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α-MgAgSb is a promising thermoelectric materials having good performance at medium temperature.
Thus, the addition of small amounts of ABS to PC could result in materials having good properties along with improved processability.
In this context, one of the R&D challenges is to replace the costly platinum electrode with more cost-effective materials having good catalytic ability for the reduction of ({text{I}}_{3}^) ions while exhibiting high resistance to corrosion.
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These materials have good glass-forming properties, chemical durability, and temperature resistance.
The materials had good crystallinity, and the largest number of octahedral spinel was well distributed.
This makes the adsorption properties of CO2 adsorbed in similar materials have good similarity with CH4 adsorbed in raw coal.
These materials have good ionicconductivity in the range of 10−6 S/cm at RT with small contributions from the grain boundaries and negligible electronic conductivity [1-3].
The magnetic properties of the synthesized nanocomposites indicate that these materials have good potential for important technological applications, e.g. in ferrofluid technology, bioprocessing and magneto-optical devices.
The above results indicated that the co-doped materials had good reversibility of lithium ions intercalation/deintercalation and improved coulombic efficiency.
Our results clearly suggest that quinacridone-based materials have good photo-thermal stability and large third-order NLO properties, are very promising for integrated NLO devices.
Finally, the fluorescence microscopy observation and MTT assay show that the degradation controllable materials have good biocompatibility, which allow adhesion and proliferation of the examined cells.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com