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首页> 外文期刊>Macromolecules >Poly(dichlorophosphazene) As a Precursor for Biologically Active Polyphosphazenes: Synthesis,Characterization,and Stabilization
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Poly(dichlorophosphazene) As a Precursor for Biologically Active Polyphosphazenes: Synthesis,Characterization,and Stabilization

机译:聚二氯磷腈作为生物活性聚磷腈的前体:合成,表征和稳定化

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摘要

Water-soluble polyphosphazenes emerge as an important class of biologically active macromolecular compounds dictating the need for the development of their well-defined and controlled synthesis.The synthetic pathway leading to biologically active polyphosphazenes involves preparation and chemical transformation of inorganic macromolecular precursor-poly(dichlorophosphazene),PDCP.Synthesis,stabilization,and characterization of this hydrolytically sensitive,reactive intermediate are the focus of the present study.Ring-opening polymerization reaction leading to PDCP has been investigated under strictly controlled conditions by NMR,viscometry,and direct multiangle laser light scattering-GPC methods.A substantial dependence of the molecular weight on degree of conversion and the formation of branched polymer structures have been observed even at early stages of the polymerization process.A new approach has been suggested for the stabilization of PDCP solutions involving the use of diethylene glycol dimethyl ether (diglyme).This stabilization technique allows highly reliable direct analysis of PDCP using chromatographic methods and greatly simplifies PDCP conversion in the organo-substituted polymer.
机译:水溶性聚磷腈是一类重要的具有生物活性的大分子化合物,需要开发定义明确和受控的合成方法。导致生物活性的聚磷腈的合成途径涉及无机大分子前体聚二氯磷腈的制备和化学转化。 ),PDCP。该水解敏感的反应性中间体的合成,稳定化和表征是本研究的重点。已通过NMR,比色法和直接多角度激光在严格控制的条件下研究了导致PDCP的开环聚合反应。散射-GPC方法即使在聚合过程的早期,也观察到分子量对转化率和支化聚合物结构的形成有很大的依赖性。已提出了一种新的方法来稳定PDCP溶液,包括使用二烯乙二醇二甲醚(二甘醇二甲醚)。这种稳定化技术允许使用色谱方法对PDCP进行高度可靠的直接分析,并大大简化了有机取代聚合物中PDCP的转化。

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