石墨氮化碳包埋生物基丙烯酸薄膜作为表面活性光催化剂。

Polymer science & technology (Washington, D.C.) Pub Date : 2024-12-19 eCollection Date: 2025-03-25 DOI:10.1021/polymscitech.4c00017
Chuyue Lu, Niklas Lorenz, Hanieh Bazyar, Giulio Malucelli, Baris Kumru
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引用次数: 0

摘要

大豆油是一种可持续的可再生资源,其衍生物,如丙烯酸大豆油,已具有越来越大的工业意义,目前已大规模生产。相比之下,石墨碳氮化(g-CN),一种无金属聚合物半导体,在工业聚合物系统中仍未被开发。本研究以1 m/min的带速快速紫外固化工艺,探索了氮化石墨碳与生物基丙烯酸树脂的整合。所制得的纳米复合膜含有10%的纳米颗粒负载,平均厚度为200 μm,具有良好的光催化性能,带隙为2.7 eV。这些薄膜的光催化性能通过染料降解实验进行了全面评估,揭示了增强的表面驱动活性,特别是在醇基介质中。虽然膜的疏水性限制了在水环境中对染料的去除(5小时内去除效率为25%),但在醇中5小时内就能完全光降解亚甲基蓝。此外,膜在5个循环中保持其光催化效率,没有明显的性能损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Graphitic Carbon Nitride Embedded Bio-Based Acrylic Films as Surface Active Photocatalysts.

Soybean oil, a sustainable and renewable resource, has gained increasing industrial relevance through its derivatives, such as acrylated soybean oil, which is now produced at significant commercial scales. In contrast, graphitic carbon nitride (g-CN), a metal-free polymeric semiconductor, remains unexplored in industrial polymer systems. This study explores the integration of graphitic carbon nitride into bio-based acrylic resins using a rapid UV-curing process at a belt speed of 1 m/min. The resulting nanocomposite films, incorporating 10% nanoparticle loading and with an average thickness of 200 μm, demonstrate promising photocatalytic properties with a bandgap of 2.7 eV. The photocatalytic performance of these films is thoroughly evaluated via dye degradation experiments, revealing enhanced surface-driven activity, particularly in alcohol-based media. While the hydrophobic nature of the films limits dye removal in aqueous environments (25% removal efficiency in 5 h), complete photodegradation of methylene blue is achieved in alcohol within 5 h. Moreover, the films maintain their photocatalytic efficiency over five cycles with no significant performance deprivation.

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