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Polymerization synthesis

The structures of these ylide polymers were determined and confirmed by IR and NMR spectra. These were the first stable sulfonium ylide polymers reported in the literature. They are very important for such industrial uses as ion-exchange resins, polymer supports, peptide synthesis, polymeric reagent, and polyelectrolytes. Also in 1977, Hass and Moreau [60] found that when poly(4-vinylpyridine) was quaternized with bromomalonamide, two polymeric quaternary salts resulted. These polyelectrolyte products were subjected to thermal decyana-tion at 7200°C to give isocyanic acid or its isomer, cyanic acid. The addition of base to the solution of polyelectro-lyte in water gave a yellow polymeric ylide. [Pg.378]

Allcock, H. R., Schmutz, J. L., and Kosydar, K. M., A new route for poly(organophosphazene) synthesis. Polymerization, copolymerization, and ring-ring equiUbration of trifluoroethoxy-and chloro-substituted cyclotriphosphazenes, Macromolecules. [Pg.190]

Preparation of Polymeric Free-Radical Initiators by Anionic Synthesis Polymeric Azo Derivatives... [Pg.477]

Asymmetric synthesis polymerization is the reaction that produces the polymers with configurational chirality of the main chain from an optically inactive, prochiral monomer or a prochiral... [Pg.757]

Chiral solid matrices are used for asymmetric synthesis polymerization of 1,3-dienes (inclusion polymerization), although the matrix reaction is not exactly a catalytic synthesis [40,41]. (R)-trans-anti-trans-anti-trans-Perhydrotriphenylene (13) [42,43], deoxyapocholic acid (14) [44,45], and apocholic acid (15) [46,47] are known as effective matrices for the... [Pg.763]

There is an interesting theoretical report concluding that the polymerization giving an atactic polymer can be asymmetric synthesis polymerization without using chiral catalysts [95]. According to the report, when DP of an atactic polymer exceeds 70, the polymer sample cannot be a racemic mixture because the number of possible diastereomers is far larger than that of polymer chains and only one antipode of enantiomer can exist for some of the diastereomeric chains. However, the polymer sample does not show optical activity due to compensation of optical rotations contributed from different diastereomers (cryptochirality). [Pg.768]

The enzymatic step of the synthesis - polymerization of trisaccharide units of XXI - was performed by treatment of XXI with a cell envelope preparation containing the O-antigen polymerase from S. anatum (group... [Pg.76]

Arnold, T.M., In situ rates of phlorotannin synthesis, polymerization, and turnover in marine brown algae an evaluation of terrestrial-derived ecological theories in the marine environment, Ph.D. thesis, University of Delaware, Newark, Delaware, 1998. [Pg.408]

The most self-evident method for formation of a stereoregular polymer is the polymerization of enantiomerically pure monomers with structural properties supporting the assembly of a confor-mationally uniform and stable secondary structure. Alternatives such as asymmetric polymerization generating stereogenic centers ( asymmetric synthesis polymerization ) or P- or M-he-... [Pg.332]

H. R. Kricheldorf, a-Aminoacid-N-carboxyanhydrides and Related Heterocycles Synthesis, Properties, Peptide Synthesis, Polymerization. Springer-Verlag, Berlin, 1987. [Pg.101]

Kricheldorf, H., a-Aminoacid-N-Carboxy-anhydrides and Related Heterocycles - Synthesis Properties, Peptide Synthesis, Polymerization, Springer Berlin, (1987) p 3. Leuchs, H. Geiger, W., Ber. Dtsch. Chem. Ges, (1908) 41, 1721. [Pg.515]

Use Organic synthesis, polymerization solvent, polymer linking agent. [Pg.196]

Staudinger, Hermann (1881-1965). Fundamental research on high-polymer structure, catalytic synthesis, polymerization mechanisms, resulting eventually in development of stereospecific catalysts by Ziegler and Natta (stereoregular polymers). Nobel Prize 1963. [Pg.1365]

The three main steps of membrane preparation are monomer synthesis, polymerization and membrane fabrication. [Pg.383]

In the near future we propose to carry out the investigation on following directions, connecting with monomers synthesis, polymerization, modification, and revealing the possibilities of prepared systems use. [Pg.364]

