Priority Research Centre for Particle Processing and Transport, Newcastle Institute for Energy and Resources, The University of Australia, NSW 2308, Australia; School of Environmental & Life Sciences, The University of Newcastle, NSW 2308, Australia.
Graduate School of Energy Science, Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan.
J Colloid Interface Sci. 2019 Jan 15;534:649-654. doi: 10.1016/j.jcis.2018.09.057. Epub 2018 Sep 18.
The solvation characteristics of poly(ethylene oxide) (PEO) in nanostructured protic ionic liquids (PILs) are driven by polymer-solvent interactions in the polar domains of the PIL. This work hypothesises that the nanostructure of a PIL can be altered via halide addition, directly affecting the solvation of PEO.
Small angle neutron scattering (SANS) is used to explore the conformation of 38 kDa PEO dissolved in the PIL propylammonium nitrate (PAN), a mol fraction of 10% propylammonium chloride (PACl) in PAN, and a mole fraction of 10% propylammonium bromide (PABr) in PAN.
Each of these solutions are shown to behave as a good solvent for PEO, as determined by their Flory exponents and Zimm plot analysis. The quality of solvation is reduced by the addition of the halide salt, with the order of solvation as follows: PAN > Br addition > Cl addition. Our experimental observations are consistent with the recently reported solvation structure of PEO in these solutions (Stefanovic et al., 2018). The increased charge density from NO to Br to Cl results in greater net ionic interaction between the ionic charge centres. As PEO interacts with PAN primarily through the ammonium hydrogens of the cation, this increased ionic interaction effectively displaces the PEO, resulting in poorer solvation.
聚环氧乙烷(PEO)在纳米质子离子液体(PIL)中的溶剂化特性是由 PIL 极性域中聚合物-溶剂相互作用驱动的。这项工作假设通过添加卤化物可以改变 PIL 的纳米结构,从而直接影响 PEO 的溶剂化作用。
使用小角中子散射(SANS)来探索 38 kDa PEO 在 PIL 丙基硝酸铵(PAN)中的构象,该溶液中 PEO 的摩尔分数为 10%丙基氯化铵(PACl)和 10%丙基溴化铵(PABr)在 PAN 中的摩尔分数。
这些溶液中的每一种都被证明是 PEO 的良溶剂,这可以通过它们的 Flory 指数和 Zimm 图分析来确定。卤化物盐的添加降低了溶剂化的质量,溶剂化的顺序如下:PAN > Br 加成 > Cl 加成。我们的实验观察结果与最近报道的这些溶液中 PEO 的溶剂化结构一致(Stefanovic 等人,2018 年)。NO 到 Br 到 Cl 的电荷密度增加导致离子电荷中心之间的净离子相互作用更大。由于 PEO 主要通过阳离子的铵氢与 PAN 相互作用,这种增加的离子相互作用有效地取代了 PEO,导致较差的溶剂化作用。