Rahul T K, Sandhyarani N
Nanoscience Research Laboratory, School of Nano Science and Technology, National Institute of Technology Calicut, Calicut, Kerala, India.
Nanoscale. 2015 Nov 21;7(43):18259-70. doi: 10.1039/c5nr04663g.
Three dimensionally ordered nitrogen-fluorine (N-F) co-doped TiO2 inverse opals (IOs) were fabricated by templating with polystyrene (PS) colloidal photonic crystals (CPCs) by infiltration. During preparation, the TiO2 precursor was treated with a mixture of nitric acid and trifluoroacetic acid to facilitate N-F co-doping into the TiO2 lattice. Enhanced solar light absorption was observed in the samples as a consequence of the red shift in the electronic band gap of TiO2 due to N-F co-doping. The photonic band gap (PBG) of these TiO2 IO films was tuned by varying the sphere size of the PS CPC templates. The as-prepared N-F co-doped TiO2 IO films were used as photocatalysts for the degradation of Rhodamine B (RhB) dye under solar light irradiation. A significant enhancement in the photocatalytic activity was observed in N-F co-doped TiO2 IO films prepared using PS spheres of 215 nm as a template, with the red edge of the PBG closer to the electronic band gap (EBG) of TiO2. 100% of the dye molecules were degraded within 2 minutes under direct solar irradiation, which is one of the fastest reaction times ever reported for RhB degradation in the presence of TiO2 photocatalysts. The N-F co-doped TiO2 IO film prepared using PS of 460 nm with its PBG centered at 695 nm also showed good photocatalytic activity. It was found that the IO films displayed improved photocatalytic activity in comparison to ordinary nanocrystalline (nc)-TiO2 films. The enhancement could be attributed to the bandgap scattering effect and the slow photon effect, leading to a significant improvement in solar light harvesting.
通过用聚苯乙烯(PS)胶体光子晶体(CPCs)进行模板渗透法制备了三维有序氮氟(N-F)共掺杂二氧化钛反蛋白石(IOs)。在制备过程中,二氧化钛前驱体用硝酸和三氟乙酸的混合物处理,以促进N-F共掺杂进入二氧化钛晶格。由于N-F共掺杂导致二氧化钛电子带隙发生红移,样品中观察到太阳光吸收增强。通过改变PS CPC模板的球体尺寸来调节这些二氧化钛IO薄膜的光子带隙(PBG)。所制备的N-F共掺杂二氧化钛IO薄膜用作光催化剂,用于在太阳光照射下降解罗丹明B(RhB)染料。在以215nm的PS球体为模板制备的N-F共掺杂二氧化钛IO薄膜中观察到光催化活性显著增强,其PBG的红边更接近二氧化钛的电子带隙(EBG)。在直接太阳辐射下,2分钟内100%的染料分子被降解,这是有TiO2光催化剂存在时RhB降解报道中最快的反应时间之一。以460nm的PS制备的N-F共掺杂二氧化钛IO薄膜,其PBG中心在695nm处也表现出良好的光催化活性。发现与普通纳米晶(nc)-TiO2薄膜相比,IO薄膜表现出更高的光催化活性。这种增强可归因于带隙散射效应和慢光子效应,从而导致太阳光捕获显著改善。