Pathreeker Shreyas, Chen Fu-Hao, Biria Saeid, Hosein Ian D
Department of Biomedical & Chemical Engineering, Syracuse University, Syracuse, New York 13244, USA.
Soft Matter. 2020 Aug 21;16(31):7256-7269. doi: 10.1039/d0sm00922a. Epub 2020 Jul 7.
We report observations of photopolymerization driven phase-separation in a mixture of a photo-reactive monomer and inorganic nanoparticles. The mixture is irradiated with visible light possessing a periodic intensity profile that elicits photopolymerization along the depth of the mixture, establishing a competition between photo-crosslinking and thermodynamically favorable phase-separating behavior inherent to the system. In situ Raman spectroscopy was used to monitor the polymerization reaction and morphology evolution, and reveals a key correlation between irradiation intensity and composite morphology extending the entire depth of the mixture, i.e. unhindered phase-separation at low irradiation intensity and arrested phase-separation at high irradiation intensity. 3D Raman volume mapping and energy dispersive X-ray mapping confirm that the intensity-dependent irradiation process dictates the extent of phase separation, enabling single-parameter control over phase evolution and subsequent composite morphology. These observations can potentially enable a single-step route to develop polymer-inorganic composite materials with tunable morphologies.
我们报告了在光反应性单体与无机纳米颗粒的混合物中光聚合驱动相分离的观察结果。用具有周期性强度分布的可见光照射该混合物,这种强度分布会引发混合物深度方向上的光聚合反应,从而在光交联与系统固有的热力学有利相分离行为之间形成竞争。原位拉曼光谱用于监测聚合反应和形态演变,并揭示了贯穿混合物整个深度的辐照强度与复合材料形态之间的关键相关性,即在低辐照强度下无阻碍的相分离和在高辐照强度下受阻的相分离。三维拉曼体积映射和能量色散X射线映射证实,强度依赖的辐照过程决定了相分离的程度,从而能够对相演变及后续复合材料形态进行单参数控制。这些观察结果有可能为开发具有可调形态的聚合物-无机复合材料提供一条单步途径。