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The concatenation produces key stability up to 94%% [9].
This framework structure exhibited a high stability up to 330 °C after removing free water molecules.
In addition, good stability (up to 30 days) of the developed biosensor was observed.
According to TGA analysis, the coordination polymers exhibited thermal stability up to 300 °C.
Ab initio molecular dynamics simulations imply its thermal stability up to 600 K.
Thermogravimetric analysis (TGA) shows the complexes 1 5 possess good thermal stability up to 300 °C.
Moreover, the ternary composite also shows superior capacitance retention and cycling stability up to 2000 cycles.
Fast switching times and high cycling stability, up to 20000 cycles, are recorded.
Coating exhibited thermal stability up to 700 °C and subsequently showed reduction in the superlattice character.
Ammonium polyphosphate composites are suitable materials which show good conductivity and high thermal stability up to approximately 250 °C.
Thermal stability of the coating on the NiTi ZrO2 surface was evaluated, showing excellent stability up to 320 °C.
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