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Polyamidoamine Dendrimers as Crosslinkers for Efficient Electron Transfer between Redox Probes onto Magnetic Nanoparticles

机译:聚酰胺类树突聚合物作为交联,用于在氧化还原探针之间有效的电子转移到磁性纳米颗粒上

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摘要

The efficient conjugation of ferrocenecarboxylic acid (Fc), a usual electroactive probe, onto COOH-modified magnetic nanoparticles (NPs) is reported. Amine crosslinkers were used to couple COOH groups from NPs and from Fc. The coupling efficiencies using different generations of polyamidoamine (PAMAM) dendrimer and ethylenediamine (EDA) were compared through zeta potential measurements, square-wave voltammetry (SWV) and NH2 titration. Highest PAMAM generations led to NH2-modified NPs with increased zeta potential and NH2 density compared to lowest ones. Moreover, no aggregation was observed after crosslinker grafting. SWV was applied to characterize Fc-modified NPs. PAMAM generations 0-3 improved the electrochemical signal in comparison to EDA. However, increasing PAMAM generations led to NPs aggregation. Quantitative results supported the fact that PAMAM generation 0 was the best compromise for large electrochemical signal without NPs aggregation.
机译:报道了通常的电活性探针在COOH修饰的磁性纳米颗粒(NPS)上的有效结合(FC)。 胺交联剂用于近NP和FC的COOH组。 通过ZETA潜在测量值,方波伏安法(SWV)和NH2滴定,比较了使用不同世代的聚胺(PAMAM)树枝状胺(EDA)的偶联效率。 最高的PAMAM世代导致NH2修饰的NP具有增加的Zeta电位和NH2密度的增加。 此外,交联后未观察到聚集。 SWV用于表征FC修饰的NP。 与EDA相比,PAMAM世代0-3改善了电化学信号。 但是,增加的PAMAM世代导致NPS聚集。 定量结果支持以下事实:PAMAM生成0是没有NP聚集的大型电化学信号的最佳折衷。

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