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Solvothermal Synthesis Combined with Design of Experiments—Optimization Approach for Magnetite Nanocrystal Clusters

机译:溶剂热合成结合实验 - 磁铁矿纳米晶簇的优化方法

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摘要

Magnetite nanocrystal clusters are being investigated for their potential applications in catalysis, magnetic separation, and drug delivery. Controlling their size and size distribution is of paramount importance and often requires tedious trial-and-error experimentation to determine the optimal conditions necessary to synthesize clusters with the desired properties. In this work, magnetite nanocrystal clusters were prepared via a one-pot solvothermal reaction, starting from an available protocol. In order to optimize the experimental factors controlling their synthesis, response surface methodology (RSM) was used. The size of nanocrystal clusters can be varied by changing the amount of stabilizer (tribasic sodium citrate) and the solvent ratio (diethylene glycol/ethylene glycol). Tuning the experimental conditions during the optimization process is often limited to changing one factor at a time, while the experimental design allows for variation of the factors’ levels simultaneously. The efficiency of the design to achieve maximum refinement for the independent variables (stabilizer amount, diethylene glycol/ethylene glycol (DEG/EG) ratio) towards the best conditions for spherical magnetite nanocrystal clusters with desirable size (measured by scanning electron microscopy and dynamic light scattering) and narrow size distribution as responses were proven and tested. The optimization procedure based on the RSM was then used in reverse mode to determine the factors from the knowledge of the response to predict the optimal synthesis conditions required to obtain a good size and size distribution. The RSM model was validated using a plethora of statistical methods. The design can facilitate the optimization procedure by overcoming the trial-and-error process with a systematic model-guided approach.
机译:正在研究磁铁矿纳米晶体簇,以催化在催化作用,磁分离和药物递送中的潜在应用。控制其尺寸和大小分布至关重要,并且通常需要繁琐的试验和错误实验,以确定合成具有所需特性的簇所需的最佳条件。在这项工作中,从可用方案开始,通过单罐溶剂热反应制备磁铁矿纳米晶体簇。为了优化控制其合成的实验因素,使用响应面方法(RSM)。通过改变稳定剂(柠檬酸钠)和溶剂比(二乙二醇/乙二醇)的量,可以改变纳米晶体簇的尺寸。在优化过程中调整实验条件通常限于一次改变一个因素,而实验设计允许同时进行因素的水平。设计效率以实现独立变量(稳定剂量,二甘醇/乙二醇/乙二醇(DEG / EM)比率的最大细化朝向具有所需尺寸的球形磁铁矿纳米晶体簇的最佳条件(通过扫描电子显微镜和动态光测量散射)和窄尺寸分布作为响应被证明并进行了测试。然后以反向模式使用基于RSM的优化过程,以确定来自响应的知识的因素,以预测获得良好尺寸和尺寸分布所需的最佳合成条件。使用过多的统计方法验证RSM模型。该设计可以通过系统模型引导方法克服试验和错误过程来促进优化过程。

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