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Poly(N-vinylpyrrolidone) Protected Gold and Silver Nanoparticles: Synthesis, Characterization and Catalytic Properties

机译:Poly(N-乙烯基吡咯烷酮)保护金银纳米粒子:合成,表征和催化性能

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Gold (AuNPs) and silver (AgNPs) nanoparticles protected by poly(Nvinylpyrrolidone) (PVP) and b-Cyclodextrine (b-CD) were prepared by Turkevich method and “one-pot” synthetic protocol. Absorption spectra, size, morphology, structure and thermal properties of AuNPs and AgNPs were studied by UV-Vis spectroscopy, DLS, SEM, TEM and DSC. According to DLS measurement the average size of AuNPs stabilized by PVP in aqueous solution is varied from 10 to 25 nm while the same parameter of AgNPs stabilized by PVP and b-CD was in the range of 7- 25 nm. PVP and b-CD protected AuNPs and AgNPs were deposited on aluminum and zinc oxides by impregnation method. It was found that the amount of AuNPs-PVP deposited onto Al2O3 and ZnO does not exceed 0.07-0.1%. SEM and TEM images reveal that the average size of AuNPs-PVP deposited on the surface of Al2O3 is arranged between 8 and 30 nm and coincides well with DLS measurement. The catalytic activity of polymer-protected AuNPs and AgNPs supported on the surface of Al2O3 and ZnO was evaluated with respect to decomposition of hydrogen peroxide. The optimal conditions for H2O2 decomposition in relation to catalysts amount, concentration of substrate and temperature was found. The rate of H2O2 decomposition in the presence of Al2O3/AuNPs-PVP exhibits an induction period, is dependentupon the molecular weight of PVP and increases in the following order: PVP-350 kD > PVP-40 kD > PVP-10 kD. The H2O2 decomposition rate in the presence of Al2O3/AuNPs-PVP is much higher than that of Al2O3/AgNPs-PVP.
机译:通过TureThiCH方法和“单罐”合成方案制备由聚(Nvinyl吡咯烷酮)(PVP)和B-Cyclodextrine(B-CD)保护的金(AUNP)和银(AGNP)纳米颗粒。通过UV-Vis光谱,DLS,SEM,TEM和DSC研究了AuNP和AgNP的吸收光谱,尺寸,形态,结构和热性质。根据DLS测量,通过PVP在水溶液中稳定的AUNP的平均尺寸从10至25nm变化,而通过PVP和B-CD稳定的AgNP的相同参数在7-25nm的范围内。 PVP和B-CD保护的AUNP和AgNP通过浸渍方法沉积在铝和氧化锌上。发现沉积在Al 2 O 3和ZnO上的AUNPS-PVP的量不超过0.07-0.1%。 SEM和TEM图像显示,Al2O3表面上沉积在Al2O3表面上的平均尺寸布置在8至30nm之间,并用DLS测量吻合良好。相对于过氧化氢的分解,评价聚合物保护的AuNP和ZnO表面的聚合物保护的AuNP和AgNP的催化活性。发现了与催化剂量相对于催化剂量,底物浓度和温度的H 2 O 2分解的最佳条件。在Al2O3 / AuNPS-PVP存在下的H 2 O 2分解率表现出诱导期,是PVP的分子量的依赖性PVP的分子量,并按以下顺序增加:PVP-350KD> PVP-40KD> PVP-10KD。在Al2O3 / AuNPS-PVP存在下的H 2 O 2分解速率远高于Al2O3 / AgNPS-PVP的分解速率。

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