Macromolecules publishes original research on all fundamental aspects of mac-romolecular science, including synthesis polymerization mechanisms and kinetics and chemical modification, solution/mclt/solid-state characteristics, and surface properties of organic, inorganic, and naturally occurring polymers. Manuscripts that present innovative concepts, experimental methods or observations, and theoretical approaches in fundamental poly-... [Pg.208]

II. SULFONIC-GROUP-CONTAINING MONOMERS SYNTHESIS, POLYMERIZATION... [Pg.880]


See other pages where Polymerization synthesis is mentioned: [Pg.136]    [Pg.8]    [Pg.138]    [Pg.108]    [Pg.634]    [Pg.91]    [Pg.8]    [Pg.163]    [Pg.757]    [Pg.757]    [Pg.761]    [Pg.761]    [Pg.763]    [Pg.764]    [Pg.765]    [Pg.766]    [Pg.767]    [Pg.150]    [Pg.296]    [Pg.540]    [Pg.262]    [Pg.652]    [Pg.1274]    [Pg.438]    [Pg.652]    [Pg.89]    [Pg.9]    [Pg.314]    [Pg.1533]    [Pg.233]    [Pg.160]    [Pg.161]   
See also in sourсe #XX -- [ Pg.113 ]

See also in sourсe #XX -- [ Pg.113 ]

See also in sourсe #XX -- [ Pg.113 ]

See also in sourсe #XX -- [ Pg.38 , Pg.151 , Pg.199 ]




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Anionic polymerization block copolymer synthesis

Anionic polymerization star-branch polymer synthesis

Anionic polymerization synthesis

Anionic polymerization synthesis capabilities

Atom transfer radical polymerization synthesis

Atom-transfer radical polymerization methacrylate) synthesis

Block copolymers, polymeric surfactants synthesis

Block sequences radical polymerization, synthesis

Carbocationic polymerization, synthesis

Carbocationic polymerization, synthesis polymerizations

Chain Polymerizations Synthesis of Fluoropolymers

Chemical polymerization polyaniline synthesis

Chemical polymerization polythiophene synthesis

Chemical synthesis polymerizations

Chemical synthesis, polymers polymerization mechanisms

Chemoenzymatic synthesis enzymatic polymerizations

Chemoenzymatic synthesis polymerization

Condensation polymerization synthesis

Coordination polymerization, synthesis

Core-first star synthesis polymerization

Elastomer synthesis controlled radical polymerization

Elastomer synthesis emulsion polymerization

Elastomer synthesis polymerization

Elastomer synthesis polymerization reactions

Emulsion polymerization polymer synthesis

Enzymatic polymerization synthesis

Enzyme-catalyzed polymerization polyaniline synthesis

Free radical polymerization, synthesis

Free radical polymerization, synthesis functional polymers

Free radical ring-opening polymerization, synthesis

Graft copolymer synthesis polymerization

Graft copolymer synthesis redox polymerization

Graft copolymer synthesis with living radical polymerization

Graft copolymers, polymeric surfactants synthesis

Hyperbranched Polymeric Supports in Organic Synthesis

Liquid crystalline polymeric synthesis

Living radical polymerization block copolymer synthesis

Living radical polymerization graft copolymer synthesis

Macromonomer Synthesis Using Anionic Polymerization Methods

Macromonomer Synthesis Using Cationic Polymerization

Macromonomer synthesis, addition anionic polymerization

Mechanistic Aspects of 1,3,5-Trioxane Polymerization Pertinent to Polymer Synthesis

