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Templated polymerization

New templated polymer support materials have been developed for use as re versed-phase packing materials. Pore size and particle size have not usually been precisely controlled by conventional suspension polymerization. A templated polymerization is used to obtain controllable pore size and particle-size distribution. In this technique, hydrophilic monomers and divinylbenzene are formulated and filled into pores in templated silica material, at room temperature. After polymerization, the templated silica material is removed by base hydrolysis. The surface of the polymer may be modified in various ways to obtain the desired functionality. The particles are useful in chromatography, adsorption, and ion exchange and as polymeric supports of catalysts (39,40). [Pg.10]

Further discussion on the effects of the reaction media and Lewis acids on lacticily appears in Section 7.2. Attempts to control laciicily by template polymerization and by enzyme mediated polymerization are described in Section 7.3. Devising effective means for achieving stereochemical control over propagation in radical polymerization remains an important challenge in the field. [Pg.176]

The literature distinguishes two limiting forms of template polymerization.192 ... [Pg.437]

Template polymerizations where the monomer is covalently bound to the template clearly have limitations if polymers of high molecular weight or large quantities arc required. However, their use offers much greater control over... [Pg.438]

Kammerer ei aL1(n m have conducted extensive studies on the template polymerization of acrylate or methacrylate derivatives of polyphenolic oligomers 22 with X n < 5 (Scheme 8.14). Under conditions of low "monomer" and high initiator concentration they found that X n for the daughter polymer was the same as X n for the parent. The possibility of using such templates to control microstructure was considered but not reported. [Pg.439]

A new form of template polymerization based on ring-opening polymerization of 4-methylcncdioxalane has been reported by Endo and coworkers (Scheme 8.15).220,221 For this system, the monomer is covalently bound and the daughter polymer is released from the template as a consequence of the polymerization process. [Pg.440]

Condensed DNA Particle Assembly Using Template Polymerization of Counterions... [Pg.444]

FIG. 3 Condensed DNA particle assembly using template polymerization of cations, (a) Principle of DNA condensation by counterion polymerization on DNA template (b) chemistry of polycation formation (c) e microscopy of condensed DNA particles, bar =100 nm. [(c) was reprinted from Ref. 97, copyright 1998 Oxford University Press.]... [Pg.445]

Our experiments indicated that template DNA remained intact and functionally active after template polymerization. The luciferase-encoded plasmid pCl Luc recovered from the reduced complexes after dialysis was able to express luciferase at levels comparable to pClLuc that had not undergone template polymerization but was also reduced and dialyzed. [Pg.446]

A polymer prepared in the presence of a secondary force often possesses a structure different from that obtained in solution. Template polymerization is a typical example. Micelles and polymer micelles are formed under conditions of thermodynamic equilibrium, so that the structure of these aggregates are always quite fluid. If the aggregate structure is immobilized by polymerization, they will provide better models of enzymes. [Pg.444]

Template polymerization (Sec. 3-10d-2) also involves self-assembly. [Pg.299]

Uezu K, Nakamura H, Kanno J, Sugo T, Goto M, Nakashio F. Metal ion-imprinted polymer prepared by the combination of surface template polymerization with postirradiation hy gamma-rays. Macromolecules 1997 30 3888-3891. [Pg.428]


See other pages where Templated polymerization is mentioned: [Pg.10]    [Pg.10]    [Pg.194]    [Pg.437]    [Pg.437]    [Pg.437]    [Pg.438]    [Pg.441]    [Pg.591]    [Pg.591]    [Pg.592]    [Pg.620]    [Pg.620]    [Pg.621]    [Pg.622]    [Pg.622]    [Pg.635]    [Pg.444]    [Pg.446]    [Pg.447]    [Pg.447]    [Pg.456]    [Pg.24]    [Pg.33]    [Pg.508]    [Pg.287]    [Pg.288]    [Pg.288]    [Pg.289]    [Pg.344]    [Pg.73]    [Pg.1]    [Pg.1]    [Pg.1]   
See also in sourсe #XX -- [ Pg.193 ]




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