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Electride
Applicability of Electride Materials for Hollow Cathodes
Interplay of Anionic Quasi-Atom and Interstitial Point Defects In
Electride Characteristics of M2( 5-E5)
A New Electride with Partially Filled D-Shells Padtaraporn Chanhom1,2, Kevin E
Acid-Durable Electride with Layered Ruthenium for Ammonia Synthesis: Boosting the Activity Via Cite This: Chem
High-Throughput Identification of Electrides from All Known Inorganic
Electrides and Alkalides - Comparison with Metal Solutions J
Effect of Substituents of Cerium Pyrazolates and Pyrrolates on Carbon Dioxide Activation
Supporting Information for Angew. Chem. Int. Ed. 200460478 © Wiley-VCH 2004
Ferromagnetic Quasi-Atomic Electrons in Two-Dimensional Electride
Room-Temperature Electrides: Discovery, Synthesis, and Applications
United States Patent 19 11 Patent Number: 6,103,298 Edels0n Et Al
Stable Compound of Helium and Sodium at High Pressure
Computer-Assisted Inverse Design of Inorganic Electrides
Discovery of Hidden Classes of Layered Electrides by Extensive High
Crowns and Crypts a Fascinating Group of Multidentate Macrocyclic Ligands
High Pressure Electrides: a Predictive Chemical and Physical Theory
Potential Interaction of Noble Gas Atoms and Anionic
Top View
Chapter 6 Electrides and Their High-Pressure Chemistry
Identifying Quasi-2D and 1D Electrides in Yttrium and Scandium Chlorides Via Geometrical Identification
Clock Transition Due to a Record 1240 G Hyperfine Interaction in a Lu(II) Molecular Spin Qubit
United States Patent (19) 11 Patent Number: 5,810,980 Edelson (45) Date of Patent: *Sep
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2017 UNIVERSITY of CALIFORNIA IRVINE Ligand Exploration in The
Inverse Design of Inorganic Electrides
Recent Advances in the Liquid-Phase Syntheses of Inorganic Nanoparticles
Electrons in Cement Has Been Realized in a New Type of Inorganic Electride
Electrides: in Pursuit of Correlations Blue Green Yellow
Mayenite-Based Electride C12a7e−: a Reactivity and Stability Study
Synthesis of Intercalation Compounds and Nanocomposites of Inorganic Layered Hosts
Electride Support Boosts Nitrogen Dissociation Over Ruthenium Catalyst and Shifts the Bottleneck in Ammonia Synthesis
Potential Interaction of Noble Gas Atoms And
Enhanced Ammonia Synthesis Activity of Ceria-Supported Ruthenium