Monomer synthesis polymerization behaviors

Multi-step-growth polymerization synthesis

Organic Synthesis on Polymeric Supports

Organic synthesis on soluble polymeric supports

Organoboron polymer synthesis hydroboration polymerization

Peptide Synthesis Combined with Polymerization

Peptide synthesis on polymeric supports

Peptide synthesis polymeric transfer reagents

Peptide synthesis soluble polymeric reagents

Peptide synthesis, polymerization

Peptide synthesis, polymerization solid phase

Peroxides, polymeric synthesis procedure

Phthalocyanines, polymeric, synthesis

Poly polymerization mechanism, synthesis

Polyanilines, synthesis chemical polymerization

Polyanilines, synthesis electrochemical polymerization

Polyanilines, synthesis emulsion polymerization

Polyanilines, synthesis enzyme-catalyzed polymerization

Polyester synthesis polymerization

Polymer Synthesis by Cationic Polymerization

Polymer synthesis chemical polymerization

Polymer synthesis electrochemical polymerization

Polymer synthesis metathesis polymerization

Polymer synthesis photochemical polymerization

Polymer synthesis plasma polymerization

Polymer synthesis ring opening metathesis polymerization

Polymer synthesis ring opening polymerization

Polymer synthesis, frontal polymerization

Polymer/inorganic hybrid synthesis polymerization

Polymeric Materials in Organic Synthesis and Catalysis

Polymeric Supports in Organic Synthesis

Polymeric ethers, synthesis with

Polymeric ionic liquid crystals synthesis

Polymeric materials, controlled synthesis

Polymeric phosphonium salts synthesis

Polymeric reagents synthesis

Polymeric surfactants synthesis

Polymeric synthesis

Polymeric synthesis

Polymeric transfer reagents organic synthesis with

Polymerization Suzuki-coupling synthesis

Polymerization dithiocarbamate synthesis

Polymerization kinetics synthesis

Polymerization oligomer synthesis

Polymerization polymer synthesis

Polymerization post-film synthesis

Polymerization processes peptide synthesis

Polymerization, elastomer synthesis catalysts

Polymerization, elastomer synthesis copolymerization

Polymerization, elastomer synthesis mechanism

Precursor synthesis, anionic polymerization

RAFT polymerization agent synthesis

REX Synthesis of PLA-based Materials via Ring-opening Polymerization

Radical polymerization synthesis

Ring-opening metathesis polymerization carbene synthesis

Ring-opening polymerization polycarbonate synthesis

Ring-opening polymerization polyester synthesis

Ring-opening polymerization polyether synthesis

Ring-opening polymerization polysaccharide synthesis

Ring-opening polymerization synthesis

Rubber synthesis polymerization reactions

Salt synthesis polymerized hybrids

Step Polymerizations Synthesis of Biodegradable Polymers

Suspension polymerization Synthesis

Synthesis and Polymerization of Cyclic Polyester Oligomers

Synthesis and Polymerization of Fused Bicyclic Orthoesters

Synthesis and Polymerization of Spiroorthoesters

Synthesis and Polymerization of Vinylphosphonic Acid

Synthesis and polymerization, of anhydro sugar

Synthesis by Ring-Opening Polymerization

Synthesis by radical polymerization

Synthesis cationic polymerization

Synthesis direct polymerization

Synthesis living polymerization

Synthesis of Block Copolymers by Anionic Polymerization

Synthesis of Block Copolymers by Atom Transfer Radical Polymerization, ATRP

Synthesis of Block Copolymers by Cationic Polymerization

Synthesis of Block Copolymers by Controlled Radical Polymerization

Synthesis of Block Copolymers by Group Transfer Polymerization, GTP

Synthesis of Block Copolymers by Nitroxide-Mediated Radical Polymerization, NMP

Synthesis of Block Copolymers by Olefin Metathesis Polymerization

Synthesis of Block Copolymers by Transition Metal-Catalyzed Polymerization

Synthesis of Macromolecules by Chain Growth Polymerization

Synthesis of Macromolecules by Step Growth Polymerization

Synthesis of Polymer Polyols by Using Preformed Aqueous Polymeric Lattices

Synthesis of Silicone Elastomers by Combining Radical Polymerization and Hydrosilation

Synthesis of graphene-based polymeric nanocomposites

Synthesis of polymeric materials

Synthesis of polymeric phosphonium salts

Synthesis peptide polymerization protein

Synthesis plasma polymerization technique

Synthesis stable free radical polymerization

Targets for Synthesis on Polymeric Supports

Template Synthesis of Nanoporous Polymeric Spheres

Templated synthesis, polymeric

Templated synthesis, polymeric nanofibers

Templated synthesis, polymeric porous membranes

Templated synthesis, polymeric template free method

The Synthesis of Linear Polymeric Esters from Cyclic Trimethylene Acetals and Dibasic Carboxylic Acids

Thermoplastic elastomers, synthesis anionic polymerization

Total Synthesis of Lignans and Polymeric Resveratrol by Friedel-Crafts Reactions

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