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Polymers cross-links

Vinyl polymers cross-linked with divinyl monomers, for example, polystyrene polymerized in the presence of divinyl benzene. [Pg.137]

Acid-C t lyzed Chemistry. Acid-catalyzed reactions form the basis for essentially all chemically amplified resist systems for microlithography appHcations (61). These reactions can be generally classified as either cross-linking (photopolymerization) or deprotection reactions. The latter are used to unmask acidic functionality such as phenohc or pendent carboxyhc acid groups, and thus lend themselves to positive tone resist apphcations. Acid-catalyzed polymer cross-linking and photopolymerization reactions, on the other hand, find appHcation in negative tone resist systems. Representative examples of each type of chemistry are Hsted below. [Pg.125]

Fig. 37. Resist images obtained with a cross-linking monocomponent TSI resist (PHOST polymer), cross-linked by photo-oxidation using light at 193-nm wavelength. After exposure, the film was treated with a vapor of dimethyl silyl dimethyl amine and then plasma developed using O2—RIE (122). Fig. 37. Resist images obtained with a cross-linking monocomponent TSI resist (PHOST polymer), cross-linked by photo-oxidation using light at 193-nm wavelength. After exposure, the film was treated with a vapor of dimethyl silyl dimethyl amine and then plasma developed using O2—RIE (122).
The reactions are catalyzed by tertiary amines, quaternary ammonium salts, metal salts, and basic ion-exchange resins. The products are difficult to purify and generally contain low concentrations of acryhc acid and some diester which should be kept to a minimum since its presence leads to product instabihty and to polymer cross-linking. [Pg.156]

Two other important commercial uses of initiators are in polymer cross-linking and polymer degradation. In a cross-linking reaction, atom abstraction, usually a hydrogen abstraction, occurs, followed by termination by coupling of two polymer radicals to form a covalent cross-link ... [Pg.219]

P—H is a polymei with covalently attached hydrogen, L is the initiating radical, and P—P is a cross-linked polymer. Cross-linking is a commercially... [Pg.219]

Measurement of modulus over an extensive temperature range offers more information than T alone (16). Typical modulus—temperature curves are shown in Figure 1. Assuming that the reference temperature is the transition temperature of the copolymer, then curve A of Figure 1 is that of a softer polymer and curve B is that of a harder polymer. Cross-linking of the polymer elevates and extends the mbbery plateau Htde effect on T is noted until extensive cross-linking has been introduced. In practice, cross-linking of methacryhc polymers is used to decrease thermoplasticity and solubihty and to increase residence. [Pg.260]

Organic titanates perform three important functions for a variety of iadustrial appHcations. These are (/) catalysis, especially polyesterification and olefin polymerization (2) polymer cross-linking to enhance performance properties and (J) Surface modification for adhesion, lubricity, or pigment dispersion. [Pg.161]

Liquid crystal polymers Cross-linked Structures Polyblends... [Pg.933]

High-performance size exclusion chromatography is used for the characterization of copolymers, as well as for biopolymers (3). The packings for analyses of water-soluble polymers mainly consist of 5- to 10-/Am particles derived from deactivated silica or hydrophilic polymeric supports. For the investigation of organosoluble polymers, cross-linked polystyrene beads are still the column packing of choice. [Pg.219]

G(scission) = G(S) = Number of polymer chain scissions per 100 eV absorbed. G(cross-linldng) = G(X) = Number of polymer cross-link sites per 100 eV absorbed. [Pg.860]

Polymers and supermolecules modified using electron push-pull chro-mophores are also of particular interest for nonlinear optics (NLO) [10-15]. NLO material has attracted much interest over the past 20 years and has been widely applied in various field (telecommunications, optical data storage, information processing, microfabrication, etc.). Chemists have developed ways to introduce NLO chromophores into many type of polymers, such as Hnear polymers, cross-linked polymers, and branched polymers, and have demonstrated their performance in NLO appHcations. [Pg.206]

