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The WBCT scan was considered as the "gold standard" for the diagnosis of pneumothorax (PNO), haemothorax (HMO) and pelvic fracture.
Ti-MWW was a highly active, selective, and reusable catalyst for the synthesis of PNO.
The oxidation of pyridine to pyridine-N-oxide (PNO) with hydrogen peroxide has been investigated on various titanosilicate catalysts.
Ti-MWW was capable of giving pyridine conversion and PNO selectivity both over 99% under optimum reaction conditions.
Pyridine (Py), pyridine-oxide (PNO) and 4-dimethylamino-pyridine (DMAP) were used as the inverse phase transfer catalysts.
A comparison of the system with the proposed method and the system with traditional perturb and observe (PnO) method is also provided.
Here, perovskite-related Pr2NiO4 (PNO) has been evaluated as a novel symmetrical electrode for intermediate-temperature solid oxide fuel cells (IT-SOFCs).
Radical polymerization of N-isopropylacrylamide (NIPAAm) in CHCl3 at low temperatures in the presence of pyridine N-oxide (PNO) was investigated.
An isotactic poly NIPAAm) with meso diad content of 61% was successfully prepared at −60 °C in the presence of a two-fold amount of PNO.
The radical polymerizations of N-isopropylacrylamide (NIPAAm) in chloroform at low temperatures in the presence of pyridine N-oxide (PNO) derivatives were investigated.
Thermodynamic analysis suggested that the isotactic-specificity was entropically induced, probably due to conformational fixation near the propagating chain-end through coordination by PNO.
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