials via the Science of Synthesis
Functional Organic-Inorganic Electronic Interfaces
Harnessing Mixed Anion Systems to Create Novel Magnetic Properties
Hybrid Organic-Inorganic Nanoelectronic Materials from Molecules to Printable Thin Films
Ionic Control of Materials
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UMN Materials Research Science and Engineering Center
Issues in Materials Integration on Silicon
Magnetoelectric Materials and Functional Interfaces
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UNL Materials Research Science and Engineering Center
Materials Science of Quantum Phenomena in van der Waals Heterostructures
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Center for Precision Assembled Quantum Materials (PAQM)
Metallic Antiferromagnetic Materials: Ultrafast Charge, Lattice, and Magnetization Dynamics
Mobility in Glasses and Liquids
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Wisconsin Materials Research Science and Engineering Center
Molecular Logic for Nanoelectronics
Molecular Plasmonics: Fundamentals, New Tools, and Devices
Multicomponent Assemblies for Collective Function
Nanoionics at the Interface: Charge, Phonon, and Spin Transport
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Center for Materials Science and Engineering
Nanostructured Materials by Molecular Beam Epitaxy
New Semiconductors for Solar Fuel Synthesis (Seed 4)
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Princeton Center for Complex Materials
New Semiconductors from an Unstable World: Manipulating Strain, Stability, Dimensionality and Flexibility
Novel nanostructures for nonlinear frequency conversion (SEED 7)
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Princeton Center for Complex Materials
Organic Optoelectronic Interfaces
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UMN Materials Research Science and Engineering Center
Organic Spintronics
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Next Generation Materials for Plasmonics and Organic Spintronics
Oxides as Semiconductors
Plasmonic Metamaterials
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Next Generation Materials for Plasmonics and Organic Spintronics
Polarization-Enabled Electronic Phenomena
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UNL Materials Research Science and Engineering Center
Reconfigurable Responses in Mixed-Dimensional Heterojunctions
Research Experience for Undergraduates (REU)
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Princeton Center for Complex Materials
Research Experience for Undergraduates (REU) at the Center for Materials Innovation
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Center for Materials Innovation
Research Experience for Youth at the Center for Materials Innovation
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Center for Materials Innovation
Shaping Plasmonic Nanomaterials by Chemical Synthesis
Structured Materials for Strong Light-Matter Interactions
Topological Phases of Matter and Their Excitations (IRG 1)
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Princeton Center for Complex Materials
Topological Quantum Matter
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Princeton Center for Complex Materials
Ultrastable Glasses: New Materials and New Insights
University of Chicago REU Program
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Materials Research Center
University of Chicago REU Program