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首页> 外文期刊>International Journal of Pharmaceutics >Isothermal microcalorimetry and inverse phase gas chromatography to study small changes in powder surface properties.
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Isothermal microcalorimetry and inverse phase gas chromatography to study small changes in powder surface properties.

机译:等温微量热法和反相气相色谱法研究粉末表面性质的细微变化。

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摘要

It is known that processing can alter the surface energetics of powders. In this study a sample of drug has been processed by use of different drying techniques. The samples were then assessed using inverse phase gas chromatography. It was seen that the original material had a highest surface energy and the tray-dried sample had the lowest energy surface, other samples were intermediate. The use of isothermal microcalorimetry to study water sorption to the powders revealed that the surface of the original material was unstable, as the water sorption response changed on repeat cycling. The tray-dried sample did have a stable surface which gave the same sorption response on repeat exposure to water vapour. It was concluded that the drug had minor variations in surface energy, with the as received material being in a high energy unstable state, which could be due to it being partially amorphous. The tray-dried sample had a lower energy stable surface. In certain applications differences in surface energetics could be expected to lead to changes in processing nature of the powder, so these vapour sorption techniques offer a good way of providing an assurance of the same surface energy between batches of nay material which may be at risk.
机译:众所周知,加工可以改变粉末的表面能。在这项研究中,通过使用不同的干燥技术对药物样品进行了处理。然后使用反相气相色谱法评估样品。可以看出,原始材料具有最高的表面能,而托盘干燥的样品具有最低的表面能,其他样品处于中间。用等温微量热法研究粉末对水的吸附情况表明,原始材料的表面不稳定,因为水的吸附响应在重复循环中会发生变化。托盘干燥的样品确实具有稳定的表面,当反复暴露于水蒸气时,该表面具有相同的吸附响应。结论是该药物的表面能变化很小,所接受的材料处于高能量不稳定状态,这可能是由于其部分为非晶态。托盘干燥的样品具有较低的能量稳定表面。在某些应用中,可以预期表面能的差异会导致粉末加工性能的变化,因此,这些蒸气吸附技术提供了一种确保在可能有危险的成批材料之间提供相同表面能的良好方法。

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