State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, College of Resource and Environmental Engineering, Wuhan University of Technology, Wuhan 430070, People's Republic of China.
Nano Lett. 2011 Nov 9;11(11):4774-9. doi: 10.1021/nl202587b. Epub 2011 Oct 7.
Visible light photocatalytic H(2) production through water splitting is of great importance for its potential application in converting solar energy into chemical energy. In this study, a novel visible-light-driven photocatalyst was designed based on photoinduced interfacial charge transfer (IFCT) through surface modification of ZnS porous nanosheets by CuS. CuS/ZnS porous nanosheet photocatalysts were prepared by a simple hydrothermal and cation exchange reaction between preformed ZnS(en)(0.5) nanosheets and Cu(NO(3))(2). Even without a Pt cocatalyst, the as-prepared CuS/ZnS porous nanosheets reach a high H(2)-production rate of 4147 μmol h(-1) g(-1) at CuS loading content of 2 mol % and an apparent quantum efficiency of 20% at 420 nm. This high visible light photocatalytic H(2)-production activity is due to the IFCT from the valence band of ZnS to CuS, which causes the reduction of partial CuS to Cu(2)S and thus enhances H(2)-production activity. This work not only shows a possibility for substituting low-cost CuS for noble metals in the photocatalytic H(2) production but also for the first time exhibits a facile method for enhancing H(2)-production activity by photoinduced IFCT.
可见光光催化分解水制氢对于将太阳能转化为化学能具有重要意义。本研究通过在 ZnS 多孔纳米片表面进行光诱导界面电荷转移(IFCT)的表面修饰,设计了一种新型可见光驱动光催化剂。采用简单的水热法和阳离子交换反应,由预先制备的 ZnS(en)(0.5)纳米片和 Cu(NO3)2制备了 CuS/ZnS 多孔纳米片光催化剂。即使没有 Pt 助催化剂,所制备的 CuS/ZnS 多孔纳米片在 CuS 负载量为 2mol%时达到 4147 μmol h-1 g-1 的高氢气产率,在 420nm 时的表观量子效率为 20%。这种高可见光光催化制氢活性归因于 ZnS 价带到 CuS 的 IFCT,导致部分 CuS 还原为 Cu2S,从而增强了制氢活性。这项工作不仅展示了用低成本的 CuS 替代光催化制氢中的贵金属的可能性,而且首次展示了通过光诱导 IFCT 提高制氢活性的简便方法。