Nanobiotechnology Laboratory, Department of Biotechnology, Bannari Amman Institute of Technology, Sathyamangalam, Tamil Nadu, India.
Botany and Microbiology Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia.
Chemosphere. 2022 Sep;302:134802. doi: 10.1016/j.chemosphere.2022.134802. Epub 2022 Apr 30.
In account of environmental remediation, an ideal photocatalyst was fabricated for the effective treatment of water systems. Herein, dual heterojunctions framed CuWO/BiWO/MnS nanocomposite (NCs) was synthesized via simple co-precipitation method followed by ultra-sonicated assisted route. The prepared NCs were investigated its photocatalytic degradation performance using para-chlorophenol (4-CP) and reduction of chromium VI (Cr (VI)) under visible light irradiation. The photocatalyst were characterized by various analytical techniques including XRD, HR-TEM, XPS, UV-vis DRS, FE-SEM, EIS, PL, ESR, Raman and N adsorption and desorption studies. The excellent photodegradation of 4-CP was observed within 180 min by the NCs. Similarly, the Cr (VI) reduction was about 97% within 140 min. The effect of pH and influence of different dosage of NCs and 4-CP on the photodegradation efficiency was investigated. The reusability and stability of the NCs was examined over 6 consecutive runs where the XRD and XPS confirm the structural stability of the prepared NCs. The scavenging experiment were carried out to elucidate the mechanism and the active species involved were O• and OH• radicals. The TOC analysis affirmed the complete mineralization of the prepared NCs. The ecotoxicity analysis was carried out to determine the toxicity effect of intermediates using ECOSAR software and the end product toxicity was also evaluated against E. coli and S. epidermis. The end product toxicity study also confirmed that the degraded product was less toxic compared to parent compound. Further, the genotoxicity study was done to understand the environmental impact using allium cepa and results confirms that there are no causes of cytotoxicity & genotoxicity by the prepared NCs. Therefore, the prepared NCs can be economical, efficient with excellent photocatalytic performance and environment friendly.
考虑到环境修复,我们制备了一种理想的光催化剂,用于有效处理水系统。在此,通过简单的共沉淀法,然后通过超声辅助法合成了双异质结框架 CuWO/BiWO/MnS 纳米复合材料 (NCs)。通过使用对氯苯酚 (4-CP) 和可见光照射下的六价铬 (Cr (VI)) 的还原来研究所制备的 NCs 的光催化降解性能。通过各种分析技术对催化剂进行了表征,包括 XRD、HR-TEM、XPS、UV-vis DRS、FE-SEM、EIS、PL、ESR、Raman 和 N 吸附和解吸研究。NCs 在 180 分钟内观察到对 4-CP 的优异光降解。同样,Cr (VI) 的还原在 140 分钟内约为 97%。研究了 pH 值的影响以及 NCs 和 4-CP 的不同剂量对光降解效率的影响。在 6 个连续运行中测试了 NCs 的可重复使用性和稳定性,其中 XRD 和 XPS 证实了所制备的 NCs 的结构稳定性。进行了清除实验以阐明涉及的机制和活性物质是 O•和 OH•自由基。TOC 分析证实了所制备的 NCs 的完全矿化。进行了生态毒性分析,使用 ECOSAR 软件确定中间体的毒性作用,并评估了最终产物对 E. coli 和 S. epidermis 的毒性。最终产物毒性研究还证实,与母体化合物相比,降解产物的毒性较小。此外,进行了遗传毒性研究,使用洋葱根尖来了解环境影响,结果证实所制备的 NCs 没有引起细胞毒性和遗传毒性的原因。因此,所制备的 NCs 具有经济、高效、出色的光催化性能和环境友好性。