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The application of dielectric analysis and thermally stimulated current analysis to polymer coating solutions, films and coated substrates.

机译:介电分析和热激电流分析在聚合物涂层溶液,薄膜和涂层基材上的应用。

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摘要

Dielectric analysis was capable of distinguishing differences in the film formation mechanism of hydroxypropyl methylcellulose solutions and the various commercial ethyl cellulose colloidal dispersions. Although secondary transitions were observed with free films, the glass transition temperature was not detected due to electrode polarization.;Experimental parameters were developed for thermally stimulated current analysis which allowed the detection of primary and secondary transitions, interactions and incompatibilities of plasticized cellulosic free films. Teflon tape was used as an insulating material which prevented the injection of charges into the sample.;The method was also capable of detecting different transitions in uncoated and coated pellets. Curing the coated pellets resulted in lower depolarization current peaks at about the same temperature due to an increase in film density and decrease in dipolar activity. The effect of different curing temperatures on the film was also characterized. Distinct differences were observed in tablets of excipients with different amorphous contents. The glass transition of coated tablets could be observed for some systems but the detection was limited by the surface area to volume ratio.;Thermal windowing experiments differentiated individual modes of relaxation from global transitions. A single transition found in the Surelease free film was the result of the plasticizer present, bound water and the glass transition of the free film. Differences were observed in uncured and cured coated pellet film structure when the relaxation map data was converted to dielectric loss data indicating a film of greater density and lower dipolar activity.;The use of entropy and enthalpy of relaxation and compensation search methods for analyzing the relaxation maps did not correlate well with the thermally stimulated current or dielectric trans formation data. This was due to the complexity of the systems evaluated.
机译:介电分析能够区分羟丙基甲基纤维素溶液和各种商业乙基纤维素胶体分散体在成膜机理上的差异。尽管在自由膜上观察到二次转变,但由于电极极化未检测到玻璃化转变温度。;开发了用于热激电流分析的实验参数,其允许检测增塑的纤维素自由膜的一次和二次转变,相互作用和不相容性。铁氟龙胶带用作绝缘材料,可防止电荷注入样品中;该方法还能够检测未包被和包被的药丸中的不同转变。由于膜密度的增加和偶极活性的降低,固化涂覆的粒料在大约相同的温度下导致较低的去极化电流峰。还表征了不同固化温度对薄膜的影响。在具有不同无定形含量的赋形剂片剂中观察到明显差异。在某些系统中可以观察到包衣片剂的玻璃化转变,但检测受到表面积与体积比的限制。;热窗实验将弛豫的各个模式与总体转变区分开来。 Surelease游离薄膜中发现的单个转变是存在的增塑剂,结合水和游离薄膜的玻璃化转变的结果。当将弛豫图数据转换为介电损耗数据时,未固化和固化的包衣颗粒膜结构存在差异,表明薄膜具有更高的密度和更低的偶极活性。弛豫的熵和焓以及补偿搜索方法用于分析弛豫这些图与热激发电流或介电转换数据没有很好的相关性。这是由于所评估系统的复杂性。

著录项

  • 作者

    Fiorelli, Kenneth James.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Chemistry Pharmaceutical.;Health Sciences Pharmacy.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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