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The processed material exhibited an excellent balance of strength and tensile ductility.
The material exhibited an excellent thermal stability (Td = 475 °C), electrochemical stability and high triplet energy (2.68 eV).
Early in the development process, it was learned that this material exhibited an unusual sensitivity to degradation by ambient light.
Among these, the material exhibited an enhanced electrochemical performance in KOH electrolyte due to its smaller hydration sphere radius, high ionic mobility and lower equivalent series resistance.
Besides, the PTPA-PO, as the cathode material, exhibited an improved rate performance and remained above 90% of the initial capacity over 100 cycles.
Besides an increase in the yield strength, the fine-grained material exhibited an inflection in the stress strain curve after initial yield.
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The material exhibited a sensitivity in the near infrared that was 10 times better than conventional photodetectors.
This material exhibited a broad band, and a multicolor.
The material exhibited a high specific capacitance of 156 F g−1 at a scan rate of 5 mV.s−1.
The results showed that the hybrid material exhibited a smart response with fluoride anions.
The material exhibited a high electrical resistivity, which varied nonlinearly with compression.
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