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Photoluminescence Mechanism and Photocatalytic Activity of Organic-Inorganic Hybrid Materials Formed by Sequential Vapor Infiltration.

机译:顺序蒸汽渗透法制备有机 - 无机杂化材料的光致发光机理及光催化活性。

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摘要

Organic-inorganic hybrid materials formed by sequential vapor infiltration (SVI) of trimethylaluminum into polyester fibers are demonstrated, and the photoluminescence of the fibers is evaluated using a combined UV-vis and photoluminescence excitation (PLE) spectroscopy approach. The optical activity of the modified fibers depends on infiltration thermal processing conditions and is attributed to the reaction mechanisms taking place at different temperatures. At low temperatures a single excitation band and dual emission bands are observed, while, at high temperatures, two distinct absorption bands and one emission band are observed, suggesting that the physical and chemical structure of the resulting hybrid material depends on the SVI temperature. Along with enhancing the photoluminescence intensity of the PET fibers, the internal quantum efficiency also increased to 5-fold from ∼4-5% to ∼24%. SVI processing also improved the photocatalytic activity of the fibers, as demonstrated by photodeposition of Ag and Au metal particles out of an aqueous metal salt solution onto fiber surfaces via UVA light exposure. Toward applications in flexible electronics, well-defined patterning of the metallic materials is achieved by using light masking and focused laser rastering approaches.
机译:演示了通过三甲基铝的顺序气相渗透(SVI)到聚酯纤维中形成的有机-无机杂化材料,并使用紫外可见光谱和光致发光激发(PLE)光谱方法对纤维的光致发光进行了评估。改性纤维的光学活性取决于渗透热处理条件,并归因于在不同温度下发生的反应机理。在低温下,观察到一个激发带和两个发射带,而在高温下,观察到两个不同的吸收带和一个发射带,这表明所得杂化材料的物理和化学结构取决于SVI温度。随着增强PET纤维的光致发光强度,内部量子效率也从约4-5%增至约24%,增至5倍。 SVI处理还改善了纤维的光催化活性,这是通过将金属盐水溶液中的Ag和Au金属颗粒通过UVA曝光在纤维表面上进行光沉积而证明的。在柔性电子领域中的应用中,通过使用光掩膜和聚焦激光光栅化方法,可以对金属材料进行清晰的图案化。

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