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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cone-shaped titanate immobilized on polyacrylonitrile nanofibers: hierarchical architecture for effective photocatalytic activity
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Cone-shaped titanate immobilized on polyacrylonitrile nanofibers: hierarchical architecture for effective photocatalytic activity

机译:固定在聚丙烯腈纳米纤维上的锥形钛酸盐:具有有效光催化活性的等级架构

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A new photocatalytic composite material, based on flexible functional polyacrylonitrile nanofibers (denoted as f-PAN NF), was developed by depositing composite layers of alpha-TiO2 and cone-shaped titanate (H(2)Ti(5)O(11)3H(2)O) successively. The alpha-TiO2 coated on f-PAN NF as a seed accelerated the nucleation of titanate. Cone-shaped titanate deposited on alpha-TiO2@f-PAN NF tightly at 35 degrees C with the assistance of cyanuric acid via Ostwald ripening. Due to the uniform distribution of cone-shaped titanate, the photocatalytic performance of hybrid f-PAN NF was remarkable under LED light irradiation and yielded additional photocatalytic applications as well. In addition, the composite photocatalyst exhibited better reusability and retrievability because of the special design involving a bonding between the nanofibers and layers.
机译:通过沉积α-TiO2和锥形钛酸盐(H(2)Ti(5)O(11)3H的复合层(H(2)Ti(11)3H(H(2)Ti(11)3H)来开发一种新的光催化复合材料(表示为F-PAN NF)。 (2)o)连续。 作为种子涂覆在F-Pan NF上的α-TiO2加速了钛酸盐的成核。 通过Ostwald成熟,在35摄氏度下紧紧地沉积在α-TiO2 @ F-Pan NF上的锥形钛酸盐。 由于锥形钛酸盐的均匀分布,杂交F-PAN NF的光催化性能在LED光照射下显着,并产生额外的光催化应用。 此外,复合光催化剂表现出更好的可重复使用性和可回收性,因为涉及纳米纤维和层之间的粘合剂的特殊设计。

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