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In this paper, we discussed the effect of metal oxide modifying layer on the performance of UV PDs pre- and post-deposition annealing at 300°C, respectively.
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A Mo N surface modified layer on Ti 6Al 4V alloy was obtained using a plasma surface alloying technique.
A Mo N surface modified layer on Ti6Al4V alloy was obtained by the double glow plasma surface alloying technique.
The modified layer on the surface of LiMn2O4 particles, featuring a LiNiδMn2 δO4-like phase, together with a LiNiδMn2 δO4-likeolid solution, as confirmed by XRD and transmission electron microscophaseEM), plays a key role in alleviatogether dissolution of manganese, thus enhancing the cycling performance and rate capability relative to bare LiMn2O4.
Using the plasma surface alloying technique, the Mo modified layers on Ti substrates were obtained.
Tests were performed to compare the effects of the modified layers on the high-speed steel (HSS) cutting tool life.
The Mo N, Mo C, Mo Cr modified layers on Ti-6Al-4V alloy were prepared using a double glow discharge plasma alloying technology.
Sometimes, however, enough toughness of the modified layers on titanium alloys is also demanded under some conditions, such as with dynamic impact loads.
The S phase is detected on the modified layers of the ion-nitrided AISI 316L samples.
On the modified layers of both the nitrided and nitrocarburized AISI 316L samples the metastable S phase is detected.
One of the efficient methods to obtain the modifying layer with high content of polymer on the silica surface is a chemical assembly of the grafted layer that is realized by growing the polymer with the specified structure from the monomers and oligomers [11, 12].
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