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Pvd-grown Photocatalytic Tio_2 Thin Films On Pvdf Substrates For Sensorsand Actuators Applications

机译:在传感器和执行器应用的Pdff基板上的Pvd生长的光催化Tio_2薄膜

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Titanium dioxide's self-cleaning effect has been broadly used in textiles, paints, windows, residual water treatment, amongst various other photocatalytic applications. Polymer substrates have found their way in the semiconductor industry as a base layer for flexible electronics, as well as in sensor and actuator applications. The optimum performance of these systems may be affected by dirt adsorbed on its surface, which can also originate mechanisms for the degradation of the polymer. These thin films have been deposited on electroactive poly(vinilidene fluoride) - PVDF -polymer substrates by unbalanced reactive magnetron sputtering. Rutherford Backscattering experiments evidenced that these coatings have a TiO_2 stoichiometry. Raman spectroscopy experiments revealed that the as-deposited coatings on polymer substrates are mostly amorphous, however evidence of anatase and rutile nano-crystalline phases can be found. The photocatalytic behavior of the titanium dioxide coatings was determined by combined ultra-violet irradiation and absorption measurements of a particular dye in the presence of the catalyst. In order to assess the mechanical behavior of the as-sputtered films, the film/substrate composite system was loaded unidirectionally using a tensile testing machine. The stress-strain curves were analyzed and correlated with photocatalytic efficiency along these curves, as well as with the structural data.
机译:二氧化钛的自清洁效果已广泛用于纺织品,油漆,窗户,残留水处理以及其他各种光催化应用中。聚合物基板已在半导体工业中作为柔性电子产品的基础层以及传感器和执行器应用中的一种方式。这些系统的最佳性能可能会受到其表面吸附的污垢的影响,这也可能会引发聚合物降解的机理。这些薄膜已通过不平衡反应磁控溅射沉积在电活性聚偏二氟乙烯-PVDF聚合物基板上。卢瑟福反向散射实验证明,这些涂层的化学计量比为TiO_2。拉曼光谱实验表明,沉积在聚合物基底上的涂层大部分是非晶态的,但是可以发现锐钛矿和金红石型纳米晶相的证据。二氧化钛涂层的光催化行为是通过在催化剂存在下特定染料的紫外线辐射和吸收测量相结合来确定的。为了评估溅射后的薄膜的机械性能,使用拉伸试验机单向加载薄膜/基材复合系统。分析了应力-应变曲线,并将其与沿着这些曲线的光催化效率以及结构数据相关联。

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