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Barium electronic properties

Ferroelectncs - [CERAMCS-ELECTRONIC PROPERTIES AND MATERIAL STRUCTURE] (Vol 5) -barium compounds as [BARIUM COMPOUNDS] (Vol 3) -ceramics as [CERAMICS - NONLINEAROPTICAL AND ELECTROOPTIC CERAMICS] (Vol 5) -m infrared technology [INFRARED TECPINOLOGY AND RAMAN SPECTROSCOPY - INFRARED TECHNOLOGY] (Vol 14) -niobium compounds as [NIOBIUM AND NIOBIUM COMPOUNDS] (Vol 17)... [Pg.397]

Additional work on dielectrics includes deposition of silica, PABS (lead aluminum boron silicates), PLZT (lead lanthanum zirconium titanate) and BST (barium strontium titanate) on Si-Ti-Pt wafers (Figure 2). The wafer specimens were patterned with metal electrodes and electronic properties were characterized. [Pg.90]

Alkaline-Earth Titanates. Some physical properties of representative alkaline-earth titanates ate Hsted in Table 15. The most important apphcations of these titanates are in the manufacture of electronic components (109). The most important member of the class is barium titanate, BaTi03, which owes its significance to its exceptionally high dielectric constant and its piezoelectric and ferroelectric properties. Further, because barium titanate easily forms solid solutions with strontium titanate, lead titanate, zirconium oxide, and tin oxide, the electrical properties can be modified within wide limits. Barium titanate may be made by, eg, cocalcination of barium carbonate and titanium dioxide at ca 1200°C. With the exception of Ba2Ti04, barium orthotitanate, titanates do not contain discrete TiO ions but ate mixed oxides. Ba2Ti04 has the P-K SO stmcture in which distorted tetrahedral TiO ions occur. [Pg.127]

Barium titanate has widespread use ia the electronics iadustry. Its high dielectric constant and the ease with which its electrical properties can be modified by combination with other materials make it exceptionally suitable for a variety of items, ie, miniature capacitors (see Ceramics as electrical materials). [Pg.482]

Ouammou A, Mouallem-Bahout M, Pena O, Halet JF, SaiUard JY, Carel C (1995) Physical properties and electronic structure of ternary barium copper sulfides. J Solid State Chem 117 73-79... [Pg.56]

Pure barium metal has few commercial uses because of it reactivity with air and water. Nevertheless, this property makes it useful as a getter or scavenger to remove the last traces of gas from vacuum tubes. Barium metal is used to form alloys with other metals. One alloy is used to make sparkplugs that easily emit electrons when heated, thus improving the efficiency of internal combustion engines. [Pg.80]

The metal-donor bonds are predominantly ionic and become more labile for calcium, strontium, and barium compared to beryllium and magnesium. The solubility and stability of the complexes decrease from calcium to barium. The 1 1 adducts of NHCs with BH3 or BF3 (28 and 29) are thermally stable and can be sublimed without decomposition. This is in sharp contrast to the properties of conventional carbenes, which rely on a pronounced metal-to-ligand back donation and are, thus, not suited to forming adducts with electron-poor fragments such as... [Pg.9]

Barium titanate has many important commercial apphcations. It has both ferroelectric and piezoelectric properties. Also, it has a very high dielectric constant (about 1,000 times that of water). The compound has five crystalline modifications, each of which is stable over a particular temperature range. Ceramic bodies of barium titanate find wide applications in dielectric amplifiers, magnetic amplifiers, and capacitors. These storage devices are used in digital calculators, radio and television sets, ultrasonic apparatus, crystal microphone and telephone, sonar equipment, and many other electronic devices. [Pg.94]

In many of its chemical properties, radium is like the elements magnesium, caldum, strontium and barium, and it is placed in group 2, as is consistent with its 6s26pcls2 electron configuraUon. Its sulfate (Ksp — 4.2 a 10-1 ) is even more insoluble in water than barium sulfate, with which it is conveniently coprecipitated, Like barium and other alkaline earth metals, it forms a soluble chloride (X p = 0,4) and bromide, which can also be obtained as dihydrates, Radium also resembles the other group 2 elements in forming an insoluble carbonate and a very slightly soluble lodate (Xsp = 8.8 x 1(T10). [Pg.1417]

Ferroelectric ceramics (such as barium titanate, lead zircanate titanate) Sensors and actuators, electronic memory, optical applications Tape casting, sputtering, pressing, templated grain growth Improved dielectric and piezoelectric properties... [Pg.239]

Barium titanate crystals rank high among those solids on which electronic research has been focused during the last two decades, because this compound and its derivatives belong to a promising group of ferroelectrics. The properties of single crystals of BaTiOs reveal that the crystals are not uniform they respond to an electrical field as if they have a skin which covers the bulk of the crystal. [Pg.80]

Barium titanate (BaTiOj), a perovskite-type electro-ceramic material, has been extensively studied and utilized due to its dielectric and ferroelectric properties. The wide applications of barium titanates include multiplayer capacitors in electronic circuits, nonlinear resistors, thermal switches, passive memory storage devices, and transducers. In addition, barium titanate can be used for chemical sensors due to its surface sensivity to gas adsorption. [Pg.211]


See other pages where Barium electronic properties is mentioned: [Pg.266]    [Pg.19]    [Pg.332]    [Pg.397]    [Pg.205]    [Pg.80]    [Pg.677]    [Pg.91]    [Pg.504]    [Pg.85]    [Pg.432]    [Pg.500]    [Pg.548]    [Pg.361]    [Pg.45]    [Pg.306]    [Pg.86]    [Pg.291]    [Pg.230]    [Pg.40]    [Pg.391]    [Pg.312]    [Pg.1063]    [Pg.1620]    [Pg.342]    [Pg.548]    [Pg.396]    [Pg.515]    [Pg.131]    [Pg.112]    [Pg.489]    [Pg.322]    [Pg.434]    [Pg.448]    [Pg.749]    [Pg.295]    [Pg.526]   
See also in sourсe #XX -- [ Pg.2 , Pg.3 , Pg.4 , Pg.5 , Pg.6 , Pg.7 , Pg.8 , Pg.9 , Pg.10 ]

See also in sourсe #XX -- [ Pg.661 ]

See also in sourсe #XX -- [ Pg.661 ]




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Barium properties

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