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Silver and palladium nanoparticles produced using a plant extract as reducing agent, stabilized with an ionic liquid: sizing by X-ray powder diffraction and dynamic light scattering

机译:使用植物提取物作为还原剂生产的银和钯纳米粒子,并用离子液体稳定:通过X射线粉末衍射和动态光散射进行上浆

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Powder X-ray diffraction and dynamic light scattering (DLS) sizing of silver (Ag) and palladium (Pd) nanoparticles produced within aqueous plant extract and the effect of introducing of an ionic liquid are reported in this paper. The simple and novel synthesis of silver and palladium nanoparticles using the reducing power ofPersea americana(Pa) bark extract is reported and the effect of adding 1-ethyl-3-methylimidazolium tosylate [EMIm][Tos] is described. Detailed powder X-ray interpretation allowed determination of the crystalline grain sizes of 16±4nm for Ag–Pa, 13±2nm for Ag–Pa[EMIm][Tos], 16±3nm for Pd–Pa and 9±1nm for Pd–Pa[EMIm][Tos] according to the Scherrer peak analysis. A size contraction occurs when moving from plant extract alone to plant extract/ionic liquid. These grain sizes are 9nm for Ag–Pa and for 9nm Ag–Pa[EMIm][Tos], 15nm for Pd–Pa and 7nm for Pd–Pa[EMIm][Tos] when the Williamson–Hall plot intercept is used. Modal hydrodynamic sizes were determined by DLS as 57nm for Ag–Pa, 72nm for Ag–Pa[EMIm][Tos], 390nm for Pd–Pa and 98nm for Pd–Pa[EMIm][Tos] providing indications on how the particles behave in solution. Intrinsic stresses of 0.177GPa for Ag–Pa, 0.219GPa for Ag–Pa[EMIm][Tos], 0.382GPa for Pd–Pa and 0.190GPa for Pd–Pa[EMIm][Tos] and dislocation densities of (6±3)×10?3nm?2for Ag–Pa, (9±3)×10?3nm?2for Ag–Pa[EMIm][Tos], (5±2)×10?3nm?2for Pd–Pa and (16±4)×10?3nm?2for Pd–Pa[EMIm][Tos] have been obtained.
机译:本文报道了在植物水提取物中产生的银(Ag)和钯(Pd)纳米粒子的粉末X射线衍射和动态光散射(DLS)尺寸,以及离子液体的引入效果。报道了利用Persea americana(Pa)树皮提取物的还原能力简单而新颖地合成银和钯纳米颗粒的方法,并描述了添加1-乙基-3-甲基咪唑鎓甲苯磺酸盐[EMIm] [Tos]的效果。详细的粉末X射线解释可以确定Ag-Pa为16±4nm,Ag-Pa [EMIm] [Tos]为13±2nm,Pd-Pa为16±3nm和Pd-为9±1nm的晶粒度。 Pa [EMIm] [Tos]根据Scherrer峰分析。从单独的植物提取物转移到植物提取物/离子液体时,会发生尺寸收缩。当使用Williamson-Hall曲线截距时,这些晶粒尺寸对于Ag-Pa为9nm,对于Ag-Pa [EMIm] [Tos]为9nm,对于Pd-Pa为15nm,对于Pd-Pa [EMIm] [Tos]为7nm。 DLS测定的模态流体力学尺寸为:Ag-Pa为57nm,Ag-Pa [EMIm] [Tos]为72nm,Pd-Pa为390nm,Pd-Pa [EMIm] [Tos]为98nm,从而提供了颗粒行为的指示。在解决方案中。 Ag-Pa为0.177GPa,Ag-Pa [EMIm] [Tos]为0.219GPa,Pd-Pa为0.382GPa,Pd-Pa [EMIm] [Tos]为0.190GPa,位错密度为(6±3) )×10?3nm?2(对于Ag-Pa,(9±3)×10?3nm?2对于Ag-Pa [EMIm] [Tos],(5±2)×10?3nm?2对于Pd–Pa和(16± 4)获得了Pd-Pa [EMIm] [Tos]的×10?3nm?2。

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