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Both materials show good tack and abrasion resistance.
However, both materials show good reactivity in Ca(OH 2 solution.
Both materials show a limited total plastic deformation of less than 5% and a quasi-linear decrease in the work hardening rate with increasing stress.
Both materials show reduced proton doping relative to PANI without Pt, indicating the metal particles directly influence proton doping and the oxidation state of the polymer.
The devices based on both materials show non-volatile flash memory characteristics, and the effect of molecular coplanarity of the donor groups on the device performance was precisely studied.
Both materials show capacitive behavior characteristic of high surface area electrodes for supercapacitors, with the maximum full cell gravimetric capacitance being 34 F/g for YP17 and 20 F/g for SWCNTs at 2.5 V with respect to the total active electrode mass.
Similar(51)
Both materials showed desirable properties associated with tissue scaffolds.
Both materials showed good affinity for cell attachment.
Both materials showed identical electronic affinities, intermolecular arrangements and thin film topographies.
Both materials showed ultra-high tensile strength, significant strain hardening, and good ductility.
Both materials showed an excellent life cycle, although the thermally treated carbon showed a significantly better behavior.
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CEO of Professional Science Editing for Scientists @ prosciediting.com