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Comparing sulfidation kinetics of silver nanoparticles in simulated media using direct and indirect measurement methods

机译:比较硫银动力学纳米粒子在模拟使用直接和媒体间接测量方法

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摘要

Reported reaction kinetics of metal nanoparticles in natural and engineered systems commonly have used proxy measurements to infer chemical transformations, but extension of these methods to complex media has proven difficult. Here, we compare the sulfidation rate of AgNPs using two ion selective electrode (ISE)-based methods, which rely on either (i) direct measurement of free sulfide, or (ii) monitor the free Ag+ available in solution over time in the presence of sulfide species. Most experiments were carried out in moderately hard reconstituted water at pH 7 containing fulvic acid or humic acid, which represented a broad set of known interferences in ISE. Distinct differences in the measured rates were observed between the two proxy-based methods and details of the divergent results are discussed. The two ISE based methods were then compared to direct monitoring of AgNP chemical conversion to Ag2S using synchrotron-based in situ X-ray diffraction (XRD). Using XRD, distinct rates from both ISE-based technique were observed, which demonstrated that ISE measurements alone are inadequate to discriminate both the rate and extent of AgNP sulfidation. XRD rate data elucidated previously unidentified reaction regimes that were associated with AgNP coating (PVP and citrate acid) and NOM components, which provided new mechanistic insight into metallic NP processing. In general, the extent of Ag2S formation was inversely proportional to surface coverage of the initial AgNP. Overall, methods to determine reaction kinetics of nanomaterials in increasingly complex media and heterogeneous size distributions to improve NP-based design and performance will require similar approaches.
机译:金属纳米粒子的反应动力学一般在自然和工程系统使用代理来推断化学测量转换,但这些方法的延伸复杂的媒体被证明是困难的。比较硫AgNPs使用两个离子选择性电极(ISE)的方法,依靠(我)直接测量的免费的硫化物,或(ii)监控免费Ag) +随着时间的推移在提供解决方案硫化的物种。在适度硬重组水pH值7包含富啡酸或腐殖酸代表一组广泛的已知的干扰伊势。观察两者之间的基于代理的方法吗和不同结果的细节进行了讨论。相比直接监控AgNP化学转换使用synchrotron-based银2原位x射线衍射(XRD)。利率从ISE-based技术观察,证明了伊势测量本身就不足以区分的速度和程度AgNP硫化作用。率数据阐明未知反应与AgNP政权涂料(PVP和柠檬酸酸),笔名组件,它提供了新的机械了解金属NP处理。银2形成的程度是反向的与表面覆盖的初始成正比AgNP。纳米材料在日益复杂的动力学媒体和异构的大小分布提高NP-based设计和性能需要类似的方法。

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