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There were three possible candidate materials.
This infrastructure allows the rapid characterization of catalyst candidate materials.
Ferroelectrics are promising candidate materials for electrocaloric refrigeration.
Various candidate materials were collected from many sources.
Consequently, fibre-reinforced polymer matrix composites are suitable candidate materials.
InSb-added TiO2 nanocomposite films have been proposed as candidate materials for quantum dot solar cells.
Micropillar structures are possible candidate materials for enhancing the performance of planar solar cells [13 15].
Semiconductor nanocrystals with large nonlinearity are also known to be attractive candidate materials for optical limiting.
Colloidal semiconductor quantum dots (QDs) are promising candidate materials for realizing photovoltaics and optoelectronic devices.
Ti5Si3 is one of the candidate materials for very-high-temperature applications.
Two candidate materials investigated in this experiment are cuprous oxide (Cu2O) and hematite (α-Fe2O3).
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