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A semi-quantitative correlation of approximately 1 μm surface displacement per 1% RH change is calculated.
For high sensitivity of the polyimide film to RH change, it was synthesized from oxidianiline (ODA), m-pyromellitic dianhydride (m-PMDA), and N-methly-2-pyrrolidone (NMP) in which any hydrophobic elements are not included.
The sealed frame package performed very well, with only about 6% overall RH change in 5 months.
When the humidity was increased to 30% RH, change in DSC and in the XRD profile were not observed.
The results of this study show the thermal response method is suitable to demonstrate the response of parchment to RH change; however, it did not provide any specific guidance for setting environmental parameters for parchment.
Deepa et al. [42] fabricated WO3 films via dip-coating technique, and the influence of relative humidity (RH) change (55 and 75% RH) during thin film deposition from an oxalato-acetylated peroxotungstic acid sol on the microstructure and electrochromic properties of WO3 films obtained upon annealing was presented.
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The sample deforms in response to RH changes.
These are correlated with relative humidity (RH) changes in the room climate.
On unloading hydrogen, the value of RH changes to −3.56×10−10 m3/C at the dihydride composition.
The original brown color of the RH changes to yellowish and light yellow on increasing the time of digestion.
This is important when considering appropriate storage conditions because it highlights that there are different facets within parchment that change with RH changes.
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