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These spectroscopic findings are in agreement with differential scanning calorimetry thermal studies, which also confirm the thermally induced phase transformation.
Joachin, H., Kaun, T. D., Zaghib, K. & Prakash, J. Electrochemical and Thermal studies of LiFePO4 cathode in lithium-ion cells.
Thermal studies revealed higher thermal stability of cryogel.
Thermal studies showed that Tg of the homopolymers shifted to intermediate temperatures.
Thermal studies exhibit small decrease of PVDF crystallinity, accelerated crystallization, and enhanced thermal stability.
The detailed thermal studies confirm a multifold improvement in oxidation resistance up to 1000 °C.
The complexes were characterized by spectral (IR, FAB-MS and Mössbauer), electrochemical and thermal studies.
The thermal studies suggested that the complexes are more stable as compared to ligand.
Detailed structural, optical and thermal studies of P3OT-HT discuss its synthesis aspects.
Their two-phase morphology has been deduced from SEM and optical micrographs and established by DMA and thermal studies.
The structural changes including quantitative measurements have been confirmed through X-ray diffraction, spectroscopic and thermal studies.
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