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Poly /propane

Poly(propanal-co-3-phenylpropanal) (Table VIII) and the copolymers of... [Pg.419]

Biodegradable pol5miers that can be prepared using an enz5mie catalyst are exemplified by poly(propane-l,2-diol sebacate), poly-(butane-l 3-diol-sebacate), poly(butane-2 3-diol sebacate), and poly-(pentane-2,4-diol sebacate). [Pg.109]

It has been observedt that poly(1,1-dimethyl propane) is the product when 3-methylbutene-l is polymerized with AICI3 in ethyl chloride at -130°C. Write structural formulas for the expected repeat units and those observed and propose an explanation. [Pg.413]

Sodium poly(acrylamido-2-methyl-2-propane sulfonic acid)... [Pg.908]

About 35% of total U.S. LPG consumption is as chemical feedstock for petrochemicals and polymer iatermediates. The manufacture of polyethylene, polypropylene, and poly(vinyl chloride) requires huge volumes of ethylene (qv) and propylene which, ia the United States, are produced by thermal cracking/dehydrogenation of propane, butane, and ethane (see Olefin polymers Vinyl polymers). [Pg.187]

An example is poly(bis(p-carboxyphenoxy)propane) (PCPP) which has been prepared as a copolymer with various levels of sebacic anhydride (SA). Injection molded samples of poly (anhydride) / dmg mixtures display 2ero-order kinetics in both polymer erosion and dmg release. Degradation of these polymers simply releases the dicarboxyhc acid monomers (54). Preliminary toxicological evaluations showed that the polymers and degradation products had acceptable biocompatibiUty and did not exhibit cytotoxicity or mutagenicity (55). [Pg.192]

Although poly(trimethylene terephthalate) has been known for many years it was only introduced by Shell in the late 1990s as a consequence of a breakthrough in the synthesis of the monomer 1,3-propane diol which enabled the polymer to be produced at costs suitable for commercialisation. The polymer itself is prepared by melt condensation of the diol with terephthalic acid. [Pg.728]

Figure 5. Poly Plant propane LPG recovery unit. Figure 5. Poly Plant propane LPG recovery unit.
Poly(2,2 -bis(l,4-phenylene)propane terephthalate-co -isophthalate) (polyarylate, PAR)... [Pg.23]

The stability of polyanhydrides composed of the diacids sebacic acid (SA), bis( -carboxyphenoxy)methane (CPM), l,3-bis(g-carboxyphe-noxy)propane (CPP), l,6-bis( -carboxyphenoxy)hexane (CPH), and phenylenedipropionic acid (PDP), in solid state and in organic solutions, was studied over a 1-year period. Aromatic polyanhydrides such as poly(CPM) and poly(CPH) maintained their original molecular weight for at least a year in both solid state and solution (20). [Pg.62]

The most common poly(alkenoic acid) used in polyalkenoate, ionomer or polycarboxylate cements is poly(acrylic acid), PAA. In addition, copolymers of acrylic acid with other alkenoic acids - maleic and itaconic and 3-butene 1,2,3-tricarboxylic acid - may be employed (Crisp Wilson, 1974c, 1977 Crisp et al, 1980). These polyacids are prepared by free-radical polymerization in aqueous solution using ammonium persulphate as the initiator and propan-2-ol (isopropyl alcohol) as the chain transfer agent (Smith, 1969). The concentration of poly(alkenoic add) is kept below 25 % to avoid the danger of explosion. After polymerization the solution is concentrated to 40-50 % for use. [Pg.97]

The identification and quantification of potentially cytotoxic carbonyl compounds (e.g. aldehydes such as pentanal, hexanal, traw-2-octenal and 4-hydroxy-/mAW-2-nonenal, and ketones such as propan- and hexan-2-ones) also serves as a useful marker of the oxidative deterioration of PUFAs in isolated biological samples and chemical model systems. One method developed utilizes HPLC coupled with spectrophotometric detection and involves precolumn derivatization of peroxidized PUFA-derived aldehydes and alternative carbonyl compounds with 2,4-DNPH followed by separation of the resulting chromophoric 2,4-dinitrophenylhydrazones on a reversed-phase column and spectrophotometric detection at a wavelength of378 nm. This method has a relatively high level of sensitivity, and has been successfully applied to the analysis of such products in rat hepatocytes and rat liver microsomal suspensions stimulated with carbon tetrachloride or ADP-iron complexes (Poli etui., 1985). [Pg.16]

Selection of appropriate conditions to modify polymers is facilitated by preliminary studies with well designed model compounds. The work with model systems is critical when studying condensation polymers because the main chain linkages have proved to be remarkably labile under certain conditions. Condensation of 4-chlorophenyl phenyl sulfone with the disodium salt of blsphenol-A yields 2,2-bis[4 -(4"-phenylsulfonylphenoxyl)phenyl] propane, T, an excellent model for the poly(arylene ether sulfone) substrate. Conditions for quantitative bromination, nitration, chloro-methylation, and aminomethylation of the model compound were established. Comparable conditions were employed to modify the corresponding polymers. [Pg.14]

GTP was employed for the synthesis of block copolymers with the first block PDMAEMA and the second PDEAEMA, poly[2-(diisopropylamino)e-thyl methacrylate], PDIPAEMA or poly[2-(N-morpholino)ethyl methacrylate], PM EM A (Scheme 33) [87]. The reactions took place under an inert atmosphere in THF at room temperature with l-methoxy-l-trimethylsiloxy-2-methyl-1-propane, MTS, as the initiator and tetra-n-butyl ammonium bibenzoate, TBABB, as the catalyst. Little or no homopolymer contamination was evidenced by SEC analysis. Copolymers in high yields with controlled molecular weights and narrow molecular weight distributions were obtained in all cases. The micellar properties of these materials were studied in aqueous solutions. [Pg.51]

