Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Silver, properties

Note that the size effect does not depend on the nature of the support. This fact tells that the silver properties determine the catalyst activity towards ethylene epoxidation, while the contribution of side reactions involving ethylene oxide and support is not essential. [Pg.921]

Among the many applications of LB films, the creation or arrangement of colloidal particles in these films is a unique one. On one hand, colloidal particles such as 10-nm silver sols stabilized by oleic acid can be spread at the air-water interface and LB deposited to create unique optical and electrooptical properties for devices [185]. [Pg.561]

The preparation of the reflecting silver layers for MBI deserves special attention, since it affects the optical properties of the mirrors. Another important issue is the optical phase change [ ] at the mica/silver interface, which is responsible for a wavelength-dependent shift of all FECOs. The phase change is a fimction of silver layer thickness, T, especially for T < 40 mn [54]. The roughness of the silver layers can also have an effect on the resolution of the distance measurement [59, 60]. [Pg.1735]

Tarazona A, Kreisig S, Koglin E and Schwuger M J 1997 Adsorption properties of two cationic surfactant classes on silver surfaces studied by means of SERS spectroscopy and ab initio calculations Prog. Colloid Polym. Sol. 103 181-92... [Pg.2607]

A pletliora of different SA systems have been reported in tire literature. Examples include organosilanes on hydroxylated surfaces, alkanetliiols on gold, silver, copper and platinum, dialkyl disulphides on gold, alcohols and amines on platinum and carboxyl acids on aluminium oxide and silver. Some examples and references can be found in [123]. More recently also phosphonic and phosphoric esters on aluminium oxides have been reported [124, 125]. Only a small selection out of tliis number of SA systems can be presented here and properties such as kinetics, tliennal, chemical and mechanical stability are briefly presented for alkanetliiols on gold as an example. [Pg.2622]

Taleb A, Petit C and Pileni M P 1998 Optioal properties of self-assembled 2D and 3D superlattioes of silver nanopartioles J. Phys. Chem. B 102 2214... [Pg.2918]

Bromine has a lower electron affinity and electrode potential than chlorine but is still a very reactive element. It combines violently with alkali metals and reacts spontaneously with phosphorus, arsenic and antimony. When heated it reacts with many other elements, including gold, but it does not attack platinum, and silver forms a protective film of silver bromide. Because of the strong oxidising properties, bromine, like fluorine and chlorine, tends to form compounds with the electropositive element in a high oxidation state. [Pg.322]

Hafnium is a ductile metal with a brilliant silver luster. Its properties are considerably influenced by presence of zirconium impurities. Of all the elements, zirconium and hafnium are... [Pg.130]

The element has a metallic, bright silver luster. It is relatively stable in air at room temperature, and is readily attacked and dissolved, with the evolution of hydrogen, but dilute and concentrated mineral acids. The metal is soft enough to be cut with a knife and can be machined without sparking if overheating is avoided. Small amounts of impurities can greatly affect its physical properties. [Pg.191]

Pure holmium has a metallic to bright silver luster. It is relatively soft and malleable, and is stable in dry air at room temperature, but rapidly oxidizes in moist air and at elevated temperatures. The metal has unusual magnetic properties. Few uses have yet been found for the element. The element, as with other rare earths, seems to have a low acute toxic rating. [Pg.193]

Hydrazinothiazoles form stable complexes with Mn ", Ni. Cd Cu ", Co ", Fe ", and Fe " this property was used to detect small amounts of these salts in mixtures by paper chromatography (547, 548). Some infrared features of the complexes formed with the silver salts and with the mercuric salts have been reported (1583). [Pg.104]

Sensitizers as well as desensitizers form a reversal oxidoreduction system with silver halides, according to both pH and pAg of the photographic emulsion. But besides the specific influence of the emulsion, the efficiency of a sensitizing dye depends on many other factors such as its adsorption, its spectral absorption, the energetic transfer yield, the dye aggregate to the silver halide, and finally on its desensitizing property in... [Pg.78]

