Modi Shreya, Yadav Virendra Kumar, Choudhary Nisha, Alswieleh Abdullah M, Sharma Anish Kumar, Bhardwaj Abhishek Kumar, Khan Samreen Heena, Yadav Krishna Kumar, Cheon Ji-Kwang, Jeon Byong-Hun
Department of Microbiology, Shri Sarvajanik Science College, Mehsana 384001, India.
Department of Microbiology, School of Sciences, P P Savani University, Surat 394125, India.
Materials (Basel). 2022 Mar 24;15(7):2393. doi: 10.3390/ma15072393.
Nanoparticles and nanomaterials have gained a huge amount of attention in the last decade due to their unique and remarkable properties. Metallic nanoparticles like zinc oxide nanoparticles (ZnONPs) have been used very widely as plant nutrients and in wastewater treatment. Here, ZnONPs were synthesized by using onion peel and characterized by various sophisticated instruments like Fourier transform infrared spectroscopy (FTIR), dynamic light scattering (DLS), and field emission scanning electron microscopes (FESEM). FTIR confirmed ZnONPs synthesis due to the formation of the band in the region of 400-800 cm, while FESEM confirmed the spherical shape of the particles whose size varies in the range of 20-80 nm. FTIR revealed several bands from 1000-1800 cm which indicates the capping by the organic molecules on the ZnONPs, which came from onion peel. It also has carbonyl and hydroxyl groups, due to the organic molecules present in the peel waste. The average hydrodynamic size of ZnONPs was 500 nm as confirmed by DLS. The synthesized ZnONPs were then used as a plant nutrient where their effect was evaluated on the growth of (mung bean) and (wheat seeds). The results revealed that the germination and seedling of mung and wheat seeds with ZnONPs were grown better than the control seed. However, seeds of mung and wheat with ZnONPs at median concentration exposure showed an enhancement in percent germination, root, and shoot length in comparison to control. Thus, the effect of ZnONPs has been proved as a nano-based nutrient source for agricultural purposes.
在过去十年中,纳米颗粒和纳米材料因其独特而非凡的性质而备受关注。像氧化锌纳米颗粒(ZnONPs)这样的金属纳米颗粒已被广泛用作植物养分和用于废水处理。在此,通过使用洋葱皮合成了ZnONPs,并通过傅里叶变换红外光谱(FTIR)、动态光散射(DLS)和场发射扫描电子显微镜(FESEM)等各种精密仪器对其进行了表征。FTIR由于在400 - 800 cm区域形成谱带而证实了ZnONPs的合成,而FESEM证实了颗粒的球形形状,其尺寸在20 - 80 nm范围内变化。FTIR在1000 - 1800 cm处显示了几个谱带,这表明来自洋葱皮的有机分子对ZnONPs进行了包覆。由于果皮废料中存在有机分子,它还具有羰基和羟基。DLS证实ZnONPs的平均流体动力学尺寸为500 nm。然后将合成的ZnONPs用作植物养分,并评估其对绿豆和小麦种子生长的影响。结果表明,用ZnONPs处理的绿豆和小麦种子的发芽和幼苗生长情况优于对照种子。然而,与对照相比,中等浓度暴露下的绿豆和小麦种子在发芽率、根长和茎长方面有所提高。因此,已证明ZnONPs作为一种纳米基营养源可用于农业目的。