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The material exhibited a sensitivity in the near infrared that was 10 times better than conventional photodetectors.
However, it proved unsuitable for many applications, because devices made of the material exhibited high leakage currents at only moderately elevated temperatures.
Moreover, the material exhibited excellent electrochemical stability.
This material exhibited a broad band, and a multicolor.
The material exhibited desirable properties for cell adhesion and proliferation.
Li et al. reported that the glass-zirconia material exhibited good bioactivity and no cytotoxicity [33].
After this, the material exhibited hardening behaviour followed by softening, depending on the damage state.
The material exhibited a high specific capacitance of 156 F g−1 at a scan rate of 5 mV.s−1.
Impact tests demonstrated that the cellular TIMs composed of intrinsically brittle base material exhibited perfect softening behavior.
The material exhibited good separation selectivity for carbohydrates and ability to enrich glycosylated peptides.
Such MnO2-TiN nanotube hybrid electrode material exhibited effective energy storage in flexible supercapacitor application.
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