Photocatalysis and Nanotechnology Unit, Institut für Technische Chemie, Leibniz Universität Hannover, Callinstrasse 3, D-30167 Hannover, Germany.
Phys Chem Chem Phys. 2011 Dec 7;13(45):20155-61. doi: 10.1039/c1cp22612f. Epub 2011 Oct 12.
Mesostructured TiO(2) nanocrystals have been prepared using Pluronic F127 as the structure-directing agent. Platinum nanoparticles at different contents (0.1-1.0 wt%) have been photochemically deposited onto the mesoporous TiO(2). TEM investigation of 0.2 wt% Pt/TiO(2) calcined at 450 °C reveals that the TiO(2) particles are quite uniform in size and shape with the particle sizes of TiO(2) and Pt being 10 and 3 nm, respectively. The photocatalytic activities of the Pt loaded TiO(2) have been assessed and compared with those of nonporous commercial Pt/TiO(2)-P25 by determining the rates and the photonic efficiencies of molecular hydrogen production from aqueous methanol solutions. The results show that the amount of hydrogen evolved on Pt/TiO(2)-450 at low Pt loading (0.2 wt%) is three times higher than that evolved on Pt/TiO(2)-P25 and twelve times higher than that evolved on Pt/TiO(2)-350. Despite the BET surface area of the TiO(2)-450 photocatalyst being 3.5 times higher than that of TiO(2)-P25, a 60% smaller amount of the Pt co-catalyst is required to obtain the optimum photocatalytic hydrogen production activity. The reduced Pt loading on the mesoporous TiO(2) will be important both from a commercial and an ecological point of view.
介孔 TiO(2) 纳米晶体已使用 Pluronic F127 作为结构导向剂制备。不同含量(0.1-1.0wt%)的铂纳米粒子已通过光化学沉积在介孔 TiO(2)上。在 450°C 下煅烧的 0.2wt%Pt/TiO(2)的 TEM 研究表明,TiO(2)颗粒的尺寸和形状非常均匀,TiO(2)和 Pt 的粒径分别为 10nm 和 3nm。评估了负载 Pt 的 TiO(2)的光催化活性,并通过确定从甲醇水溶液中产生分子氢的速率和光子效率来与非多孔商业 Pt/TiO(2)-P25 进行比较。结果表明,在低 Pt 负载(0.2wt%)下,Pt/TiO(2)-450 上产生的氢量是 Pt/TiO(2)-P25 的三倍,是 Pt/TiO(2)-350 的 12 倍。尽管 TiO(2)-450 光催化剂的 BET 表面积比 TiO(2)-P25 高 3.5 倍,但获得最佳光催化制氢活性所需的 Pt 共催化剂的量减少了 60%。在介孔 TiO(2)上减少 Pt 负载量从商业和生态角度来看都非常重要。