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The devices showed high sensitivity and a linear range for p-nitrophenol, 10 to 200 μM.
CVG devices showed high tensile strength, high bursting strength, and improved suture retention.
The PSiMc/cyt c hybrid devices showed high electrochemical stability due to the retaining of the protein's redox activity even after several months of its immobilization.
The devices showed high performances with maximum efficiencies of 16.8 cd/A, 5.8 lm/W and 5.0%, which was better than that of a prototype Re-PHEN-doped device under the same conditions.
Particularly, deep blue (CIE coordinates of 0.16, 0.14) and green (CIE coordinates of 0.27, 0.61) devices showed high color quality close to the NTSC standards with high luminance efficiencies of 1.14 and 11.15 cd/A, respectively.
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Compared with single-EML devices, double-EMLs devices showed higher EL efficiencies, higher brightness, and lower operation voltage attributed to wider recombination zone and better balance of carriers.
Finally, the air-blowing stack with these auxiliary devices shows high performance with operational stability.
The simple, low cost and green approach here specifically developed opens up intriguing prospects in the design of bio-inspired energy conversion devices showing high performance, outstanding durability and truly sustainable characteristics.
In fact, Pd II -based Pd II -basednes, structural analogues of the organometallic compolymetallaynesbeen ustructuraln film membranaloguesurface acofsthe wave (SAW) devices, shorganometallicsitivity toward relative humidity percomplexs, when nanostructured membranes were used [24].
The device showed high performance with a specific capacitance of 239 F g−1 at a current density of 3 A g−1, which is 585% higher than the supercapacitor based on MWCNT electrodes at 1 A g−1 (maximum current obtained).
The GO/NiTAPc symmetric pseudocapacitor device showed high power density (Psp) of 140.0 kW kg−1 with superior retention of capacitance when subjected to a long-hour (50 h) voltage-holding test.
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