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Aromatic ether linkage

These results imply that highly aromatic ether linkages will be considerably broken at coal liquefaction temperatures resulting in a main source of phenolic groups of the dissolved coal. [Pg.287]

Smith, D. W., Jr. Ji, J. Narayan-Sarathy, S. Neilson, R. H. Babb, D. A. Fluorosilicones Containing the Perfluorocyclobutane Aromatic Ether Linkage. In Silicones and Silicone-Modified Materials-, Clarson, S. J., Fitzgerald, J. J., Owen, M. J., Smith, S. D., Eds. ACS Symposium Series 729 American Chemical Society Washington, DC, 2000 pp 308-321. [Pg.691]

Polysulfones are aromatic high T, amorphous polymers having a sulfone and an aromatic ether linkage in the recurring units of their backbone. Owing to this structure of their polymer backbones, they display unique resistance to hydrolysis. [Pg.1102]

Fluorosilicones Containing the Perfluorocyciobutane Aromatic Ether Linkage... [Pg.308]

Poor light fastness (exterior durability) of BPA type epoxy resins, due to the presence of aromatic ether linkages, limits their outdoor applications. Epoxy resins with improved weathering performance can be obtained by using aliphatic epoxy resins. One of the important epoxy resins in this class is the glycidyl ether of hydrogenated bisphenol A. These resins have lower viscosity, lower reactivity and higher cost compared to BPA epoxy resins. [Pg.98]

One class of aromatic polyethers consists of polymers with only aromatic rings and ether linkages ia the backbone poly(phenylene oxide)s are examples and are the principal emphasis of this article. A second type contains a wide variety of other functional groups ia the backbone, ia addition to the aromatic units and ether linkages. Many of these polymers are covered ia other articles, based on the other fiinctionahty (see Polymers containing sulfur, POLYSULFONES). [Pg.326]

Ultraviolet radiation causes cleavage of the aryl ether linkage (23). DMPPO undergoes oxidation when exposed to ultraviolet light and oxygen by direct attack on the aromatic ring to produce a variety of ring-cleaved and quinoidal stmctures (24). [Pg.328]

Polysulfone Resins. Commercially important polysulfones are aromatic, ie, in the generalized formula for the repeating unit R and R both contain aromatic rings (see Polymers containing sulfur, polysulfone resins). They all possess ether linkages as weU, so that use of the designations polysulfone, polyarylsulfone (PAS), and polyethersulfone (PES) is somewhat arbitrary. [Pg.271]

The true, all-aromatic system (see 18, below) described by Kime and Norymberski is unusual in the sense that all of the ether linkages bridge aromatic carbons ". Synthesis of 18, therefore, required extensive use of copper mediated coupling reactions. As expected for such reactions, yields were generally low. The aromatics such as 18 were ineffective at binding either alkali metal or ammonium cations ". ... [Pg.44]

As shovm above, the attachment of the aromatic ring to the carbon chain bearing the basic nitrogen may be accomplished through an ester or an amide configured in either direction. A simple ether linkage fulfills this function in yet another compound that exhibits local anesthetic activity. Thus, alkylation of the mono potassium salt of hydroquinone with butyl bromide affords the ether (77) alkylation of this with w-C3-chloropropyl)morpholine affords pramoxine (78)... [Pg.18]

In general most of the commercial polymers are not comparable to metals and ceramics in terms of load-bearing property, mechanical strength, and thermal stability. To overcome these difficulties the aromatic ether or sulfide (thioether) linkages in the polymer backbone... [Pg.35]

The aryl C—O—C linkage has a lower rotation barrier, lower excluded volume, and decreased van der Waals interaction forces compared to the C—C bond. Therefore, the backbone containing C—O—C linkage is highly flexible. In addition, the low barrier to rotation about the aromatic ether bond provides a mechanism for energy dispersion which is believed to be the principal reason for the toughness or impact resistance observed for these materials.15 17... [Pg.327]

We have studied the thermal decomposition of diaryl ether in detail, since the cleavage of ether linkage must be one of the most responsible reactions for coal liquefaction among the various types of decomposition reaction and we found that the C-0 bond of polynucleus aromatic ethers is cleaved considerably at coal liquefaction temperature. [Pg.286]

In this work we have demonstrated that a new class of heavily fluorinated acrylic and methacrylic resins can be efficiently synthesized and then cured to solid form with radical initiator at elevated temperatures. These cured resins were found to have low dielectric constants, which are close to the minimum known values for Teflon and Teflon AF. In contrast to tetrafluoroethylene, our monomers are processable owing to the fact that they are liquids or low-melting solids, and moreover are soluble in common organic solvents. Lower dielectric constants are obtained as fluorine contents on the polymer backbone or side chain increase, when acrylate is replaced by methacrylate, when ether linkages are present in the fluorocarbon, and when aromatic structure is symmetrically meta-substituted. [Pg.179]


See other pages where Aromatic ether linkage is mentioned: [Pg.327]    [Pg.670]    [Pg.235]    [Pg.703]    [Pg.289]    [Pg.306]    [Pg.252]    [Pg.32]    [Pg.249]    [Pg.296]    [Pg.308]    [Pg.32]    [Pg.75]    [Pg.229]    [Pg.327]    [Pg.670]    [Pg.235]    [Pg.703]    [Pg.289]    [Pg.306]    [Pg.252]    [Pg.32]    [Pg.249]    [Pg.296]    [Pg.308]    [Pg.32]    [Pg.75]    [Pg.229]    [Pg.331]    [Pg.332]    [Pg.460]    [Pg.463]    [Pg.344]    [Pg.424]    [Pg.1494]    [Pg.297]    [Pg.285]    [Pg.319]    [Pg.186]    [Pg.307]    [Pg.130]    [Pg.726]    [Pg.186]    [Pg.307]   


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Aromatic ethers

Ether linkages

Ethereal linkages

Ethers aromatization

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