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Quantification of Surface Amorphous Content Using Dispersive Surface Energy: the Concept of Effective Amorphous Surface Area

机译:使用分散表面能量化表面非晶含量:有效非晶表面积的概念

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摘要

We investigate the use of dispersive surface energy in quantifying surface amorphous content, and the concept of effective amorphous surface area is introduced. An equation is introduced employing the linear combination of surface area normalized square root dispersive surface energy terms. This equation is effective in generating calibration curves when crystalline and amorphous references are used. Inverse gas chromatography is used to generate dispersive surface energy values. Two systems are investigated, and in both cases surface energy data collected for physical mixture samples comprised of amorphous and crystalline references fits the predicted response with good accuracy. Surface amorphous content of processed lactose samples is quantified using the calibration curve, and interpreted within the context of effective amorphous surface area. Data for bulk amorphous content is also utilized to generate a thorough picture of how disorder is distributed throughout the particle. An approach to quantifying surface amorphous content using dispersive surface energy is presented. Quantification is achieved by equating results to an effective amorphous surface area based on reference crystalline, and amorphous materials.
机译:我们研究了利用分散表面能量化表面非晶态含量,并介绍了有效非晶态表面积的概念。引入了使用表面积归一化平方根分散表面能项的线性组合的方程。当使用结晶参考物和非晶参考物时,该方程可有效地生成校准曲线。反相气相色谱法用于产生分散表面能值。对两个系统进行了研究,在两种情况下,收集的由非晶态和结晶态参比组成的物理混合物样品的表面能数据都非常符合预测的响应。使用校准曲线定量处理的乳糖样品的表面无定形含量,并在有效无定形表面积的范围内进行解释。大块无定形含量的数据也用于生成无序分布在整个粒子中的方式的详尽图片。提出了一种使用分散表面能定量表面无定形含量的方法。通过将结果等同于基于参考晶体和非晶态材料的有效非晶态表面积,可以实现量化。

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