首页> 外文期刊>Journal of Nanoparticle Research >A study on effects of size and structure on hygroscopicity of nanoparticles using a tandem differential mobility analyzer and TEM
【24h】

A study on effects of size and structure on hygroscopicity of nanoparticles using a tandem differential mobility analyzer and TEM

机译:串联差动迁移率分析仪和TEM研究尺寸和结构对纳米颗粒吸湿性的影响

获取原文
获取原文并翻译 | 示例
       

摘要

A hygroscopicity tandem differential mobility analyzer (HTDMA) technique is used to determine size-effect of nanoparticles (NaCl, (NH4)2SO4, KCl, NH4NO3, MgCl2, CaCl2) on their hygroscopic properties (deliquescence relative humidity (DRH) and hygroscopic growth factor (GF)). The HTDMA system uses a combination of two nano DMAs and two regular DMAs to measure particle size change in a wide dynamic particle size range. Particles are subsequently analyzed with a transmission electron microscopy to investigate the potential effect of particle structure or morphology on the hygroscopic properties. We found that structural properties of NaCl and (NH4)2SO4 particles also play an important role in determination of the DRH and GF and are more pronounced at smaller diameters. Data show that the DRH of NaCl nanoparticles increased from ~75% up to ~83% RH at 8 nm and that their GF decreased with decreasing size. The extent to which the GF of NaCl nanoparticles decreased with decreasing size was greater than theoretically predicted with the Kelvin correction. The GF of furnace-generated NaCl nanoparticles that have pores and aggregate shape was found to be smaller than that of atomizer-generated particles that are close to perfectly cubic. For the case of atomizer-generated (NH4)2SO4 nanoparticles, we observed no significant size-effect on their DRH, and the measured GF agreed well with predicted values using the Kelvin correction. For furnace-generated (NH4)2SO4 nanoparticles, a gradual growth at moderate RH without noticeable deliquescence behavior occurred. Their TEM images showed that contrary to atomizer-generated (NH4)2SO4 nanoparticles the furnace-generated (NH4)2SO4 nanoparticles are not perfectly spherical and are often aggregates having pores and holes, which may favor holding residual water even in the dried condition. For atomizer-generated KCl, MgCl2, and CaCl2 nanoparticles, we observed no significant size-effects on their DRH and GF for the mobility size as small as 20 nm.
机译:采用吸湿串联差动迁移率分析仪(HTDMA)确定纳米颗粒(NaCl,(NH4 )2 SO4 ,KCl,NH4 NO3 的尺寸效应) sub>,MgCl2 ,CaCl2 )的吸湿特性(潮解相对湿度(DRH)和吸湿性生长因子(GF))。 HTDMA系统使用两个纳米DMA和两个常规DMA的组合来测量宽动态粒径范围内的粒径变化。随后用透射电子显微镜分析颗粒,以研究颗粒结构或形态对吸湿性的潜在影响。我们发现,NaCl和(NH4 )2 SO4 颗粒的结构性质在DRH和GF的测定中也起着重要作用,并且在较小的直径下更为明显。数据显示,NaCl纳米颗粒的DRH在8 nm下从〜75%RH升高到〜83%RH,并且它们的GF随着尺寸的减小而减小。 NaCl纳米颗粒的GF随尺寸减小而减小的程度大于用Kelvin校正理论上预测的程度。发现具有孔和聚集体形状的熔炉生成的NaCl纳米颗粒的GF小于接近完美立方的雾化器生成的颗粒的GF。对于雾化器生成的(NH4 )2 SO4 纳米颗粒,我们没有观察到对其DRH的大小影响,并且使用开尔文校正法测得的GF与预测值吻合良好。对于熔炉生成的(NH4 )2 SO4 纳米颗粒,在中等RH下逐渐生长而没有明显的潮解行为。他们的TEM图像显示,与雾化器生成的(NH4 )2 SO4 纳米颗粒相反,炉膛生成的(NH4 )2 SO4 纳米颗粒并非完美的球形,通常是带有孔和洞的聚集体,即使在干燥条件下,也可能有助于保持残留水。对于雾化器产生的KCl,MgCl2 和CaCl2 纳米颗粒,我们观察到其迁移率尺寸小至20 nm时,对它们的DRH和GF没有明显的尺寸影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号