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首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Effects of fluoro substitution on 4-bromodiphenyl ether (PBDE 3)
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Effects of fluoro substitution on 4-bromodiphenyl ether (PBDE 3)

机译:氟取代对4-溴二苯醚(PBDE 3)的影响

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It is our hypothesis that fluoro substitution provides a powerful tool to modulate the desired characteristics and to increase the specificity of studies of structure-activity relationships. 4-Bromodiphenyl ether (PBDE 3) and its five corresponding monofluorinated analogues (F-PBDEs 3) have been synthesized and fully characterized (using H-1, C-13 and F-19 NMR spectroscopy, and mass spectrometry). The accurate structure from X-ray crystal analysis was compared with iterative calculations using semi-empirical self-consistent field molecular-orbital (SCF-MO) models. The compounds studied were 4-bromodiphenyl ether (PBDE 3), the C-13(6)-isotopically labeled PBDE 3 (C-13(6)-PBDE 3) and 2-fluoro-4-bromodiphenyl ether (3-2F), 2'-fluoro-4-bromodiphenyl ether (3-2'F),3-fluoro-4-bromodiphenyl ether (3-3F), 3'-fluoro-4-bromodiphenyl ether (3-3'F), and 4'-fluoro-4-bromodiphenyl ether (3-4'F). Solid-state intermolecular interactions for PBDE 3 and the F-PBDEs 3 isomers are dominated by weak C H( F,Br)center dot center dot center dot pi and C-H center dot center dot center dot F interactions. The C-F bond lengths varied between 1.347 (2) and 1.362 (2) angstrom, and the C4-Br bond length between 1.880 (3) and 1.904 (2) angstrom. These bond lengths are correlated with electron-density differences, as determined by 13 C shifts, but not with the strength of the C-F couplings. The interior ring angles of ipso-fluoro substitution increased (121.9-124.0 degrees) as a result of hyperconjugation, a phenomenon also predicted by the calculation models. An attraction between the vicinal fluoro and halo substituents (observed in fluoro substituted chlorobiphenyls) was not observed for the bromo substituted F-PBDEs. The influence of a fluoro substituent on the conformation was only observable in PBDEs with di-ortho substitution. Calculated and observed torsion angles showed a positive correlation with increasing van der Waals radii and/or the degree of substitution for mono- to tetra-fluoro, chloro, bromo and methyl substitutions in the ortho positions of diphenyl ether. These findings utilizing F-tagged analogues presented here may prove fundamental to the interpretation of the biological effects and toxicities of these persistent environmental pollutants.
机译:我们的假设是氟取代提供了一种强大的工具,可以调节所需的特征并提高结构-活性关系研究的特异性。已合成4-溴二苯醚(PBDE 3)及其五个相应的单氟化类似物(F-PBDEs 3),并进行了充分表征(使用H-1,C-13和F-19 NMR光谱法和质谱法)。 X射线晶体分析的精确结构与使用半经验自洽场分子轨道(SCF-MO)模型的迭代计算进行了比较。研究的化合物为4-溴二苯醚(PBDE 3),经C-13(6)同位素标记的PBDE 3(C-13(6)-PBDE 3)和2-氟-4-溴二苯醚(3-2F) ,2'-氟-4-溴二苯醚(3-2'F),3-氟-4-溴二苯醚(3-3F),3'-氟-4-溴二苯醚(3-3'F)和4'-氟-4-溴二苯醚(3-4'F)。 PBDE 3和F-PBDEs 3异构体的固态分子间相互作用主要由弱C H(F,Br)中心点中心点中心点pi和C-H中心点中心点中心点F相互作用决定。 C-F键长度在1.347(2)和1.362(2)埃之间变化,C4-Br键长度在1.880(3)和1.904(2)埃之间。这些键长与通过13 C位移确定的电子密度差异相关,但与C-F耦合强度无关。过度共轭导致ipso-氟取代的内环角增加(121.9-124.0度),该现象也由计算模型预测。对于溴取代的F-PBDEs,未观察到相邻的氟取代基和卤素取代基之间的吸引力(在氟取代的氯代联苯中观察到)。氟取代基对构象的影响仅在具有二邻取代的多溴二苯醚中可见。计算和观察到的扭转角与范德华半径的增加和/或在二苯醚邻位的单至四氟,氯,溴和甲基取代的取代度呈正相关。利用此处展示的带有F标签的类似物的这些发现可能证明是解释这些持久性环境污染物的生物学效应和毒性的基础。

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