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首页> 外文期刊>Journal of pharmaceutical sciences. >Application of powder X-ray diffraction in studying the compaction behavior of bulk pharmaceutical powders.
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Application of powder X-ray diffraction in studying the compaction behavior of bulk pharmaceutical powders.

机译:粉末X射线衍射在研究散装药物粉末的压缩行为中的应用。

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This study investigates the effects of crystal lattice deformation on the powder X-ray diffraction (PXRD) patterns of compressed polycrystalline specimen (compacts/tablets) made from molecular, crystalline powders. The displacement of molecules and the corresponding adjustment of interplanar distances (d-spacings) between diffracting planes of PNU-288034 and PNU-177553, which have crystal habits with a high aspect ratio favoring preferred orientation during tableting, are demonstrated by shifts in the diffracted peak positions. The direction of shift in diffracted peak positions suggests a reduction of interplanar d-spacing in the crystals of PNU-288034 and PNU-177553 following compaction. There is also a general reduction of peak intensities following compression at the different compressive loads. The lattice strain representing the reduction in d-spacing is proportional to the original d-spacing of the uncompressed sample suggesting that, as with systems that obey a simple Hooke's law relationship, the further apart the planes of atoms/molecules within the lattice are, the easier it is for them to approach each other under compressive stresses. For a third model compound comprising more equant-shaped crystals of PNU-141659, the shift in diffracted peak positions are consistent with an expansion of lattice spacing after compression. This apparent anomaly is supported by the PXRD studies of the bulk powder consisting of fractured crystals where also, the shift in peak position suggests expansion of the lattice planes. Thus the crystals of PNU-141659 may be fracturing under the compressive loads used to produce the compacts. Additional studies are underway to relate the PXRD observations with the bulk tableting properties of these model compounds.
机译:这项研究调查了晶格变形对分子结晶粉末制成的压缩多晶样品(粉体/片剂)的粉末X射线衍射(PXRD)模式的影响。 PNU-288034和PNU-177553的衍射平面之间的分子位移和晶面间距的相应调整(d间距)具有较高的长晶比,有利于压片时的首选取向,这些晶格习惯具有较高的晶格比,可通过衍射位移来证明高峰位置。衍射峰位置的移动方向表明,压实后PNU-288034和PNU-177553晶体的晶面d间距减小。在不同的压缩载荷下压缩后,峰值强度也普遍降低。代表d间隔减小的晶格应变与未压缩样品的原始d间隔成正比,这表明,与遵循简单胡克定律关系的系统一样,晶格中原子/分子的平面距离越远,它们在压缩应力下越容易彼此接近。对于包含PNU-141659的更多等形晶体的第三模型化合物,衍射峰位置的移动与压缩后晶格间距的扩展一致。 PXRD研究表明,这种明显的异常现象是由散裂的晶体组成的散装粉末所引起的,其中峰值位置的移动也暗示了晶格平面的扩展。因此,PNU-141659的晶体可能在用于生产压坯的压缩载荷下破裂。正在进行其他研究,以将PXRD观察结果与这些模型化合物的整体压片特性相关联。

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