纳米颗粒csh2po4的电喷雾合成及原位施胶

IF 2.8 4区 环境科学与生态学 Q2 ENGINEERING, CHEMICAL
Áron Varga, Andrew J. Downard, Vanessa Evoen, Konstantinos P. Giapis, Richard C. Flagan, Sossina M. Haile
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引用次数: 0

摘要

摘要采用电喷雾合成方法制备了固体酸电解质材料CsH2PO4的纳米颗粒。利用差分迁移率分析仪提供实时粒径信息,评估电喷雾参数的作用,如前驱体溶液组成、表面张力和电导率、鞘层气温度和流速以及溶液流速。将所得结果与采用已建立的标度定律计算的粒径进行了比较。与预测的初始液滴尺寸相比,检测到的颗粒尺寸要小得多,这表明液滴在沉积过程中发生了裂变。飞行中的裂变事件也可以解释观测到的违反直觉的结果,即气溶胶粒径随着溶剂浓度的增加而减小。该系统提供的原位反馈能够快速识别溶液和工艺参数,结果平均粒径为~ 15 nm,大大小于任何先前的结果。免责声明作为对作者和研究人员的服务,我们提供了这个版本的已接受的手稿(AM)。在最终出版版本记录(VoR)之前,将对该手稿进行编辑、排版和审查。在制作和印前,可能会发现可能影响内容的错误,所有适用于期刊的法律免责声明也与这些版本有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrospray synthesis and in-situ sizing of nanoparticulate CsH 2 PO 4
ABSTRACTNanometer-sized particles of the solid acid electrolyte material CsH2PO4 have been prepared by electrospray synthesis. Using a differential mobility analyzer to provide real-time particle-size information, the role of electrospray parameters, such as precursor solution composition, surface tension, and conductivity, sheath gas temperature and flow rate, and solution flow rate, were evaluated. The results are compared with particle sizes calculated using well-established scaling laws. The much smaller sizes of the detected particles in comparison to the sizes expected from the predicted initial droplet sizes suggests that droplets undergo fission along the path towards deposition. In flight fission events may also explain the observed counterintuitive result that aerosol particle size decreases with increasing solvent concentration. The in situ feedback provided by this system enabled rapid identification of solution and process parameters that result in mean particle sizes of ∼ 15 nm, substantially smaller than any prior results.DisclaimerAs a service to authors and researchers we are providing this version of an accepted manuscript (AM). Copyediting, typesetting, and review of the resulting proofs will be undertaken on this manuscript before final publication of the Version of Record (VoR). During production and pre-press, errors may be discovered which could affect the content, and all legal disclaimers that apply to the journal relate to these versions also.
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来源期刊
Aerosol Science and Technology
Aerosol Science and Technology 环境科学-工程:化工
CiteScore
8.40
自引率
7.70%
发文量
73
审稿时长
3 months
期刊介绍: Aerosol Science and Technology publishes theoretical, numerical and experimental investigations papers that advance knowledge of aerosols and facilitate its application. Articles on either basic or applied work are suitable. Examples of topics include instrumentation for the measurement of aerosol physical, optical, chemical and biological properties; aerosol dynamics and transport phenomena; numerical modeling; charging; nucleation; nanoparticles and nanotechnology; lung deposition and health effects; filtration; and aerosol generation. Consistent with the criteria given above, papers that deal with the atmosphere, climate change, indoor and workplace environments, homeland security, pharmaceutical aerosols, combustion sources, aerosol synthesis reactors, and contamination control in semiconductor manufacturing will be considered. AST normally does not consider papers that describe routine measurements or models for aerosol air quality assessment.
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