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In this study, we investigate sputtered CZTSSe thin-film solar cells, which exhibit better device performance than the previous samples.
We also notice that the devices based on TiO2 nanorods revealed much better device performance than others using TiO2 nanoparticles or compact layer as an ETL.
A decrease in density of surface defects states in plasma treated ZnO NRs probably the cause for better device performance than the device developed with untreated ZnO NRs. Figure 9 ln(I) versus voltage plots of p-n junctions diodes.
The electrodes with nanospheroidal morphology showed better device performance than the P25 nanoparticle electrodes primarily due to both better connectivity among nanospheroidal TiO2 particles and larger mesopores, resulting in deeper penetration of the electrolyte in QD-sensitized solar cells.
Organic field-effect transistors (OFETs) based on XB complexes 1/2,2-dipyridine or 1/2,2-bipyrimidine showed better device performance than that of devices based on pure 1, with the average electron mobility increased more than doubled (from 0.027 cm2 V−1 s−1 to 0.070 cm2 V−1 s−1).
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Devices with bulk heterojunction structures have better device performance reported.
Compound SFOPO-CZ exhibits better green device performance, while compound 2SFOPO shows better red device performance in PhOLEDs.
The PMA device shows better performance than that of the as-deposited device, which makes it suitable for nanoscale nonvolatile memory applications.
"It has more utility than a minivan, and better performance, much better performance, than an S.U.V".
The results show that PGC hybrid devices possess better performance than the commercial activated carbon hybrid device.
Thus, the Ag/PIN device exhibits a better performance than the Ag/NIP device.
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