For general aspects on sonochemistry the reader is referred to references [174,180], and for cavitation to references [175,186]. Cordemans [187] has briefly reviewed the use of (ultra)sound in the chemical industry. Typical applications include thermally induced polymer cross-linking, dispersion of Ti02 pigments in paints, and stabilisation of emulsions. High power ultrasonic waves allow rapid in situ copolymerisation and compatibilisation of immiscible polymer melt blends. Roberts [170] has reviewed high-intensity ultrasonics, cavitation and relevant parameters (frequency, intensity,... [Pg.76]

Macromolecular Substitution Route. The current surge in poly-phosphazene research Is mainly a result of the development in the mid 1960 s (2-4) of a substitutive route to the synthesis of organo phosphazene high polymers. Before that time, only a sporadic interest in the subject existed because the known polymers, cross linked poly(dihalophosphazenes), (1,5) were insoluble and hydrolytically unstable. [Pg.254]

Nitrile oxide precursors have been prepared by the reaction of an isocyanate and an alkyl nitroacetate. These precursors release alkanol and carbon dioxide when heated, to liberate the highly reactive nitrile oxide species. An improved synthetic procedure has been developed to afford novel cross-linking agents based on difunctional, trifunctional and aliphatic precursors. Application of these agents to polymer cross-linking has been demonstrated (527). [Pg.105]

Polyphosphazene-based PEMs are potentially attractive materials for both hydrogen/air and direct methanol fuel cells because of their reported chemical and thermal stability and due to the ease of chemically attaching various side chains for ion exchange sites and polymer cross-linking onto the — P=N— polymer backbone. Polyphosphazenes were explored originally for use as elastomers and later as solvent-free solid polymer electrolytes in lithium batteries, and subsequently for proton exchange membranes. [Pg.364]


See other pages where Polymers cross-links is mentioned: [Pg.116]    [Pg.133]    [Pg.171]    [Pg.230]    [Pg.28]    [Pg.191]    [Pg.192]    [Pg.425]    [Pg.247]    [Pg.425]    [Pg.352]    [Pg.920]    [Pg.221]    [Pg.740]    [Pg.502]    [Pg.125]    [Pg.52]    [Pg.239]    [Pg.96]    [Pg.168]    [Pg.734]    [Pg.28]    [Pg.412]    [Pg.362]    [Pg.365]    [Pg.57]   
See also in sourсe #XX -- [ Pg.28 , Pg.273 , Pg.319 ]




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Amorphous cross-linked polymer