Campo et al. (1999) synthesized the ortho-isomers of PCPP and PCPH, poly[l,3-bis(o-carboxyphenoxy)propane] (Po-CPP) and poly[l,6-bis( o-carboxyphenoxy)hexane] (Po-CPH), in an attempt to improve the solubility and processability of these two polymers. Solubility was improved... [Pg.179]

Sanders et al. (1999) attempted to lower the melting points of aromatic polyanhydrides by substituting branched alkyl groups in place of the linear alkyls of P(CPP-SA). They synthesized poly[l,2-bis(/ -carboxyphenoxy)-propane-co-sebacic acid] (P(1,2-CPP-SA)), poly[l,3-bis(/ -carboxyphenoxy)-2-methyl propane-co-sebacic anhydride] (P(CPMP-SA)), and poly[l,3-bis (/ -carboxyphenoxy)-2,2-dimethyl propane-co-sebacic anhydride] (P(CPDP SA)), all of which had melting points below 165°C. [Pg.182]

Six novel fluorinated poly(aryl ether)s containing 1,4-naphthalene moieties were synthesized in high yield using 2,2-bis[4-( 1 -naphthoxy)phenyl]hexafluoro-propane (1). Oxidative coupling ofl yielded a polymer with high 7, low moisture absorption, and low dielectric constant that could be cast into flexible films. The low dielectric constant and low moisture absorption of 6FNE may make it useful as a dielectric insulator in microelectronics applications. [Pg.123]

Four poly(ether ketone)s obtained from 2,2-bis[4-(4-fluorobenzoyl)-phenyl]-1,1,1,3,3,3-hexafluoropropane (9) or 2,2-bis[4-(4-fluorobenzoyl)-phenyl]propane (10) with Bisphenol AF (1) or Bisphenol A (4) are all soluble in chloroform, benzene, THF, and aprotic polar solvents such as DMF, DMAc, and NMP.15 Poly(ether ketone) from 9 and 1, which has the highest fluorine content, dissolves easily in ethyl acetate. [Pg.139]

Poly(ketone)s obtained from 2,2-bis(4-carboxyphenyl)-l 1,1,3,3,3-hexa-fluoro-propane 15 with diphenyl compounds dissolve readily in aprotic polar... [Pg.139]

Crystallinity of these hexafluoroisopropylidene-unit-containing poly(ketone)s is low except for poly(sulfide ketone) (13). The water contact angle for the fluorine-containing poly(ketone) films is high, being 98° for poly(ether ketone) (11), from 2,2-bis(4-carboxyphenyl)-l,l, l,3,3,3-hexafluoropropane(15) and 96° for poly(sulfide ketone) (13) from 15, whereas it is 78° for poly(ether ketone) from 2,2-bis(4-carboxy-phenyl)propane (16) and 74° for the poly(sulfide ketone) from 16. This result indicates that the substitution of isopropylidene units of poly-(ketone)s with hexafluoroisopropylidene units has a remarkable effect on the surface properties of poly(ketone) films. [Pg.140]

Mamyama et al.25 have obtained high-molecular-weight poly(benzoxazole)s by the low-temperature solution polycondensation of A,A 0,0 -tetrais(trimethyl-silyl)-substituted 2,2-bis(3-amino-4-hydroxyphenyl)-l,l,l,3,3,3-hexafluoro-propane (25) with aromatic diacids and subsequent thermal cyclodehydration of the resulting poly(o-hydroxy amide)s in vacuo. In this method, aromatic diamines with low nucleophilicity are activated more positively through the conversion to the /V-silylated diamines, and the nucleophilicity of the fluorine-containing bis(o-aminophenol) can be improved by silylation. [Pg.144]

Monomer units for this purpose include adipic acid or isophthalic acid, to substitute for some of the terephthalic acid (Figure 12.13). Similarly, propane or butane diol, or poly(ethylene glycol), can be substituted for the some of the ethylene glycol. [Pg.425]

The first application example is the electro-oxidative polymerization of phenol in the presence of 2,2-bis[3,5-dimethyl-4-hydroxyphenyl]-propane, which is the procedure to obtain terminally hydroxylated poly(phenyleneoxide), i.e. the oligomer contained two hydroxy groups per one molecule. [Pg.182]


See other pages where Poly /propane is mentioned: [Pg.158]    [Pg.419]    [Pg.45]    [Pg.158]    [Pg.419]    [Pg.45]    [Pg.350]    [Pg.426]    [Pg.294]    [Pg.101]    [Pg.191]    [Pg.229]    [Pg.4]    [Pg.108]    [Pg.1407]    [Pg.1730]    [Pg.184]    [Pg.174]    [Pg.180]    [Pg.77]    [Pg.128]    [Pg.131]    [Pg.243]    [Pg.192]    [Pg.12]    [Pg.541]   
See also in sourсe #XX -- [ Pg.62 ]




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Poly (2-acrylamido-2-methyl-1 -propane

Poly propane polymer

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Poly(2,2 -/u .s -4,4 -oxyphenyl propane equilibrium melting temperature

Poly(2,2 -/u .s -4,4 -oxyphenyl propane maximum overall crystallization

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Poly(4,4-dioxydiphenyl-2,2-propane

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