Key Laboratory of Industrial Ecology and Environmental Engineering, MOE, Dalian University of Technology, Dalian 116024, China.
Chemosphere. 2010 Jul;80(6):660-4. doi: 10.1016/j.chemosphere.2010.04.051. Epub 2010 May 23.
The octanol-air partition coefficient (K(OA)) of 19 hydroxylated polybrominated diphenyl ethers (OH-PBDEs) and 10 methoxylated polybrominated diphenyl ethers (MeO-PBDEs) were measured as a function of temperature using a gas chromatographic retention time technique. At room temperature (298.15K), log K(OA) ranged from 8.30 for monobrominated OH/MeO-PBDEs to 13.29 for hexabrominated OH/MeO-PBDEs. The internal energies of phase change from octanol to air (Delta(OA)U) for 29 OH/MeO-PBDE congeners ranged from 72 to 126 kJ mol(-1). Using partial least-squares (PLS) analysis, a statistically quantitative structure-property relationship (QSPR) model for logK(OA) of OH/MeO-PBDE congeners was developed based on the 16 fundamental quantum chemical descriptors computed by PM3 Hamiltonian, for which the Q(cum)(2) was about 0.937. The molecular weight (Mw) and energy of the lowest unoccupied molecular orbital (E(LUMO)) were found to be main factors governing the log K(OA).
采用气相色谱保留时间技术,研究了 19 种羟基多溴联苯醚(OH-PBDEs)和 10 种甲氧基多溴联苯醚(MeO-PBDEs)在不同温度下的辛醇-空气分配系数(K(OA))。在室温(298.15K)下,单溴代 OH/MeO-PBDEs 的 log K(OA)范围为 8.30,六溴代 OH/MeO-PBDEs 的 log K(OA)范围为 13.29。29 种 OH/MeO-PBDE 同系物从辛醇到空气的相变内能(Delta(OA)U)范围为 72 至 126 kJ mol(-1)。采用偏最小二乘法(PLS)分析,基于 PM3 哈密顿计算的 16 种基本量子化学描述符,建立了 OH/MeO-PBDE 同系物 logK(OA)的统计定量构效关系(QSPR)模型,其中 Q(cum)(2)约为 0.937。结果表明,分子重量(Mw)和最低未占据分子轨道能量(E(LUMO))是影响 log K(OA)的主要因素。