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Ultrasonic degradation for molecular weight reduction of pharmaceutical cellulose ethers

机译:超声降解以降低药用纤维素醚的分子量

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Several pharmaceutical grade cellulose ethers, hydroxypropyl methyl cellulose (HPMC), hydroxypropyl cellulose (HPC), hydroxyethyl cellulose (HEC) and ethylhydroxyethyl cellulose (EHEC) have been degraded to different molecular weights by exposing either a 1.5 or 4.0wt.% aqueous solution of the polymer to varying periods of ultrasonic radiation over 24 h. The resulting solutions were characterised with respect to molecular weight and molecular weight distribution of the polymer using capillary vis-cometry, size exclusion (SEC) and in the case of HPC, dynamic and static light scattering. Depending upon the ultrasonication time, a range of polymer solutions were produced over a range of molecular weights in a suitable form for further experimental use. In all cases a limiting polymer molecular weight was reached after 24 h of ultrasonic degradation; the limiting polymer molecular weight was dependent upon the nature of the polymer and not the concentration of the polymer solution. From measurements of intrinsic viscosity using capillary viscometry and molecular weight using static light scattering, the Mark-Houwink parameters ofHPC were found to be K=6.25 x 10~(-5) and a = 0.84overthemolecularweight range 139,000-58,000 relative molecular mass.
机译:几种药用级纤维素醚,羟丙基甲基纤维素(HPMC),羟丙基纤维素(HPC),羟乙基纤维素(HEC)和乙基羟乙基纤维素(EHEC)通过暴露于1.5或4.0 wt。%的水溶液中已降解为不同的分子量。使聚合物在24小时内经历不同的超声辐射周期。使用毛细管粘度计,尺寸排阻(SEC)以及HPC情况下的动态和静态光散射,对所得溶液的聚合物分子量和分子量分布进行表征。取决于超声时间,以合适的形式在一定分子量范围内产生了一系列聚合物溶液,用于进一步的实验用途。在所有情况下,超声降解24小时后均达到了极限聚合物分子量。聚合物的极限分子量取决于聚合物的性质,而不取决于聚合物溶液的浓度。通过使用毛细管粘度法测量特性粘度和使用静态光散射测量分子量,发现HPC的Mark-Houwink参数在相对分子量139,000-58,000的分子量范围内为K = 6.25 x 10〜(-5)和a = 0.84。

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