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Significant differences in volume phase transition enthalpies of PNIPAAm (ΔHVPT) and volume phase transition temperatures (TVPT) were found.
It exhibits a volume phase transition temperature (VPTT) around 32°C.
The volume phase transition temperature is between the refrigerator temperature and human body temperature.
The copolymer hydrogel particles exhibited both temperature- and pH-responsive volume phase transition.
All samples show volume phase transition temperature (VPTT) around 47 °C.
Their thermosensitive volume phase transition and in situ gel-forming behavior were investigated.
Many one dimensional optically patterned photopolymers exist as surface relief or volume phase gratings.
These core-shell microgels exhibit tunable volume phase transition temperature and excellent colloidal stability across the physiologically important temperature range.
A key aspect of gels is their volume phase transition, which provides a macroscopic mechanism for effecting microscopic changes.
The pH-sensitive PAA network chains are designed to induce a pH-responsive volume phase transition of the hybrid nanogels.
In this paper, the influence of volume phase transition phenomena on the behavior of hydrogel-based valves are discussed.
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