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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Can we predict trends in tribo-charging of pharmaceutical materials from first principles?
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Can we predict trends in tribo-charging of pharmaceutical materials from first principles?

机译:我们可以从第一个原则预测制药材料的摩擦收费趋势吗?

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Tribo-charging can negatively impact safety and efficacy of pharmaceutical products due to particle agglomeration and adherence to surfaces resulting in poor mixing and inaccurate dosing. Prediction of relative charging trends in-silico and from first principles could provide an efficient tool for guiding development during early formulation studies. We experimentally investigate tribo-charging of pharmaceutical compounds and compare the results with energies from electronic-structure-calculations. Calculations were performed applying different levels of theory (semi-empirical and DFT with different functionals) to estimate properties including ionization potentials (IP), and work functions (WF). The calculations are performed for single molecules assuming that, at least, relative properties of the solid phase are reproduced. Our results suggest that, independently of the level of theory, calculated IP values correlate well with experimental tribo-charging trends provided we use the adiabatic IP. By comparison, WF values, calculated by a commonly used approximation, turn out being a poor descriptor for tribo-charging trends. (C) 2019 Elsevier B.V. All rights reserved.
机译:摩擦充电可以对药物产品的安全性和功效产生负面影响,并粘附到表面粘附,导致混合差和不准确的给药。在硅中的相对充电趋势和第一原理的预测可以提供在早期配方研究期间引导发展的有效工具。我们通过实验研究药物化合物的摩擦收费,并将能源与电子结构计算的结果进行比较。进行计算应用不同的理论水平(半实验和DFT,具有不同功能)以估计包括电离电位(IP)和工作功能(WF)的特性。对于单分子进行计算,假设该单分子,至少再现固相的相对性质。我们的研究结果表明,单独的理论水平,计算的IP值与实验性摩擦充电趋势很好地相关,所以我们使用绝热IP。通过比较,通过常用近似计算的WF值,结果是摩擦充电趋势的差的描述符。 (c)2019年Elsevier B.V.保留所有权利。

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