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首页> 外文期刊>Radiation Physics and Chemistry >One-step synthesis of poly(ethylene oxide)/gold nanocomposite hydrogels and suspensions using gamma-irradiation
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One-step synthesis of poly(ethylene oxide)/gold nanocomposite hydrogels and suspensions using gamma-irradiation

机译:使用γ-辐射聚(环氧乙烷)/金纳米复合水凝胶和悬浮液的一步合成

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Poly(ethylene oxide) (PEO)/gold nanocomposite hydrogels and suspensions were synthesized by gamma-irradiation of PEO and Au3+ aqueous solutions to a dose of 50 kGy under inert atmosphere and without addition of 2-propanol, depending on the initial concentration of Au3+ and pH of solutions. The pH of the initial solutions had the major influence on the formation of PEO/Au nanocomposite hydrogels vs. suspensions. The pH and Au3+ initial concentration determined the AuNPs size and suspension stability, as determined by UV-Vis spectroscopy. The neutral pH favored the formation of stable suspensions with the smallest gold nanoparticles (AuNPs), whereas unstable suspensions and bigger nanoparticles (NPs) were obtained at acidic pH and by increasing Au3+ initial concentration. On irradiation at alkaline conditions PEO/AuNPs hydrogels were produced in one-pot synthesis method - by simultaneous crosslinking of PEO chains and reduction/synthesis of Au nanoparticles. Scanning electron microscopy of nanocomposite gels revealed the gold nanoparticles embedded in PEO matrix with homogenous distribution. The thermal and viscoelastic properties of PEO/AuNPs gels depended on the initial Au3+ concentration, that is on amount of AuNPs synthesized inside gels. Lower particle content resulted in gels with generally higher melting and crystallization temperatures as well as higher storage moduli, yield points and flow points than pure PEO gel. The optimal amount were up to 1 wt% Au for obtaining stronger gels, whereas higher amount of NPs, because of NPs agglomeration, lead to deterioration of gel properties and significant weakening of gel.
机译:通过γ和Au3 +水溶液在惰性气氛下γ和Au3 +水溶液的γ-辐射合成聚(将氧化物)/金纳米复合水凝胶和悬浮液在惰性气氛下的50kGy的剂量上合成,并且在不加入2-丙醇的情况下,取决于Au3 +的初始浓度和解决方案的pH。初始溶液的pH对PEO / Au纳米复合水凝胶与悬浮液形成的主要影响。通过UV-Vis光谱法测定pH和Au3 +初始浓度确定AUNPS尺寸和悬浮稳定性。中性pH有利于形成具有最小金纳米颗粒(AUNP)的稳定悬浮液,而在酸性pH下获得不稳定的悬浮液和更大的纳米颗粒(NPS)并通过增加Au3 +初始浓度。在一盆合成方法中产生碱性条件的辐照,通过同时交联,通过对PEO链及其纳米颗粒的减少/合成的同时交联。纳米复合凝胶的扫描电子显微镜显示均匀分布嵌入PEO基质中的金纳米颗粒。 PEO / AUNP凝胶的热和粘弹性特性依赖于初始AU3 +浓度,即在凝胶内合成的AUNP的量。下颗粒含量导致凝胶通常较高的熔融和结晶温度以及比纯PEO凝胶更高的储存模量,屈服点和流量。获得较强的凝胶最佳量最高可达1wt%au,而由于NPS附聚,因此较高的NPS,导致凝胶性能的劣化和凝胶的显着弱化。

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