首页> 外文期刊>Environmental Science and Pollution Research >A density functional theory/time-dependent density functional theory study of the structure-related photochemical properties of hydroxylated polybrominated diphenyl ethers and methoxylated polybrominated diphenyl ethers and metal ion effects
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A density functional theory/time-dependent density functional theory study of the structure-related photochemical properties of hydroxylated polybrominated diphenyl ethers and methoxylated polybrominated diphenyl ethers and metal ion effects

机译:羟基化多苯基醚的结构相关光化学性能和甲氧基化多苯基醚和金属离子效应的密度函数理论/时间依赖性密度泛函理论研究

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摘要

As?the derivatives and structural analogs of polybrominated diphenyl ethers (PBDEs), hydroxylated polybrominated diphenyl ethers (OH-PBDEs) and methoxylated polybrominated diphenyl ethers (MeO-PBDEs) have attracted increasing concern. However, knowledge of the photochemical behaviors of OH-PBDEs and MeO-PBDEs in water is limited. Here, we used density functional theory and time-dependent density functional theory to examine the structure-related photochemical properties of OH-PBDEs and MeO-PBDEs in water and the effects of metal ions as environmental factors. Eight 6-OH-PBDEs with 1–8 bromine substituents and eight 6-MeO-PBDEs with 1–8 bromine substituents were selected for this study. The optimized geometries of the selected congeners and their complexes with metals in the lowest excited triplet state (T1) showed that one C–Br bond moderately or significantly elongated. The elongated C–Br bond in the T1 state was shown in the ortho-position for the 6-OH-PBDE congeners and the ortho-position or the meta-position for the 6-MeO-PBDE congeners. For the selected congeners, there were significant positive linear correlations between the number of bromine atoms (NBr) and the calculated average atomic charge of bromine and maximum electronic absorbance wavelength (λmax), and a negative linear correlation between the NBr and average bond dissociation energy of C–O bonds (BDEC–O). The photoreactivities of the 6-OH-PBDEs and 6-MeO-PBDEs increased with an increase in the bromination degree with or without metal ions. The calculated average atomic charge of bromine and BDEC–O of the complexes with Mg2+/Zn2+ was higher and lower than those of the corresponding monomers, respectively, indicating that the presence of Mg2+/Zn2+ increased the photoreactivity (debromination and dissociation of C–O bond) of the selected 6-OH-PBDEs and 6-MeO-PBDEs. The effects of the coordination of Mg2+/Zn2+ may be overestimated due to their missing explicit solvation shell. These results provide vital insight into the photochemical properties of OH-PBDEs and MeO-PBDEs in water.
机译:为α的衍生物和多溴二苯醚(PBDE类)的结构类似物,羟基化多溴二苯醚(OH-PBDE类)和甲氧基化的多溴二苯醚(的MeO-PBDE类)已经吸引了越来越多的关注。然而,了解水中OH-PBDES和MEO-PBDES的光化学行为的知识有限。在这里,我们使用了密度泛函理论和时间依赖性密度泛函理论,以研究OH-PBDES和MEO-PBDES在水中的结构相关的光化学特性,以及金属离子作为环境因素的影响。选择具有1-8个溴代取代基的八个6-OH-OH-PBDE和具有1-8个溴代取代基的八个6meo-PBDEs用于本研究。所选择的Congeners的优化几何形状及其在最低激发的三态状态(T1)中具有金属的络合物(T1),显示了一个C-Br键,适度或显着伸长。 T1状态中的细长C-Br键在6-OH-PBDE同胞和6-Meo-PBDE同胞链蛋白的邻位或邻位或元定位的邻位。对于所选的Congeners,溴原子数(NBR)和溴和最大电子吸光度波长(λmax)的计算的平均原子电荷之间存在显着的正线性相关性,以及NBR和平均粘合解离能之间的负线性相关性C-O键(BDEC-O)。 6-OH-PBDES和6-MeO-PBDE的光敏性随着溴化度的增加而增加,有或没有金属离子。溴的平均原子电荷分别具有Mg2 + / Zn2 +的复合物的BDEC-O分别比相应单体的溴,表明Mg2 + / Zn2 +的存在增加了光反应性(C-O的脱滴和解离选定的6-OH-PBDES和6-MEO-PBDES的键。由于其缺失的显式溶剂化壳,Mg2 + / Zn2 +的协调的效果可能被估量。这些结果为OH-PBDES和MEO-PBDES在水中的光化学特性提供了重要的洞察力。

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