Li Dan, Wang Hui, Jing Wenheng, Fan Yiqun, Xing Weihong
State Key Lab of Material-Oriented Chemical Engineering, National Engineering Research Center for Special Separation Membrane, College of Chemistry and Chemical Engineering, Nanjing Tech University, China.
State Key Lab of Material-Oriented Chemical Engineering, National Engineering Research Center for Special Separation Membrane, College of Chemistry and Chemical Engineering, Nanjing Tech University, China.
J Colloid Interface Sci. 2014 Nov 1;433:43-48. doi: 10.1016/j.jcis.2014.05.026. Epub 2014 Jun 13.
A straightforward synthesis of crack-free mesoporous titania membrane on a macroporous support without intermediate layers by a nanoparticle-modified polymeric sol-gel process is reported. TiO2 nanoparticle (Degussa P25) was dispersed into the prepared sol to toughen the formed gel. This helped to avoid the cracking of membrane during the drying and early stage of sintering, particularly when the sol-gel transformation occurred on a substrate with an uneven surface. The results of X-ray diffraction and Brunauer-Emmett-Teller analyses show that the nanoparticle doping did not significantly affect the particle size of TiO2 nanocrystals; however, it slightly broadened the pore size distribution because it has a larger particle size compared to the prepared materials. The sols with and without P25 nanoparticle were subsequently dip-coated on a support with average pore size of 150nm, thus formed a mesoporous membrane layer after drying and sintering processes. An integrated, crack-free mesoporous TiO2 membrane layer was obtained by this method, while the membrane prepared with the original sol developed a few cracks. Further, the filtration experiment showed that the prepared membrane had a high flux, and the membrane with nanoparticle modification delivered better separation performance by rejection of dextran.
报道了一种通过纳米颗粒改性的聚合物溶胶 - 凝胶法在无中间层的大孔载体上直接合成无裂纹介孔二氧化钛膜的方法。将TiO₂纳米颗粒(德固赛P25)分散到制备好的溶胶中以增强形成的凝胶。这有助于避免膜在干燥和烧结早期开裂,特别是当溶胶 - 凝胶转变发生在表面不平的基底上时。X射线衍射和布鲁诺尔 - 埃米特 - 泰勒分析结果表明,纳米颗粒掺杂对TiO₂纳米晶体的粒径没有显著影响;然而,它略微拓宽了孔径分布,因为与制备的材料相比它具有更大的粒径。随后将含有和不含P25纳米颗粒的溶胶浸涂在平均孔径为150nm的载体上,经过干燥和烧结过程后形成介孔膜层。通过这种方法获得了完整、无裂纹的介孔TiO₂膜层,而用原始溶胶制备的膜出现了一些裂纹。此外,过滤实验表明,制备的膜具有高通量,并且经过纳米颗粒改性的膜通过对葡聚糖的截留表现出更好的分离性能。