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首页> 外文期刊>Journal of Molecular Liquids >Biogenic silver nanoparticles from Trachyspermum ammi (Ajwain) seeds extract for catalytic reduction of p-nitrophenol to p-aminophenol in excess of NaBH4
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Biogenic silver nanoparticles from Trachyspermum ammi (Ajwain) seeds extract for catalytic reduction of p-nitrophenol to p-aminophenol in excess of NaBH4

机译:来自颅糊精的生物酰胺银纳米粒子(Ajwain)种子提取物用于催化还原对氨基酚的p-氨基苯酚超过NaBH4

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摘要

Plasmonic silver nanoparticles (AgNPs, size = 3-50 nm) were synthesized by biogenic reduction of aqueous AgNO3 using Trachyspermum ammi (TA, Ajwain) seeds extract. Increase in concentration of TA, accelerated the reduction rate of Ag+ and affected the AgNPs particle size. Pronounce effect of the AgNP's aging (24, 48 and 72 h) on particle concentration/size and their corresponding catalytic activity, was exhibited by the systems. Surface plasmonic resonance band centered between 420 and 430 nin wavelength, recognized as first exitonic peak of UV-vis absorption spectra of Ag NPs, was used to estimate the particle size (10-30 nm) of Ag NPs, which was consistent with the particle size observed with the FESEM (5-20 nm) and XRD observations (12.74 nm). XRD analysis also indicated that the silver nanoparticles were crystallized in the cubic crystal pattern. However, some cubic/rod like patterns grown along the 111 plane, was also observed by FESEM and HRTEM. ATR (Attenuated total reflectance) profile of aging of TA supported Ag NPs, exhibited the decrease in intensity of 3394, 1716 and 1618 cm(-1) peaks with respect to the pristine TA extract sample. That reflects the increase in particle concentration with time (24-48 h). These peaks correspond to the O-H group, carbonyl group and C=C stretching along with C-O-C and C-N stretching in TA-AgNPs aggregates. ATR and IR results suggested the presence of the reducing agent/phytochemicals (nicotinic acid, thymol, sugars, proteins, saponin, etc) incorporated NPs. Impedance study revealed that the rate of charge transfer in TA-Ag NPs aggregates is inversely proportional to the concentration of TA that confirms the stability of the Ag NPs in water. These biogenic Ag NPs are also characterized using transmission electron microscopy (TEM) and their corresponding energy dispersive X-ray analysis (EDX), electrochemical impedance spectroscopy (EIS), cyclic voltammetry (CV) studies, etc. On the basis of the above observations and optoelectronic characteristics, the most probable mechanism of biogenesis of the stable Ag NPs, is suggested. As-synthesized 24, 48 and 72 h aged Ag NPs, were tested for their catalytic reduction activity towards the conversion of p-nitro phenol to p-aminophenol in excess of NaBH4. 48 h-aged Ag NPs show highest catalytic activity for conversion of p-nitrophenol to p-aminophenol in excess of NaBH4 in terms of rate (r = 034539 min-1) with complete reduction time 12 min. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过使用TrachySpermum Ammi(Ta,Ajwain)种子提取物通过生物学还原通过生物学还原来合成等离子体银纳米颗粒(AgNP,尺寸= 3-50nm)。 TA浓度的增加,加速了Ag +的减少率,并影响了AgNPS粒度。通过系统发出AgNP老化(24,4,4,8和72h)对颗粒浓度/尺寸及其相应的催化活性的效果。以420和430纳波长为中心的表面等离子体谐振带,识别为Ag NPS的UV-Vis吸收光谱的第一次Extonic峰值,用于估计与颗粒一致的Ag NPS的粒度(10-30nm)用FESEM(5-20​​nm)和XRD观察(12.74nm)观察到的尺寸。 XRD分析还表明,银纳米颗粒以立方晶体图案结晶。然而,还通过FeSem和HRTEM观察到沿111平面生长的一些立方/杆状图案。 ATR(衰减的总反射率)TA支持Ag NPS的老化曲线,表现出相对于原始Ta提取物样品的3394,1716和1618cm(-1)峰的强度降低。这反映了随时间(24-48小时)颗粒浓度的增加。这些峰对应于O-H组,羰基和C = C与在Ta-agnps聚集体中的C-O-C和C-N拉伸。 ATR和IR结果表明还原剂/植物化学物质(烟酸,百里香醇,糖,蛋白质,皂苷等)掺入NPS。阻抗研究表明,TA-Ag NPS聚集体中的电荷转移速率与鉴定Ag NPS在水中的稳定性的TA浓度成反比。这些生物学Ag nps的特征还在于使用透射电子显微镜(TEM)及其相应的能量分散X射线分析(EDX),电化学阻抗光谱(EIS),循环伏安法(CV)研究等。基于上述观察和光电特征,提出了稳定Ag NPS的最可能的生物发生机制。在合成的24,48和72小时的Ag NPS中被测试用于将其转化为p-硝基苯酚的催化还原活性超过NaBH4。 48年代Ag NPS显示出最高催化活性,用于将p-硝基苯酚转化为在速率(r = 034539 min-1)中超过NaBH4的催化活性,并在12分钟内完成减少时间。 (c)2017年Elsevier B.V.保留所有权利。

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