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维度对碳-二氧化钛纳米片复合材料光催化行为的影响:纳米材料界面处的电荷转移

Effect of Dimensionality on the Photocatalytic Behavior of Carbon-Titania Nanosheet Composites: Charge Transfer at Nanomaterial Interfaces.

作者信息

Liang Yu Teng, Vijayan Baiju K, Lyandres Olga, Gray Kimberly A, Hersam Mark C

机构信息

†Department of Materials Science and Engineering, ‡Department of Civil and Environmental Engineering, §Department of Chemistry, and ⊥Department of Medicine, Northwestern University, Evanston, Illinois 60208, United States.

出版信息

J Phys Chem Lett. 2012 Jul 5;3(13):1760-5. doi: 10.1021/jz300491s. Epub 2012 Jun 21.

Abstract

Due to their unique optoelectronic structure and large specific surface area, carbon nanomaterials have been integrated with titania to enhance photocatalysis. In particular, recent work has shown that nanocomposite photocatalytic performance can be improved by minimizing the covalent defect density of the carbon component. Herein, carbon nanotube-titania nanosheet and graphene-titania nanosheet composites with low carbon defect densities are compared to investigate the role of carbon nanomaterial dimensionality on photocatalytic response. The resulting 2D-2D graphene-titania nanosheet composites yield superior electronic coupling compared to 1D-2D carbon nanotube-titania nanosheet composites, leading to greater enhancement factors for CO2 photoreduction under ultraviolet irradiation. On the other hand, 1D carbon nanotubes are shown to be more effective titania photosensitizers, leading to greater photoactivity enhancement factors under visible illumination. Overall, this work suggests that carbon nanomaterial dimensionality is a key factor in determining the spectral response and reaction specificity of carbon-titania nanosheet composite photocatalysts.

摘要

由于其独特的光电结构和大比表面积,碳纳米材料已与二氧化钛结合以增强光催化作用。特别是,最近的研究表明,通过最小化碳组分的共价缺陷密度可以提高纳米复合光催化性能。在此,对具有低碳缺陷密度的碳纳米管-二氧化钛纳米片和石墨烯-二氧化钛纳米片复合材料进行比较,以研究碳纳米材料维度对光催化响应的作用。与一维-二维碳纳米管-二氧化钛纳米片复合材料相比,所得的二维-二维石墨烯-二氧化钛纳米片复合材料产生了优异的电子耦合,导致在紫外光照射下二氧化碳光还原的增强因子更大。另一方面,一维碳纳米管被证明是更有效的二氧化钛光敏剂,在可见光照射下导致更大的光活性增强因子。总体而言,这项工作表明碳纳米材料维度是决定碳-二氧化钛纳米片复合光催化剂的光谱响应和反应特异性的关键因素。

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