Tan Xiangyin, Gerbelli Barbara Bianca, Fantini Márcia Carvalho de Abreu, Oliveira Cristiano Luis Pinto, Bordallo Heloísa Nunes, Oseliero Filho Pedro Leonidas
Niels Bohr Institute, Copenhagen University, Denmark.
Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, São Paulo, SP, Brazil.
J Appl Crystallogr. 2023 Sep 1;56(Pt 5):1381-1391. doi: 10.1107/S160057672300691X. eCollection 2023 Oct 1.
A Monte Carlo (MC) method was introduced into a state-of-the-art model used to analyse small-angle X-ray scattering (SAXS) data of SBA-15, an ordered mesoporous material with many applications. With this new procedure, referred to herein as the SBA-15+MC model, it is possible to retrieve the size distribution of the mesopores, (), in a free modelling approach. To achieve this, two main points were addressed: (i) based on previous implementations, the method was adapted to work with long core-shell cylinders; (ii) since the MC model requires longer processing times, strategies to speed up the calculations were developed, which included a simplified version of the original model used to analyse SAXS data of SBA-15 (referred to as the SBA-15 model) as well as the determination of several structural features from the SAXS curve prior to the fit. The new model was validated with simulated data and later used to fit experimental SAXS curves of SBA-15. The obtained results show that the SBA-15 model only works well because the mesopore size distribution of SBA-15 is narrow, whereas the new approach can be successfully used in cases where () is wider and/or has a more complex profile, such as SBA-15 with expanded mesopores. Even though a specific SAXS example was chosen to prove the model, the strategies presented herein are general and suitable for inclusion in other models aimed at the analysis of SBA-15 and similar ordered mesoporous materials.
蒙特卡罗(MC)方法被引入到一个用于分析SBA - 15小角X射线散射(SAXS)数据的先进模型中,SBA - 15是一种具有多种应用的有序介孔材料。通过这种新方法(本文称为SBA - 15 + MC模型),可以在自由建模方法中检索介孔的尺寸分布()。为了实现这一点,解决了两个主要问题:(i)基于先前的实现方式,该方法被调整为适用于长核壳圆柱体;(ii)由于MC模型需要更长的处理时间,因此开发了加速计算的策略,其中包括用于分析SBA - 15的SAXS数据的原始模型的简化版本(称为SBA - 15模型)以及在拟合之前从SAXS曲线确定几个结构特征。新模型通过模拟数据进行了验证,随后用于拟合SBA - 15的实验SAXS曲线。所得结果表明,SBA - 15模型仅在SBA - 15的介孔尺寸分布较窄时效果良好,而新方法可以成功应用于()更宽和/或具有更复杂轮廓的情况,例如具有扩大介孔的SBA - 15。尽管选择了一个特定的SAXS示例来证明该模型,但本文提出的策略是通用的,适用于纳入其他旨在分析SBA - 15和类似有序介孔材料的模型。