Civil and Environmental Engineering Department, Jackson State University, 1400 J.R. Lynch Street, Jackson, MS 39217, USA.
Chemosphere. 2012 Oct;89(7):900-6. doi: 10.1016/j.chemosphere.2012.05.017. Epub 2012 Jun 6.
The paper reports unforeseen results of increased toxicity of water, subsequent to interactions between CdSe/ZnS quantum dots (QDs), phenol and toluene under UV irradiation. The consistent pattern of changes in measured toxicity (TU) was observed and correlated with degradation of phenol and/or toluene. Spearman rank coefficients (SRCs) for data pairs sum-parameters vs. TU were calculated. The highest correlation between toxicity and degradation by-products was observed for hydroquinone (0.86) and catechol (0.89). The presence of QDs in tested concentration range in the absence of UV has shown low toxicity and no interactions with phenol and/or toluene. The leak of constituent core and shell metal ions was observed. The minor differences in physical characteristics of tested QDs of the same chemical composition led to rather different degradation patterns of phenol and toluene, and the amount of leak of the metal ions as well.
该论文报告了在紫外辐射下,CdSe/ZnS 量子点(QDs)、苯酚和甲苯之间相互作用后,水的毒性增加的意外结果。观察到测量毒性(TU)的变化呈现一致的模式,并与苯酚和/或甲苯的降解相关。计算了总和参数与 TU 的 Spearman 秩系数(SRC)。在毒性和降解副产物之间观察到最高相关性的是对苯二酚(0.86)和邻苯二酚(0.89)。在没有紫外光的情况下,测试浓度范围内的 QDs 的存在表现出低毒性,并且与苯酚和/或甲苯没有相互作用。观察到组成核和壳金属离子的泄漏。具有相同化学成分的测试 QDs 的物理特性的微小差异导致了苯酚和甲苯的相当不同的降解模式,以及金属离子的泄漏量也不同。