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Europium oxide, resistivity

Praseodymium is soft, silvery, malleable, and ductile. It is somewhat more resistant to corrosion in air than europium, lanthanum, cerium, or neodymium, but it does develop a green oxide coating that spalls off when exposed to air. As with other rare-earth metals, it should be kept under a light mineral oil or sealed in plastic. [Pg.180]

Yttrium alloys have many applications. The metal doped with rare earths such as europium is used as phosphor for color television receivers. When added to iron, chromium, vanadium, niobium, and other metals it enhances resistance of these metals and their alloys to high temperature oxidation and recrystallization. It is a deoxidizer for vanadium and other nonferrous metals. Yttrium-aluminum garnets are used in lasers and in jewelery gemstones. Yttrium-iron garnets are used as transmitters and as transducers of acoustic energy. [Pg.977]

The applications of yttrium are diverse. It is used in alloys (e.g., with magnesium, chromium, molybdenum and zirconium). Yttrium YVO4-EU and Y2O3-europium phosphors are the standard red components in color televisions and monitors (Hammond 2015). Yttrium oxide is used in lenses for cameras to make the glass heat and shock resistant. [Pg.90]

Chevalier et al. (1977) studied also the magnetic and electrical transport properties of NdO cNi-x phases which differ from those of the europium-containing phases since they are ferromagnetic and metallic. Conductivity increases with increasing oxide content and resistivities vary from 10 Qcm for x=0.09 to 10 " Qcm for x=0.22. [Pg.58]

Poly(ionic liquid) brushes with terminated ferrocene units acted similarly, while the interfacial resistance was probed by hexacyanoferrate [457]. Chemical and electrochemical switching of local pH at an electrode-grafted poly(vinyl pyridine) brush again allowed modulation of hexacyanoferrate chemistiy (Fig. 43) [458]. Octacyanomolybdate was used as catalyst for the oxidation of ascorbic acid [459]. Even heteropolyanions (Keggin ions) could be entrapped in polymer films electrochemicaUy [460]. Further, thermoresponsive or pH-responsive cationic copolymer films modulated the hexacyanoferrate or ferrocenedicarboxyUc acid electrochemistry by temperature or variatimi of pH and perchlorate concentration, respectively [461-463]. Besides these complexes with cationic polyelectrolyte films, electroactive cationic counterions (e.g., the europium couple) interacted with anionic networks [464]. Similarly, copper ions within a PAA matrix [367] allowed the construction of actuators [465]. Besides these binary systems (poly-electrolyte/electroactive counterions), multiresponsive electrode modification with an interpenetrating gel network of poly(acrylic) acid and poly(diethyl acrylamide) allowed the modulation of hexacyanoferrate electrochemistry [368]. [Pg.169]


See other pages where Europium oxide, resistivity is mentioned: [Pg.133]    [Pg.318]    [Pg.30]    [Pg.407]    [Pg.713]    [Pg.678]    [Pg.691]    [Pg.670]    [Pg.683]    [Pg.15]    [Pg.720]    [Pg.731]    [Pg.972]    [Pg.124]    [Pg.198]    [Pg.299]    [Pg.657]    [Pg.752]    [Pg.726]    [Pg.737]    [Pg.716]    [Pg.8]    [Pg.750]    [Pg.670]    [Pg.683]   
See also in sourсe #XX -- [ Pg.22 ]




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Europium oxide

Oxidation resistance

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