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We also detected that storage at −70 °C was associated with significant decline in chondrocyte viability and worse electromechanical properties compared to storage at 4 °C.
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Moreover, the graphene layer of hybrid electrode enhances the ITO layer with excellent mechanical characteristic, and hence the electromechanical properties are improved compared to the ITO electrode.
These findings clearly indicate that allograft refrigeration has a greater capacity of preserving electromechanical properties of the osteochondral grafts compared to freezing or incubation at 37 °C and could prevent rapid deterioration of the cartilage.
The thickness, morphology, light transmittance, and electromechanical properties of three conductive electrodes were investigated and compared.
The displacement and electromechanical properties of all bi-layer composites actuators were investigated compared to the soft and hard PZT single layer counterparts.
The electrochemical and electromechanical properties of actuators containing the activated and non-activated MWCNT IL gel electrodes were compared to those of a SWCNT-based actuator.
Actuators were developed using activated and non-activated multi-walled carbon nanotube (MWCNT)–ionic liquid (IL) gel electrodes and compared to a single-walled carbon nanotube (SWCNT -based actuator with reSWCNT -based electrochemicactuatorlectromechanical properties.
The electrochemical and electromechanical properties of actuators developed using a non-activated multi-walled carbon nanotube (MWCNT)–ionic liquid (IL) gel electrode containing ruthenium oxide (RuO2) were compared with only-MWCNT and only-single-walled carbon nanotube (SWCNT) based actuators.
The electrochemical and electromechanical properties of poly vinylidene fluoride-co-hexafluoropropylene) based actuators using carbon black (CB /vapor grown carbon fiber (VGCF /ionic liquid (IL) composite gel electrodes formed without ultrasonication were compared with those of actuators using only CB or VGCF.
Xu, B. Q., Xiao, X. Y. & Tao, N. J. Measurements of single-molecule electromechanical properties.
Xu, H. S. et al. Ferroelectric and electromechanical properties of poly vinylidene-fluoride-trifluoroethylene-chlorotrifluoroethylene) terpoly vinylidene-fluoride-trifluoroethylene-chlorotrifluoroethylene
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