Antibiotics 445 Cross linked polymers

Biomedical polymers cross-linking, effect

Branched and cross-linked polymers

CROSS-LINKED POLYMERS Subject

Catalysis silicone polymers, cross linking

Cell wall polymer phenolic cross-linking

Chemical applications cross-linked polymer

Chemically cross-linked polymers

Chemically cross-linked polymers hydrogels

Chemically cross-linked polymers liquid crystalline networks

Comb-shaped polymers cross-linking

Complex polymers cross-linking

Composition cross-linked polymers

Condensation polymers cross-linking

Constant rate cross-linked polymers

Copolymers cross-linked polymers

Cross polymer

Cross-Linked Polymers and Swollen Gels

Cross-Linking at High Polymer Content

Cross-linked Polymers and Rubber Elasticity

Cross-linked elastomers, combined polymers

Cross-linked epoxy amine polymers

Cross-linked epoxy amine polymers structure

Cross-linked organic polymer

Cross-linked polymer matrix

Cross-linked polymer membranes

Cross-linked polymer microspheres

Cross-linked polymer mixtures, synthetic

Cross-linked polymer networks

Cross-linked polymer networks insolubility

Cross-linked polymer removal

Cross-linked polymer supports

Cross-linked polymer supports alternatives

Cross-linked polymer swelling

Cross-linked polymer, defined

Cross-linked polymer, flexibility

Cross-linked polymers

Cross-linked polymers 1-8 INDEX

Cross-linked polymers chain entanglement

Cross-linked polymers crystallite networks

Cross-linked polymers electromagnetic susceptibility

Cross-linked polymers equilibrium melting temperature

Cross-linked polymers fibrous proteins

Cross-linked polymers hydrogen bonding

Cross-linked polymers ionically

Cross-linked polymers isomers

Cross-linked polymers microenvironment polarity

Cross-linked polymers nanostructure materials

Cross-linked polymers polarity

Cross-linked polymers secondary relaxation

Cross-linked polymers steric hindrance

Cross-linked polymers temperature

Cross-linked polymers thermal analysis

Cross-linked polymers unsaturation

Cross-linked polymers vulcanized polyisoprene

Cross-linked polymers weighting coefficient

Cross-linked polymers, definition

Cross-linked polymers, effects

Cross-linked polymers, effects yield

Cross-linked polymers, susceptibility

Cross-linked polymers, susceptibility operators

Cross-linked polymers—network LC elastomers

Cross-linked type polymer

Cross-linked, network-type polymers

Cross-linking Reactions of Polymers

Cross-linking conducting polymer solution

Cross-linking dendritic polymers

Cross-linking macromolecular polymers

Cross-linking monomers polymer properties affected

Cross-linking network structure, polymers from

Cross-linking nonlinear optics, polymers

Cross-linking of polymers

Cross-linking of pre-formed polymer

Cross-linking plasma polymers

Cross-linking polymer-modified electrodes

Cross-linking polymers main

Cross-linking polymers resistant

Cross-links solid state polymer reactions

Cross-links, in polymers

Densely cross-linked, glassy polymers

Double mixing cross-linking polymer

Functionalized cross-linked polymers

Fusion of cross-linked polymers

Glass transition cross-linked polymers

Glassy Polymers and the Role of Cross-links

Glycolic acid polymers cross-linking

Graft polymers cross-linking initiators

HIGHLY CROSS-LINKED POLYMERS

High-temperature polymers cross-linked organic

Hydration of Cross-Linked Polymers (e.g., Polystyrene Sulfonate)

Interfacial Thermal Properties of Cross-Linked Polymer-CNT Nanocomposites

Investigation of Cross-Linked Polymer Systems by PL

Irradiation cross-linked linear polymers

Kinetic cross-linked polymers

Linear polymers, cross-linking

Linear polymers, cross-linking extent

Linked polymer

Mediation in Cross-Linked Redox Polymers

Melamine-formaldehyde polymers cross-linking

Methacrylate polymers, cross-linking

Nanofragment cross-linked polymers

Of cross-linked polymers

Optimal cross-linked polymer matrix

Phenol-formaldehyde polymers cross-linking

Photo-Cross-Linking of Polymers

Photochemical cross-linking polymers

Physically cross-linked polymers

Physically cross-linked polymers block copolymers

Physically cross-linked polymers composites

Physically cross-linked polymers thermoplastic polyurethanes

Polybutadiene- cross-linked polymer

Polyesters cross-links, condensation polymer

Polymer , cross-linking classes

Polymer backbone, cross-linking

Polymer chains cross linking

Polymer cross-linked density

Polymer cross-linking

Polymer cross-linking antioxidants effect

Polymer cross-linking conformational

Polymer cross-linking density

Polymer cross-linking negative resists

Polymer cross-linking process

Polymer cross-linking radiation chemistry

Polymer cross-linking thermal stability

Polymer cross-linking triallyl cyanurate

Polymer cross-linking, hydrogen-bonded

Polymer electrolyte membrane covalent cross-linking

Polymer electrolyte membrane cross-linking

Polymer electrolytes cross-linked polymers

Polymer microenvironment cross-linked polymers

Polymer processing cross-link promoters

Polymer ultrathin cross-linked

Polymers Large molecules cross-linking

Polymers cross-linked structure

Polymers cross-linking agents

Polymers cross-linking effects

Polymers degradation cross linking

Polymers photo-cross-linking

Pyrazoline cross-linked polymers

Pyridine containing polymers cross-linked

Rubber elasticity cross-linked polymer network

Rubbery polymers cross-linking

Simultaneous cross-linking and main-chain cleavage of linear polymers

Solvent swelling cross-linked polymer

Star-shaped polymers, cross-linking

Synthetic polymer gels cross-linking agent

Synthetic polymers cross-linked

UV cross-linking of thiolene polymers

Urea-formaldehyde polymers cross-linking

Water-soluble polymers cross-linked

Wittig reactions polymer cross-linking

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