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We present how the introduction of anion vacancies in oxyhydrides enables a route to access new oxynitrides, by conducting ammonolysis of perovskite oxyhydride EuTiO3-xHx (x ∼ 0.18). At 400 °C, similar to our studies on BaTiO3-xHx, hydride lability enables a low temperature direct ammonolysis of EuTi(3.82+)O2.82H0.18, leading to the N(3-)/H(-)-exchanged(More)
We report here reliability tests and modeling of 28nm FDSOI technology middle of the line, including poly to contact and poly to active configurations. We show that time to breakdown is following essentially the same mechanisms in both configuration and is correlated to leakage current in a manner that the apparent cumulative distribution reflects(More)
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