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The design and realization of a large-area flexible nanofiber-based mat for pollutant degradation: an application in photocatalysis

机译:一个大面积的设计与实现灵活nanofiber-based垫污染物在光催化降解:一个应用程序

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This work demonstrates a novel multifunctional nanofibrous mat for photocatalytic applications based on TiO2 nanocables functionalized by Ag nanoparticles and coated with a thin (~2 nm) graphitic shell. In this mat, which was realized by an electrospinning technique, each component serves a unique function: the carbon coating acts as both an adsorption material for capturing pollutants and as a charge-transfer material, the Ag nanoparticles act as a visible-light sensitizing agent and also as a charge-transfer material, finally the TiO2 nanocable mat acts as a UV sensitive photocatalytic matrix and as the flexible substrate for the other functional components. This multicomponent nanocable mat exhibits excellent photocatalytic activity under simulated solar irradiation for the degradation of model pollutants including RhB and phenol. The significant photocatalytic properties are attributed to the synergetic effect of the three functional components and the unique charge transport "freeway" property of the nanofibrous mat. In addition, the porous carbon coating infiltrated into the nanocable matrix endows the mat with excellent flexibility and enables robust, large-area (10 × 10 cm) fabrication, representing a significant advantage over previous brittle ceramic nanofibrous mat photocatalyst substrates. This study provides new insight into the design and preparation of an advanced, yet commercially practical and scaleable photocatalytic composite membrane material. The as-prepared photocatalytic mat might also be of interest in solar cell, catalysis, separation technology, biomedical engineering, and nanotechnology.
机译:这项工作展示了一种新型多功能为光催化应用nanofibrous垫基于二氧化钛nanocables功能化Ag)纳米颗粒和涂上一层薄薄的(~ 2海里)石墨层。由电纺的技术,每个组件是一个独特的功能:碳涂层的行为既是一种吸附材料用于捕获污染物和电荷转移材料,Ag纳米颗粒作为可见光敏化剂,同时也作为电荷转移材料,最后二氧化钛nanocable垫充当紫外线敏感矩阵以及光催化柔性衬底上的其他功能组件。表现出良好的光催化活性模拟太阳辐照降解模型污染物包括RhB和苯酚。重要的光催化性能由于这三个的协同作用功能组件和独特的运输nanofibrous的“高速公路”属性垫子上。此外,多孔碳涂层渗透到nanocable矩阵赋予垫的灵活性和支持健壮的、大面积(10×10厘米)制造、代表一个重要的优势以前的脆性陶瓷nanofibrous垫光催化剂基质。洞察的设计和制备先进,但商业实用可伸缩光催化复合膜材料。感兴趣的也可以在太阳能电池,催化、分离技术、生物医学工程和纳米技术。

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