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The depositions of thin films were done at two different steps and conditions: TiO2 thin film was deposited first using 120 W for 40 min time deposition using radio frequency (rf) in pure oxygen.
It can be seen clearly that the uniformity and homogeneity were distinctly affected by time deposition.
However, the adhesion of PEDOT on nanofiber was still in good condition until 10 min time deposition.
In the first region, the contact angle is a decreasing function of sputtering time (deposition time 10 to 40 s).
Figure 1 shows the treatment of pressure versus time deposition which results in a critical pressure about 20 μbar and leads to classify into two groups of samples.
Thickness and uniformity were determined by process parameter: plasma powers (45 and 80 W), at this time, deposition temperature was 200°C.
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To compare QCM real-time deposition data, a traditional chemical spectrofluorometric method to quantify particulate deposition, previously described [2], was used.
Furthermore, real-time deposition data was obtained in situ of exposure for both the NRU and Ames assays (1.0-12.0 L/min).
In this study we present a novel application of a QCM, to assess the real-time deposition of cigarette smoke in vitro.
A QCM was integrated into our established in vitro exposure chamber to quantify real-time deposition of cigarette smoke particles onto cell cultures.
A short-time deposition of Se at φ = −0.5 V passivated the surface, so no Sn dissolution is observed upon anodic polarization.
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