Department of Civil, Architectural and Environmental Engineering , The University of Texas at Austin , Austin , Texas 78712 , United States.
Department of Environment and Global Health , University of Florida , Gainesville , Florida 32610 , United States.
Environ Sci Technol. 2018 Aug 7;52(15):8233-8241. doi: 10.1021/acs.est.7b05826. Epub 2018 Jul 10.
Multiwalled carbon nanotube-titanium dioxide (MWNT-TiO) nanohybrids (NHs), a promising support for electrocatalysts, have a high likelihood of environmental release. Aggregation of these NHs may or may not be captured by the sum of their component behavior, thus necessitating a systematic evaluation. This study probes the "part-whole question" by systematically evaluating the role of TiO loading (C:Ti molar ratios of 1:0.1, 1:0.05 and 1:0.033) on the aggregation behavior of these NHs. Aggregation kinetics of these in-house synthesized (using a sol-gel method) NHs and the components is investigated with time-resolved dynamic light scattering in the presence of mono- and divalent cations and with and without Suwannee River humic acid. A deviation in the aggregation behavior from classical electrokinetic theory has been observed which indicates that the material complexity has a strong influence in the observed behavior; hence other material attributes (e.g., fractal dimension, surface roughness, charge heterogeneity, etc.) should be carefully considered when studying such materials. The sum of the aggregation behavior of the parts may not capture that of the whole (i.e., of the NHs); aggregation depends on the TiO loading and also on the hybridization process and the background aquatic chemistry.
多壁碳纳米管-二氧化钛 (MWNT-TiO) 纳米杂化材料 (NHs) 作为电催化剂的一种有前途的载体,很有可能会被释放到环境中。这些 NHs 的聚集情况可能受到其组成部分行为的总和的影响,因此需要进行系统评估。本研究通过系统评估 TiO 负载(C:Ti 摩尔比为 1:0.1、1:0.05 和 1:0.033)对这些 NHs 聚集行为的影响,探究了“整体与部分”的问题。使用时间分辨动态光散射法,在存在一价和二价阳离子以及苏万尼河腐殖酸的情况下,研究了这些 NHs 及其组成部分的聚集动力学。观察到聚集行为偏离经典电动理论,这表明材料复杂性对观察到的行为有很强的影响;因此,在研究此类材料时,应仔细考虑其他材料属性(例如分形维数、表面粗糙度、电荷异质性等)。部分的聚集行为之和可能无法捕捉整体(即 NHs)的聚集行为;聚集取决于 TiO 负载以及杂化过程和背景水化学。