Suppr超能文献

具有优异可见光光催化性能的柔性PTh/GQDs/Ti复合材料用于快速降解污染物。

Flexible PTh/GQDs/TiO composite with superior visible-light photocatalytic properties for rapid degradation pollutants.

作者信息

Li Tong, Li Ru, Yang Lei, Wang Rongxu, Liu Rui, Chen Yelin, Yan Shiying, Ramakrishna Seeram, Long Yunze

机构信息

Collaborative Innovation Center for Nanomaterials & Devices, College of Physics, Qingdao University Qingdao 266071 China

Research Center for Intelligent & Wearable Technology, College of Textiles & Clothing, Qingdao University Qingdao 2266071 China.

出版信息

RSC Adv. 2023 Jan 10;13(3):1765-1778. doi: 10.1039/d2ra07084g. eCollection 2023 Jan 6.

Abstract

Flexible fiber membranes for pollutant removal have received increasing attention due to their high adsorption performance and easy recycling characteristics. However, due to the lack of environmentally friendly regeneration, some adsorption membranes have low regeneration efficiency, especially in terms of chemical adsorption, so they lack reusability. This study prepares a series of conducting polymer [PAn (polyaniline) or PPy (polypyrrole) or PTh (polythiophene)] graphene quantum dots (GQDs, the size of GQDs is about 20 nm)/TiO ternary fiber membranes a facile electrospinning method with chemical deposition. Remarkably, this creates an anatase TiO and π-conjugated system. The combination is beneficial to the photocatalytic degradation of organic pollutants, showing synergistic promotion in both the degradation rate and the degree of decomposition. The UV-vis test shows that the combination of GQDs broadens the optical response threshold of TiO, from near ultraviolet region excitation to visible region excitation. At the same time, the conductive polymer load further reduces the energy required for photogenerated electron transfer, which theoretically improves the degradation effect. Photocatalytic degradation tests showed that the PTh/GQDs/TiO fiber membrane exhibited significant high photocatalytic activity of visible-light in the methylene blue (MB) and TC degradation. The degradation rate level is 92.90% and 80.58%, respectively and the MB removal is more than 4 times that of bare TiO membrane. After photocatalytic regeneration four times, the regeneration efficiency can be maintained above 95%. Notably, various experimental results show that the interface charge transfer mechanism between GQDs/TiO and PTh follows the Z-scheme heterojunction, which maximizes the retention of strong reducing electrons and oxidation holes. In the degradation, the active species of ·O and ·OH, make different contributions in the photocatalysts, which oxidize and break down the pollutant molecules into small molecules and then to harmless substances. According to the electronegativity difference of the material itself, PTh acts as electron acceptor in the degradation system, and TiO fiber membrane doped with GQDs acts as electron donor. The present research, not only offers feasibility of the PTh/GQDs/TiO flexible fiber membrane as an environment-friendly catalyst, but also motivates researchers to develop flexible fiber materials for future photocatalytic technology.

摘要

用于污染物去除的柔性纤维膜因其高吸附性能和易于回收的特点而受到越来越多的关注。然而,由于缺乏环境友好的再生方法,一些吸附膜的再生效率较低,特别是在化学吸附方面,因此它们缺乏可重复使用性。本研究采用简便的静电纺丝法结合化学沉积法制备了一系列导电聚合物[聚苯胺(PAn)、聚吡咯(PPy)或聚噻吩(PTh)]石墨烯量子点(GQDs,GQDs的尺寸约为20nm)/TiO三元纤维膜。值得注意的是,这形成了锐钛矿TiO和π共轭体系。这种组合有利于有机污染物的光催化降解,在降解速率和分解程度上均表现出协同促进作用。紫外可见光谱测试表明,GQDs的组合拓宽了TiO的光学响应阈值,从近紫外区域激发扩展到可见光区域激发。同时,导电聚合物负载进一步降低了光生电子转移所需的能量,从理论上提高了降解效果。光催化降解试验表明,PTh/GQDs/TiO纤维膜在亚甲基蓝(MB)和TC降解中表现出显著的可见光高光催化活性。降解率分别为92.90%和80.58%,MB去除率是裸TiO膜的4倍以上。光催化再生4次后,再生效率可保持在95%以上。值得注意的是,各种实验结果表明,GQDs/TiO与PTh之间的界面电荷转移机制遵循Z型异质结,最大限度地保留了强还原电子和氧化空穴。在降解过程中,·O 和·OH等活性物种在光催化剂中发挥不同作用,将污染物分子氧化分解为小分子,进而转化为无害物质。根据材料本身的电负性差异,PTh在降解体系中作为电子受体,掺杂GQDs的TiO纤维膜作为电子供体。本研究不仅为PTh/GQDs/TiO柔性纤维膜作为环境友好型催化剂提供了可行性,也激励研究人员开发用于未来光催化技术的柔性纤维材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1cf/9830655/79cb6d09c2c6/d2ra07084g-s1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验