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采用调制温度差示扫描量热法对羟丙基甲基纤维素的玻璃化转变进行表征。

Characterisation of the glass transition of HPMC using modulated temperature differential scanning calorimetry.

作者信息

McPhillips H, Craig D Q, Royall P G, Hill V L

机构信息

Centre for Materials Science, School of Pharmacy, University of London, 29-39 Brunswick Square, London, WC1N 1AX, UK.

出版信息

Int J Pharm. 1999 Mar 25;180(1):83-90. doi: 10.1016/s0378-5173(98)00407-4.

Abstract

The glass transitional behaviour of HPMC powder and film samples has been studied using modulated temperature differential scanning calorimetry (MTDSC) in order to explore the ability of the technique to detect transitions which involve small changes in heat capacity. HPMC E4M Prem samples were studied in both powder and film form using a TA Instruments MDSC 2920 using a range of pans, modulation amplitudes and underlying heating rates. Moisture contents were measured using a TA Instruments TGA 2950. Studies on HPMC powder demonstrated the greater clarity with which the glass transition, seen at approximately 162 degrees C, may be seen using MTDSC compared to conventional DSC. The practical difficulties associated with casting suitable HPMC films are discussed, with similar results for Tg being found for hermetically sealed pans and pin-holed pans. Increasing the modulation amplitude from 0.212 to 0.5 degrees C improved the signal to noise ratio and increased the magnitude of the measured Tg. Increasing the underlying heating rate from 2 to 5 degrees C/min also improved the signal. The study has outlined several features which need to be considered in association with the measurement of HPMC glass transitions using MTDSC; these include the method of sample preparation, the choice of pans, the modulation amplitude and the underlying heating rate.

摘要

为了探究调制温度差示扫描量热法(MTDSC)检测涉及热容微小变化的转变的能力,对羟丙基甲基纤维素(HPMC)粉末和薄膜样品的玻璃化转变行为进行了研究。使用TA仪器公司的MDSC 2920,采用一系列样品盘、调制幅度和基础加热速率,对HPMC E4M Prem样品的粉末和薄膜形式进行了研究。使用TA仪器公司的TGA 2950测量水分含量。对HPMC粉末的研究表明,与传统DSC相比,使用MTDSC可以更清晰地观察到在约162℃出现的玻璃化转变。讨论了浇铸合适的HPMC薄膜所涉及的实际困难,发现密封样品盘和有针孔的样品盘的玻璃化转变温度(Tg)结果相似。将调制幅度从0.212℃增加到0.5℃可提高信噪比并增加测量的Tg值。将基础加热速率从2℃/min增加到5℃/min也可改善信号。该研究概述了使用MTDSC测量HPMC玻璃化转变时需要考虑的几个特征;这些特征包括样品制备方法、样品盘的选择、调制幅度和基础加热速率。

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