Department of Chemistry, University of Agriculture, Faisalabad, 38040, Pakistan.
Department of Chemistry, G. C. University, Faisalabad, 38040, Pakistan.
Sci Rep. 2023 Jun 12;13(1):9497. doi: 10.1038/s41598-023-36486-6.
The non-biodegradable nature of waste emitted from the agriculture and industrial sector contaminates freshwater reserves. Fabrication of highly effective and low-cost heterogeneous photocatalysts is crucial for sustainable wastewater treatment. The present research study aims to construct a novel photocatalyst using a facile ultrasonication-assisted hydrothermal method. Metal sulphides and doped carbon support materials work well to fabricate hybrid sunlight active systems that efficiently harness green energy and are eco-friendly. Boron-doped graphene oxide-supported copper sulphide nanocomposite was synthesized hydrothermally and was assessed for sunlight-assisted photocatalytic degradation of methylene blue dye. BGO/CuS was characterized through various techniques such as SEM-EDS, XRD, XPS, FTIR, BET, PL, and UV-Vis DRS spectroscopy. The bandgap of BGO-CuS was found to be 2.51 eV as evaluated through the tauc plot method. The enhanced dye degradation was obtained at optimum conditions of pH = 8, catalyst concentration (20 mg/100 mL for BGO-CuS), oxidant dose (10 mM for BGO-CuS), and optimum time of irradiation was 60 min. The novel boron-doped nanocomposite effectively degraded methylene blue up to 95% under sunlight. Holes and hydroxyl radicals were the key reactive species. Response surface methodology was used to analyze the interaction among several interacting parameters to remove dye methylene blue effectively.
农业和工业部门排放的不可生物降解废物污染了淡水资源。制造高效、低成本的多相光催化剂对于可持续的废水处理至关重要。本研究旨在通过简便的超声辅助水热法构建一种新型光催化剂。金属硫化物和掺杂碳支持材料非常适合制造高效利用绿色能源且环保的混合阳光活性系统。采用水热法合成了硼掺杂氧化石墨烯负载的硫化铜纳米复合材料,并评估了其在太阳光辅助下光催化降解亚甲基蓝染料的性能。通过 SEM-EDS、XRD、XPS、FTIR、BET、PL 和 UV-Vis DRS 光谱等多种技术对 BGO/CuS 进行了表征。通过 tauc 图法评估,BGO-CuS 的带隙为 2.51 eV。在最佳条件下(pH = 8、催化剂浓度(BGO-CuS 为 20 mg/100 mL)、氧化剂剂量(BGO-CuS 为 10 mM)和最佳辐照时间为 60 min),可获得增强的染料降解效果。新型硼掺杂纳米复合材料在阳光下有效降解亚甲基蓝高达 95%。空穴和羟基自由基是关键的活性物质。响应面法用于分析有效去除亚甲基蓝染料的几个相互作用参数之间的相互作用。