Property Mercury fiihninate Lead azide Silver azide Normal lead styphnate DDNP Tetrazene... [Pg.9]

Properties. Silver difluoride melts at 690°C, bods at 700°C, and has a specific gravity of 4.57. It decomposes in contact with water. Silver difluoride may react violently with organic compounds, quite often after an initial induction period. Provisions must be made to dissipate the heat of the reaction. Small-scale experiments must be mn prior to attempting large-scale reactions. [Pg.235]

The existence of diamagnetic salts of AgF was first reported in 1957 (26), butHttle was known about their properties. In 1988 (27) it was claimed that AgF3 was prepared by a reaction of Ag metal and O2F2 iu CIF. Silver trifluoride [91899-63-7], AgF, has since been prepared (28) from anhydrous HF solutions of AgF 4 salts by addition of BF, PF, or AsF. ... [Pg.235]

Dentistry. Most casting alloys meet the composition and properties criteria of specification no. 5 of the American Dental Association (37) which prescribes four types of alloy systems constituted of gold—silver—copper with addition of platinum, palladium, and 2inc. Composition ranges are specified, as are mechanical properties and minimum fusion temperatures. Wrought alloys for plates also may include the same constituents. Similarly, specification no. 7 prescribes nickel and two types of alloys for dental wires with the same alloy constituents (see Dental materials). [Pg.380]

Salts. Rochelle salt is used in the silvering of mirrors. Its properties of piezoelectricity make it valuable in electric oscillators. Medicinally, it is an ingredient of mild saline cathartic preparations, eg, compound effervescing powder. In food, it can be used as an emulsifying agent in the manufacture of process cheese. [Pg.528]


See other pages where Silver, properties is mentioned: [Pg.513]    [Pg.513]    [Pg.226]    [Pg.256]    [Pg.550]    [Pg.519]    [Pg.2501]    [Pg.2628]    [Pg.13]    [Pg.13]    [Pg.174]    [Pg.425]    [Pg.145]    [Pg.1057]    [Pg.65]    [Pg.114]    [Pg.209]    [Pg.473]    [Pg.167]    [Pg.230]    [Pg.235]    [Pg.207]    [Pg.208]    [Pg.290]    [Pg.291]    [Pg.382]    [Pg.383]    [Pg.384]    [Pg.69]    [Pg.129]   
See also in sourсe #XX -- [ Pg.59 ]

See also in sourсe #XX -- [ Pg.954 , Pg.955 ]

See also in sourсe #XX -- [ Pg.44 ]

See also in sourсe #XX -- [ Pg.764 , Pg.765 , Pg.766 , Pg.767 , Pg.768 , Pg.780 ]

See also in sourсe #XX -- [ Pg.59 ]

See also in sourсe #XX -- [ Pg.399 ]

See also in sourсe #XX -- [ Pg.295 ]

See also in sourсe #XX -- [ Pg.14 , Pg.15 , Pg.17 ]




SEARCH



Luminescence properties silver complexes

Properties silver-glass adhesives

Silver antibacterial property

Silver atomic properties

Silver azide explosive properties

Silver azide properties

Silver chemical properties

Silver chloride optical properties

Silver chloride thermodynamic properties

Silver clusters electronic properties

Silver complexes magnetic properties

Silver compounds acid/base properties

Silver compounds properties

Silver electrical properties

Silver electronic properties

Silver group metals, catalytic properties

Silver high-temperature properties

Silver isotopes and their properties

Silver magnetic properties

Silver mechanical properties

Silver nanoparticles properties

Silver nuclear properties

Silver optical properties

Silver physical properties

Silver stain properties

Silver thermal properties

Silver thermodynamic propertie

Silver thermodynamic properties

Silver thermoelectric properties

Spectroscopic properties, silver

The Properties of Copper, Silver, and Gold

© 2024 chempedia.info