首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Self-Assembly of Gold Nanoparticles with Oppositely Charged, Long, Linear Chains of Periodic Copolymers
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Self-Assembly of Gold Nanoparticles with Oppositely Charged, Long, Linear Chains of Periodic Copolymers

机译:金纳米颗粒的自组装,具有相反电荷,长,线性链的周期性共聚物

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摘要

We studied the assembly of nanoparticles (NPs) with oppositely charged linear and periodic copolymers (CPs), alternating ionic and polar sequences, in the dilute range of polymer concentration. For the first time, we considered CPs displaying a contour length much higher than the gold NP (AuNP) perimeter. We assumed that such CPs will enable the collection of a finite number of NPs into linear nanostructures with a gain of colloidal stability and a better structural control compared to electrostatic complexes obtained with homopolyelectrolytes. As a case study, we synthesized anionic AuNPs and CPs consisting of alternated cationic poly-L-lysine (PLL) blocks and polar sequences of poly(ethylene glycol) (PEG). We showed that complexation of AuNPs with CPs is quite similar to that observed with homo PLL. In that respect, finite size nanometric clusters, of less than 30 NPs, are formed outside the electroneutrality domain and a fast phase separation occurs at the electroneutrality. Nevertheless, the presence of PEG blocks allowed us to highlight some specific effects. First, the global charge of the positively charged clusters was found to be always lower for CP-based clusters than for homo PLL with a dependence of the charge with the number and the mass of the PEG blocks. Second, in spite of this effect which should have promoted the formation of a dense structure, the fractal dimension characterizing the structure of the clusters in bulk was found to be always below 1.8. Finally, we showed that PEG blocks influence the interparticle distance by disfavoring plasmon delocalization when the clusters are dispersed in water and collapse around the NPs when the clusters are deposited on the substrate.
机译:我们在稀释的聚合物浓度的稀释范围内研究了纳米颗粒(NPS)的组装,其具有相反的带电的线性和周期性共聚物(CPS),交替离子和极性序列。我们首次考虑了CPS,显示器长度高于金NP(AUNP)周长。我们假设这种CPS将使有限数量的NPS集合成具有胶体稳定性的增益的线性纳米结构,与均多电解质获得的静电复合物相比具有更好的结构控制。作为一个案例研究,我们合成了阴离子AUNP和CPS,包括交替的阳离子聚-L-赖氨酸(PLL)嵌段和聚(乙二醇)(PEG)的极性序列。我们表明,与CPS的剖腹产具有与Homo PLL观察到的综合性。在这方面,在电链域外形成小于30 nps的有限尺寸的纳米簇,并且在电力致动力下发生快速相分离。然而,PEG块的存在使我们能够突出一些特定的效果。首先,发现积极带电簇的全球电荷总是降低CP的簇,而不是同性无体PLL,其依赖于电荷的数量和PEG块的质量。其次,尽管这种效果应该促进了致密结构的形成,但表征块状簇结构的分形尺寸始终低于1.8。最后,我们展示PEG块通过在簇在水中分散在水中并且当簇沉积在基板上时围绕NPS塌陷时,PEG块通过不适当的等离子体分散来影响颗粒距离。

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