Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai 200444, People's Republic of China.
Nanotechnology. 2016 Jul 15;27(28):285602. doi: 10.1088/0957-4484/27/28/285602. Epub 2016 Jun 6.
Inspired by natural photosynthesis, the Z-scheme photocatalyst is a promising approach to extend the absorption spectra of photocatalysts and reduce the recombination of photo-generated electrons and holes. However, the fabrication of well-structured efficient multi-component Z-scheme photocatalysts is still a big challenge. We report here a facile one-pot method to synthesize graphene-based Z-scheme photocatalysts. The one-pot method guarantees good distribution of well-structured individual components on thin-layered rGO sheets with excellent connections. With inactive WO3 nanorods and inactive β-In2S3 nanosheets attached to the surface of the rGO sheets, the synthesized In2S3/WO3/rGO tertiary nanocomposite shows excellent visible-light catalytic activity for hydrogen production at 1524 μmol g(-1) h(-1), demonstrating unambiguously the Z-scheme catalytic mechanism. To prevent cross-reactions and interferences, our strategy was to choose no more than one ionic precipitation reaction for the one-pot process, as unwanted cross-reactions could become inevitable if many cations and anions were present. This fabrication strategy should be applicable generally to synthesize other multiple-component nanocomposites, as demonstrated also by the preliminary results of the successful synthesis of the BiVO4/WO3/rGO nanocomposite (one ionic precipitation reaction and one hydrolysis reaction) and WO3/TiO2/rGO nanocomposite (two hydrolysis reactions).
受自然光合作用的启发,Z 型光催化剂是一种很有前途的方法,可以扩展光催化剂的吸收光谱并减少光生电子和空穴的复合。然而,制备结构良好的高效多组分 Z 型光催化剂仍然是一个巨大的挑战。我们在此报告了一种简便的一锅法来合成基于石墨烯的 Z 型光催化剂。一锅法可以保证结构良好的各个组分在薄层 rGO 片上的良好分布,并且具有优异的连接。通过将非活性 WO3 纳米棒和非活性β-In2S3 纳米片附着在 rGO 片的表面,所合成的 In2S3/WO3/rGO 三元纳米复合材料在可见光照射下表现出优异的析氢活性,达到 1524 μmol g(-1) h(-1),明确证明了 Z 型催化机制。为了防止交叉反应和干扰,我们的策略是在一锅法中选择不超过一个离子沉淀反应,因为如果存在许多阳离子和阴离子,就不可避免地会发生不需要的交叉反应。这种制造策略应该普遍适用于合成其他多组分纳米复合材料,我们通过成功合成 BiVO4/WO3/rGO 纳米复合材料(一个离子沉淀反应和一个水解反应)和 WO3/TiO2/rGO 纳米复合材料(两个水解反应)的初步结果也证明了这一点。