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Unexpectedly, the variant was found to acquire enhanced thermal stability.
Themogravimetric analysis revealed a significantly enhanced thermal stability.
DNA sequence analysis of enriched phagemid panning isolates allowed identification of mutations conferring enhanced thermal stability.
Thermogravimetric analysis shows enhanced thermal stability of the composite compared to pure PAN.
Due to the formation of more compact crosslinked structure, nanocomposite membranes exhibited enhanced thermal stability.
T415I was also found to acquire enhanced thermal stability with the half-life of 60 min at 80 °C.
The nanocomposites exhibited enhanced thermal stability and an increase in glass transition temperature, relative to neat polystyrene.
These nanocomposites also exhibited enhanced thermal stability relative to the virgin polystyrene prepared by the same method.
Thermogravimetric analysis reveals a significantly enhanced thermal stability with the addition of the amine-functionalized Pr6O11 nanoparticles.
Thermo gravimetric analysis shows enhanced thermal stability of the composite compared to the semi Inter penetrating Polymer Network system.
Additionally, VOPO4-coated samples exhibit enhanced thermal stability due to featuring reduced decomposition exothermicity and increase thermal runaway onset temperature.
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