Cravanzola Sara, Muscuso Lucia, Cesano Federico, Agostini Giovanni, Damin Alessandro, Scarano Domenica, Zecchina Adriano
Department of Chemistry, NIS (Nanostructured Interfaces and Surfaces) Interdepartmental Centre and INSTM Centro Di Riferimento, University of Torino, Via P. Giuria, 7, 10125 Torino, Italy.
Langmuir. 2015 May 19;31(19):5469-78. doi: 10.1021/acs.langmuir.5b00396. Epub 2015 May 7.
MoS2/TNTs composites have been obtained by impregnation of titanate nanotubes (TNTs) with a centrifuged solution of nanosized MoS2 particles in isopropyl alcohol (IPA). The characterization has been performed by combining UV-vis-NIR, Raman, AFM, and HRTEM analyses, before and after impregnation. HRTEM images show that the contact between single-layer MoS2 nanoparticles and the support is efficient, so justifying the decoration concept. The volatility of IPA solvent allows the preparation of composites at low temperature and free of carbonaceous impurities. MoS2 nanoparticles have strong excitonic transitions, which are only slightly shifted with respect to the bulk because of quantum size effects. Concentrations of MoS2, less than 0.1 wt %, are enough to induce strong absorption in the visible. Photodegradation of methylene blue (MB) has been performed on TNTs and MoS2/TNTs to verify the effect of the presence of MoS2. The first layer of adsorbed MB is consumed first, followed by clustered MB in the second and more external layers. The presence of low concentrated MoS2 nanoparticles does not substantially alter the photocatalytic properties of TNTs. This result is due to poor overlapping between the high frequency of MoS2 C, D excitonic transitions and the TNTs band gap transition.
通过用纳米尺寸的二硫化钼(MoS2)颗粒在异丙醇(IPA)中的离心溶液浸渍钛酸纳米管(TNTs),获得了MoS2/TNTs复合材料。在浸渍前后,通过结合紫外-可见-近红外、拉曼、原子力显微镜和高分辨率透射电子显微镜分析进行了表征。高分辨率透射电子显微镜图像显示,单层MoS2纳米颗粒与载体之间的接触是有效的,从而证明了修饰概念的合理性。IPA溶剂的挥发性使得能够在低温下制备不含碳质杂质的复合材料。MoS2纳米颗粒具有强烈的激子跃迁,由于量子尺寸效应,其相对于体相仅略有偏移。MoS2浓度低于0.1 wt%就足以在可见光中产生强烈吸收。对TNTs和MoS2/TNTs进行了亚甲基蓝(MB)的光降解,以验证MoS2存在的影响。首先消耗吸附的MB的第一层,然后是第二层及更外层中的聚集MB。低浓度MoS2纳米颗粒的存在基本上不会改变TNTs的光催化性能。该结果是由于MoS2 C、D激子跃迁的高频与TNTs带隙跃迁之间的重叠较差。