Bio fabrication of copper oxide nanoparticles using traditional plants, along with their investigation into biological and environmental applications

Citations

WEB OF SCIENCE

11
Citations

SCOPUS

10

초록

In recent research, the non-toxic and eco-friendly biosynthesis of copper oxide nanoparticles (CuO NPs) using plant extracts from Rhinacanthus nasutus (RN) and Pisonia alba (PA) has emerged as a promising approach for biomedical applications and wastewater treatment. This novel green synthesis method utilizes phytocompounds from plant extracts, which act as natural reducing, capping, and stabilizing agents in the formation of CuO NPs. RN produces N-CuO, PA produces L-CuO, and a combination of the two results in NL-CuO NPs, confirmed by a distinctive peak at 290 nm in ultraviolet-visible (UV) spectroscopy. Furthermore, the synthesis of CuO NPs using single and mixed plant extracts was analyzed through various spectroscopic techniques to assess their formation and properties. The synthesized CuO NPs exhibited strong antibacterial activity against both Gram-negative and Gram-positive bacteria, confirmed through agar well diffusion, due to the interaction of the NPs with bacterial membranes. NL-CuO NPs also demonstrated excellent anti-diabetic and anti-inflammatory properties. Cytotoxicity studies revealed that NL-CuO NPs were minimally toxic at low concentrations. The biosynthesized NL-CuO NPs showed potential for degrading malachite green dye, indicating their applicability in environmental remediation.

키워드

Rhinacanthus nasutus (N)Pisonia alba (L)Green synthesisNL-CuO NPsbiological activ-ity. PhotocatalystGREEN SYNTHESISEXTRACTANTIOXIDANT
제목
Bio fabrication of copper oxide nanoparticles using traditional plants, along with their investigation into biological and environmental applications
저자
Elango, PushpalakshmiRamar, SivagurusundarGurusamy, AnnaduraiMuthukutty, BalamuruganJeganathan, PeriasamySivakumar, Mani
DOI
10.1016/j.colsurfa.2025.136147
발행일
2025-03
유형
Article
저널명
Colloids and Surfaces A: Physicochemical and Engineering Aspects
709