Transformation and clustering of defects induced by electron irradiation in barium hollandite ceramics for radioactive cesium storage: Electron paramagnetic resonance study
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3702892
Reference56 articles.
1. Waste Immobilization in Glass and Ceramic Based Hosts
2. Preparation and characterization of (Ba,Cs)(M,Ti)8O16 (M=Al3+, Fe3+, Ga3+, Cr3+, Sc3+, Mg2+) hollandite ceramics developed for radioactive cesium immobilization
3. [Ba x Cs y ][(Ti, Al) 3+ 2 x + y Ti 4+ 8-2 x - y ]O 16 Synroc-type hollandites I. Phase chemistry
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1. Durability of composite materials for nuclear energy systems;Durability of Composite Systems;2020
2. Radiation tolerant ceramics for nuclear waste immobilization: Structure and stability of cesium containing hollandite of the form (Ba,Cs)1.33(Zn,Ti)8O16 and (Ba,Cs)1.33(Ga,Ti)8O16;Journal of Nuclear Materials;2019-05
3. Heavy ion irradiations on synthetic hollandite-type materials: Ba1.0Cs0.3A2.3Ti5.7O16 (A=Cr, Fe, Al);Journal of Solid State Chemistry;2016-07
4. Spectroscopic investigations on glasses, glass-ceramics and ceramics developed for nuclear waste immobilization;Optics and Spectroscopy;2014-05
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