Departamento de Química, Facultad de Ciencias, Universidad Nacional de Colombia, Bogotá 111321, Colombia.
Facultad de Ciencias de la Salud, Instituto de Investigación Interdisciplinar en Ciencias Biomédicas, Universidad SEK, Santiago 7520317, Chile.
Int J Mol Sci. 2022 Apr 4;23(7):4006. doi: 10.3390/ijms23074006.
The desire to harness solar energy to address current global environmental problems led us to investigate two-dimensional (2D) core-shell hybrid photocatalysts in the form of a 2D-TiO-surfactant, mainly composed of fatty acids. The bulk products, prepared by two slightly different methods, consist of stacked host-guest hybrid sheets held together by van der Waals forces between alkyl carboxylate moieties, favoring the synergistic conjugation of the photophysical properties of the core and the hydrophobicity of the self-assembled surfactant monolayer of the shell. X-ray diffraction and the vibrational characteristics of the products revealed the influence of synthesis strategies on two types of supramolecular aggregates that differ in the core chemical structure, guest conformers of alkyl surfactant tails and type, and the bilayer and monolayer of the structure of nanocomposites. The singular ability of the TiO core to anchor carboxylate leads to commensurate hybrids, in contrast to both layered clay and layered double-hydroxide-based ion exchangers which have been previously reported, making them potentially interesting for modeling the role of fatty acids and lipids in bio-systems. The optical properties and photocatalytic activity of the products, mainly in composites with smaller bandgap semiconductors, are qualitatively similar to those of nanostructured TiO but improve their photoresponse due to bandgap shifts and the extreme aspect-ratio characteristics of two-dimensional TiO confinement. These results could be seen as a proof-of-concept of the potential of these materials to create custom-designed 2D-TiO-surfactant supramolecular photocatalysts.
为了解决当前的全球环境问题,人们渴望利用太阳能,这促使我们研究了二维(2D)核壳混合光催化剂,其形式为 2D-TiO-表面活性剂,主要由脂肪酸组成。两种略有不同的方法制备的块状产物由层状主体-客体混合片组成,这些混合片由烷基羧酸盐部分之间的范德华力保持在一起,有利于核的光物理性质和壳的自组装表面活性剂单层的疏水性的协同共轭。X 射线衍射和产物的振动特性揭示了合成策略对两种超分子聚集体的影响,这两种超分子聚集体在核化学结构、烷基表面活性剂尾部和类型的客体构象以及纳米复合材料的双层和单层结构方面有所不同。TiO 核将羧酸根锚定的独特能力导致了同构配合物,这与之前报道的层状粘土和层状双氢氧化物基离子交换剂形成对比,这使得它们在模拟脂肪酸和脂类在生物系统中的作用方面具有潜在的兴趣。产物的光学性质和光催化活性,主要是与更小带隙半导体的复合材料,与纳米结构 TiO 的性质相似,但由于带隙位移和二维 TiO 限制的极端纵横比特性,提高了它们的光响应。这些结果可以被视为这些材料在创建定制设计的 2D-TiO-表面活性剂超分子光催化剂方面的潜力的证明。