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CdS 量子点/石墨烯纳米片杂交薄膜的层层自组装及其光电化学和光催化应用。

Layer-by-layer self-assembly of CdS quantum dots/graphene nanosheets hybrid films for photoelectrochemical and photocatalytic applications.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University , 62 Nanyang Drive, Singapore 637459, Singapore.

出版信息

J Am Chem Soc. 2014 Jan 29;136(4):1559-69. doi: 10.1021/ja411651e. Epub 2014 Jan 15.

Abstract

In recent years, increasing interest has been devoted to synthesizing graphene-semiconductor nanocomposites as efficient photocatalysts for extensive applications. Unfortunately, it is still challenging to make uniform graphene-semiconductor composite films with controllable film thickness and architecture, which are of paramount importance to meet the application requirements. In this work, stable aqueous dispersion of polymer-modified graphene nanosheets (GNs) was prepared via in situ reduction of exfoliated graphite oxide in the presence of cationic poly(allylamine hydrochloride) (PAH). The resultant water-soluble PAH-modified GNs (GNs-PAH) in conjunction with tailor-made negatively charged CdS quantum dots (QDs) were utilized as nanobuilding blocks for sequential layer-by-layer (LbL) self-assembly of well-defined GNs-CdS QDs hybrid films, in which CdS QDs overspread evenly on the two-dimensional (2D) GNs. It was found that the alternating GNs-CdS QDs multilayered films showed significantly enhanced photoelectrochemical and photocatalytic activities under visible light irradiation as compared to pure CdS QDs and GNs films. The enhancement was attributed to the judicious integration of CdS QDs with GNs in an alternating manner, which maximizes the 2D structural advantage of GNs in GNs-CdS QDs composite films. In addition, photocatalytic and photoelectrochemical mechanisms of the GNs-CdS QDs multilayered films were also discussed. It is anticipated that our work may open new directions for the fabrication of uniform semiconductor/GNs hybrid films for a wide range of applications.

摘要

近年来,人们越来越关注合成石墨烯-半导体纳米复合材料作为高效光催化剂的应用。然而,制备具有可控膜厚和结构的均匀石墨烯-半导体复合膜仍然具有挑战性,这对于满足应用需求至关重要。在这项工作中,通过在阳离子聚烯丙胺盐酸盐(PAH)存在下对剥离的氧化石墨进行原位还原,制备了稳定的聚合物修饰石墨烯纳米片(GNs)的水性分散体。所得水溶性 PAH 修饰 GNs(GNs-PAH)与定制的带负电荷的 CdS 量子点(QDs)一起,被用作逐层(LbL)自组装的纳米构建块,用于制备具有明确结构的 GNs-CdS QDs 杂化膜,其中 CdS QDs 均匀地覆盖在二维(2D)GNs 上。结果表明,与纯 CdS QDs 和 GNs 膜相比,交替的 GNs-CdS QDs 多层膜在可见光照射下表现出显著增强的光电化学和光催化活性。这种增强归因于 CdS QDs 与 GNs 以交替方式的合理集成,最大限度地发挥了 GNs 在 GNs-CdS QDs 复合膜中的二维结构优势。此外,还讨论了 GNs-CdS QDs 多层膜的光催化和光电化学机制。预计我们的工作可能为制备用于广泛应用的均匀半导体/GNs 杂化膜开辟新的方向。

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