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首页> 外文期刊>RSC Advances >Controlled synthesis of Pd and Pd-Au nanoparticles: effect of organic amine and silanol groups on morphology and polycrystallinity of nanomaterials
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Controlled synthesis of Pd and Pd-Au nanoparticles: effect of organic amine and silanol groups on morphology and polycrystallinity of nanomaterials

机译:Pd和Pd-Au纳米粒子的受控合成:有机胺和硅烷醇基团对纳米材料的形态和多晶性的影响

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The synthesis of palladium (PdNPs) and its bimetallic (Pd-Au/Au-Pd) nanoparticles of controlled nanogeometry, polycrystallinity and functional ability is a challenging task. We report a new process for metal nanoparticles synthesis meeting these requirements that incorporate the specific role of organic amine and silanol functionalities with the following major findings: (1) the concentrations of organic amine control the nanogeometry and functional ability of the nanoparticles; (2) the polycrystallinity of PdNPs tends to decrease as a function of silanol concentration justifying specific interaction of PdNPs and silanol groups whereas AuNPs do not show such interaction; (3) transition in microstructure from hexagonal nanogeometry to circular nanogeometry of palladium nanoparticles (PdNPs) in the presence of a silanol group; (4) initial reduction of palladium ions followed by reduction of gold ions during the synthesis of bimetallic nanoparticles results in negligible interaction of the silanol residue and PdNPs justifying an increase in polycrystallinity whereas simultaneous reduction of the same enable a decrease in polycrystallinity; (5) initial reduction of gold ions causes aggregation of the same forming larger nanoparticles and reveals negligible interaction with silanol content under similar conditions; (6) the size of nanoparticles decreases with an increase in silanol concentration as a function of nanoparticle-silanol interaction. As synthesized PdNPs shows peroxidase mimetic activity as a function of 3-APTMS concentration.
机译:具有受控的纳米几何形状,多晶性和功能能力的钯(PdNPs)及其双金属(Pd-Au / Au-Pd)纳米颗粒的合成是一项艰巨的任务。我们报告了一种满足这些要求的金属纳米颗粒合成新工艺,该工艺结合了有机胺和硅烷醇官能团的特定作用,并具有以下主要发现:(1)有机胺的浓度控制纳米颗粒的纳米几何形状和功能能力; (2)PdNPs的多晶性趋向于随硅烷醇浓度的降低而降低,这证明了PdNPs与硅烷醇基团的特异性相互作用是正当的,而AuNPs则没有这种相互作用; (3)在存在硅烷醇基的情况下,钯纳米颗粒(PdNP)的微观结构从六角形纳米几何形状转变为圆形纳米几何形状; (4)在合成双金属纳米粒子的过程中,钯离子先还原后金离子还原,导致硅烷醇残基与PdNPs的相互作用可忽略不计,证明多晶性增加,而同时还原则使多晶性降低。 (5)金离子的初始还原导致相同离子的聚集,形成较大的纳米粒子,并且在相似条件下与硅烷醇含量的相互作用可忽略不计; (6)纳米粒子的尺寸随硅烷醇浓度的增加而减小,这是纳米粒子与硅烷醇相互作用的函数。合成的PdNPs显示过氧化物酶模拟活性是3-APTMS浓度的函数。

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