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A new method for in situ structural investigations of nano-sized amorphous and crystalline materials using mixed-flow reactors

机译:利用混合流反应器对纳米级非晶态和晶体材料进行原位结构研究的新方法

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摘要

Structural investigations of amorphous and nanocrystalline phases forming in solution are historically challenging. Few methods are capable of in situ atomic structural analysis and rigorous control of the system. A mixed-flow reactor (MFR) is used for total X-ray scattering experiments to examine the short- and long-range structure of phases in situ with pair distribution function (PDF) analysis. The adaptable experimental setup enables data collection for a range of different system chemistries, initial supersaturations and residence times. The age of the sample during analysis is controlled by adjusting the flow rate. Faster rates allow for younger samples to be examined, but if flow is too fast not enough data are acquired to average out excess signal noise. Slower flow rates form older samples, but at very slow speeds particles settle and block flow, clogging the system. Proper background collection and subtraction is critical for data optimization. Overall, this MFR method is an ideal scheme for analyzing the in situ structures of phases that form during crystal growth in solution. As a proof of concept, high-resolution total X-ray scattering data of amorphous and crystalline calcium phosphates and amorphous calcium carbonate were collected for PDF analysis.
机译:在溶液中形成的非晶相和纳米晶相的结构研究历来具有挑战性。很少有方法能够进行原位原子结构分析和系统的严格控制。混合流反应器(MFR)用于总X射线散射实验,以通过对分布函数(PDF)分析检查原位相的短程和长程结构。适应性强的实验设置可以收集各种系统化学信息,初始过饱和度和停留时间的数据。通过调整流速来控制分析过程中样品的年龄。更快的速率允许检查较年轻的样本,但是如果流量太快,则无法获取足够的数据来平均掉多余的信号噪声。较慢的流速会形成较旧的样品,但以非常慢的速度,颗粒会沉降并阻塞流动,从而堵塞系统。正确的背景收集和扣除对于数据优化至关重要。总体而言,此MFR方法是分析溶液中晶体生长过程中形成的相的原位结构的理想方案。作为概念的证明,收集了非晶态和晶态磷酸钙以及非晶态碳酸钙的高分辨率总X射线散射数据,用于PDF分析。

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