Qin Lipei, Wang Guojing, Tan Yiwei
State Key Laboratory of Materials-Oriented Chemical Engineering, School of Chemistry and Chemical Engineering, Nanjing Tech University, Nanjing, 210009, China.
Sci Rep. 2018 Nov 1;8(1):16198. doi: 10.1038/s41598-018-33795-z.
Visible light-driven water splitting (VLWS) into hydrogen and oxygen is attractive and depends on efficient photocatalysts. Herein, we demonstrate the first exploration of the capability to control the morphology of nanostructured TiO in conjunction with the choice of a suitable plasmonic metal (PM) to fabricate novel photocatalysts that are capable of harvesting visible light for more efficient VL-fuel conversion. This methodology affords us to successful access to the novel plasmonic Pt/TiO-HA (large Pt nanoparticles (NPs) supported on TiO hierarchical nano-architecture (TiO-HA)) photocatalysts that exhibit plasmon absorption in the visible range and consequent outstanding activity and durability for VLWS. Particularly, the Pt/TiO-HA shows an excellent photocatalytic activity for overall water splitting rather than only for hydrogen evolution (HE), which is superior to those of the conventional plasmonic Au/TiO photocatalysts. The synergistic effects of the high Schottky barrier at the Pt-TiO-HA interface, which induces the stronger reduction ability of hot electrons, and intrinsic Pt catalytic activity are responsible for the exceptional photocatalytic performance of Pt/TiO-HA and simplify the composition of plasmonic photocatalysts.
可见光驱动的水分解为氢气和氧气具有吸引力,且依赖于高效的光催化剂。在此,我们首次探索了结合选择合适的等离子体金属(PM)来控制纳米结构TiO形态的能力,以制备能够捕获可见光以实现更高效可见光燃料转化的新型光催化剂。这种方法使我们成功获得了新型等离子体Pt/TiO-HA(负载在TiO分级纳米结构(TiO-HA)上的大尺寸Pt纳米颗粒(NPs))光催化剂,其在可见光范围内表现出等离子体吸收,并因此对可见光驱动的水分解具有出色的活性和耐久性。特别地,Pt/TiO-HA对整体水分解表现出优异的光催化活性,而不仅仅是析氢(HE),这优于传统的等离子体Au/TiO光催化剂。Pt-TiO-HA界面处的高肖特基势垒诱导热电子具有更强的还原能力,以及Pt的固有催化活性,二者的协同效应是Pt/TiO-HA具有优异光催化性能的原因,并简化了等离子体光催化剂的组成。