Hellweg T, Schemmel S, Rother G, Brûlet A, Eckerlebe H, Findenegg G H
Technische Universität Berlin, Stranski-Laboratorium, Strasse des 17.Juni 112, 10623 Berlin, Germany.
Eur Phys J E Soft Matter. 2003 Nov;12 Suppl 1:S1-4. doi: 10.1140/epjed/e2003-01-001-9. Epub 2003 Nov 5.
The temperature-induced microphase separation of the binary liquid system iso-butyric acid+heavy water (iBA + D(2)O) in a mesoporous silica glass (CPG-10-75) of nominal pore width 7.5 nm was investigated by neutron spin-echo spectroscopy (NSE) and neutron small-angle scattering (SANS). Two mixtures of different composition were studied at different scattering angles at temperatures above and below the bulk phase transition temperature. The phase separation in the pore space is found to occur at a lower temperature than the bulk transition and extends over a significant temperature range. The effective diffusion coefficient derived from NSE at low scattering angles is found to decrease by one order of magnitude from 70 degrees C to 20 degrees C. This observation is attributed to the growing size of concentration fluctuations having a cut-off at ca. 8 nm, which corresponds to the mean pore size. The dynamics of the concentration fluctuations appears to be strongly influenced by the confinement in the pores, as it differs strongly from the bulk behaviour. These results are consistent with the preliminary results of the SANS study.
通过中子自旋回波光谱法(NSE)和中子小角散射(SANS)研究了二元液体体系异丁酸+重水(iBA + D₂O)在标称孔径为7.5 nm的介孔二氧化硅玻璃(CPG - 10 - 75)中的温度诱导微相分离。在高于和低于本体相变温度的不同温度下,对两种不同组成的混合物在不同散射角进行了研究。发现孔隙空间中的相分离发生在比本体转变更低的温度下,并且在相当大的温度范围内延伸。在低散射角下由NSE得出的有效扩散系数从70℃到20℃下降了一个数量级。该观察结果归因于浓度涨落尺寸的增大,其截止尺寸约为8 nm,这与平均孔径相对应。浓度涨落的动力学似乎受到孔隙限制的强烈影响,因为它与本体行为有很大不同。这些结果与SANS研究的初步结果一致。