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The creep coefficient of hydrogels increased with increasing swelling temperature and decreased with increasing cross-linking ratio.
Over the range of swelling temperature examined, 280 338 K, the swelling was found to be exothermic.
Our experimental results showed that increasing the water fraction in the mixed solvent gradually reduces the swelling temperature.
E′ of the gel with cross-linking ratio 0.36 decreased from 5.5 × 104 to 3.5 × 104 Pa with increasing swelling temperature from 30 to 60 °C.
The effects of initiator concentration, swelling temperature, polymerization temperature and monomer feed ratios on the optical properties of the GRIN polymer rods were studied.
The gel was chemically crosslinked poly N-isopropylacrylamide-co-acrylic acid), which has a lower critical swelling tempoly N-isopropylacrylamide-co-acrylic in the test solution was Dextran Blue (molecular weight 2×106 g mol−1).
Similar(52)
Lower critical swelling temperatures (Tc) were exhibited except for copolymers of medium-high content of AMPS.
The maximum swelling ratio, temperature dependence of swelling ratio and deswelling/reswelling kinetics of the resulted PNIPBAm hydrogel were characterized.
Maximum swelling and temperature response are observed at low concentrations of SA (∼2 wt%).
The morphology, swelling behavior, temperature and pH sensitivity, degradability and drug release behavior of the new smart drug delivery system were investigated.
The mathematical model can reproduce the entropy and energy components on stress with various conditions such as the degree of cross-links, the extent of swelling, the temperature dependence and the strain rate dependence.
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