Green synthesis of zinc oxide nanoparticles using Vernonia cinerea leaf extract and evaluation as nano-nutrient on the growth and development of tomato seedling

Zeba Azim , N.B. Singh , Shubhra Khare , Ajey Singh , Nimisha Amist , Niharika , Ravi Kumar Yadav
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引用次数: 11

Abstract

In the present study, the leaves of Vernonia cinerea were utilized as an efficacious bio-reductant, stabilizing, and capping agent for biological/green synthesis of zinc oxide nanoparticles (ZnO NPs). The nanoparticle (NPs) characteristics show that phytocapped ZnO NPs are in the nano-size range (1–100 nm). Fourier transforms infrared studies reveal the outline of the synthesis mechanism for ZnO NPs whereas X-ray diffraction analysis approved the crystalline structure of ZnO-NPs. Energy-dispersive X-ray analysis defined the pureness and chemical constituent of ZnO-NPs. The microscopic analysis of ZnO NPs confirmed the spherical and non-agglomeration attributes of nano-particles. The commenced study reveals the outcome of phytocapped ZnO NPs on the growth of tomato seedlings. Results showed ZnO-NPs boost the morphological as well as physiological characteristics as compared to the bulk Zn. At lower doses, ZnO NPs give better results as compared to higher doses. The higher doses showed obstruction in the growth and development thereby recommending the 50 mg/L−1of ZnO NPs exposed to tomato seedlings is beneficial.

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利用水桐叶提取物绿色合成氧化锌纳米颗粒及其作为纳米营养物对番茄幼苗生长发育的影响
在本研究中,利用水蛭叶作为生物/绿色合成氧化锌纳米粒子(ZnO NPs)的有效生物还原剂、稳定剂和封盖剂。纳米颗粒(NPs)特征表明,植顶ZnO NPs的纳米尺寸范围为1 ~ 100 nm。傅里叶变换红外研究揭示了ZnO NPs的合成机理,x射线衍射分析证实了ZnO-NPs的晶体结构。能量色散x射线分析确定了ZnO-NPs的纯度和化学成分。对ZnO纳米粒子的微观分析证实了其球形和非团聚性质。开始的研究揭示了植顶氧化锌NPs对番茄幼苗生长的影响。结果表明,ZnO-NPs与体锌相比,提高了植物的形态和生理特性。在较低剂量下,ZnO NPs与较高剂量相比具有更好的效果。较高剂量的氧化锌NPs对番茄幼苗生长发育有阻碍作用,因此建议50mg /L−1的氧化锌NPs对番茄幼苗有益。
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