Suppr超能文献

BiOI负载壳聚糖纳米复合材料是一种用于甲基橙和4-硝基苯酚还原的坚固、高效且可持续的催化剂。

BiOI supported chitosan nanocomposite a robust, highly efficient, and sustainable catalyst for methyl orange pand 4-nitrophenol reduction.

作者信息

Brik Abdelmalik, El Kadiri Mustapha, El Assimi Taha, Ben Youcef Hicham, Laassiri Said, Gouhier Geraldine, El Meziane Abdellatif, El Kadib Abdelkrim, Lahcini Mohammed

机构信息

IMED-Lab, Faculty of Sciences and Techniques, CadiAyyad University, Avenue Abdelkrim Elkhattabi, B.P. 549, 40000 Marrakech, Morocco; High Throughput Multidisciplinary Research (HTMR), Mohammed VI Polytechnic University (UM6P), Lot 660 Hay Moulay Rachid, Ben Guerir, Morocco.

IMED-Lab, Faculty of Sciences and Techniques, CadiAyyad University, Avenue Abdelkrim Elkhattabi, B.P. 549, 40000 Marrakech, Morocco.

出版信息

Int J Biol Macromol. 2025 Jul;318(Pt 1):144462. doi: 10.1016/j.ijbiomac.2025.144462. Epub 2025 May 28.

Abstract

Chitosan (CS) has garnered significant attention as catalyst support due to its abundance, eco-friendliness, and renewable nature, making it a highly sustainable option in catalytic applications. We report herein a new simple and eco-friendly strategy to stabilize BiOI nanosheets within CS-hydrogel and their immobilization in catalytic applications. The BiOI nanosheets were firstly prepared through a solvothermal process and then stabilized within CS-hydrogel beads through a simple co-precipitation in alkaline media. The prepared BiOI nanosheets and BiOI@CSb composite were fully characterized by X-ray diffraction, XPS, SEM, EDS, TGA, FTIR, Raman, and Zeta-potential. Photodegradation experiments of methyl orange (MO) over BiOI@CSb in aqueous media exhibit a high performance with a removal efficiency of up to 97 % within 120 min. Likewise, the BiOI@CSb composite demonstrated a high reduction efficiency toward 4-nitrophenol (4-NP) reduction up total conversion within only 3 min using NaBH as a reducing agent. More importantly, the BiOI@CSb composite could easily be recovered from the reaction mixture by simple filtration with no significant loss of their activity and stability even after 7 and 10 successive uses for both MO and 4-NP, respectively. Thus, this contribution may offer a great opportunity for the use of CS bismuth-based materials in catalytic and photocatalytic wastewater treatment.

摘要

壳聚糖(CS)因其丰富性、生态友好性和可再生性,作为催化剂载体受到了广泛关注,使其成为催化应用中极具可持续性的选择。我们在此报告一种新的简单且环保的策略,用于在CS水凝胶中稳定BiOI纳米片并将其固定在催化应用中。首先通过溶剂热法制备BiOI纳米片,然后通过在碱性介质中的简单共沉淀将其稳定在CS水凝胶珠中。通过X射线衍射、XPS、SEM、EDS、TGA、FTIR、拉曼和Zeta电位对制备的BiOI纳米片和BiOI@CSb复合材料进行了全面表征。在水介质中,BiOI@CSb对甲基橙(MO)的光降解实验表现出高性能,在120分钟内去除效率高达97%。同样,使用NaBH作为还原剂,BiOI@CSb复合材料在仅3分钟内对4-硝基苯酚(4-NP)的还原表现出高还原效率,直至完全转化。更重要的是,通过简单过滤可以轻松地从反应混合物中回收BiOI@CSb复合材料,即使分别对MO和4-NP连续使用7次和10次后,其活性和稳定性也没有明显损失。因此,这一贡献可能为CS基铋材料在催化和光催化废水处理中的应用提供一个很好的机会。

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