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Synthesis of fast response crosslinked PVA-g-NIPAAm nanohydrogels by very low radiation dose in dilute aqueous solution

机译:在稀水溶液中以极低的辐射剂量合成快速响应的交联PVA-g-NIPAAm纳米水凝胶

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Nanohydrogels of polyvinyl alcohol)-g-N-isopropylacrylamide (PVA-g-NIPAAm) are synthesized by PVA and NIPAAm dilute aqueous solution using much less radiation dose of 1-20 Gy via intramolecular crosslinking at ambient temperature. The radiation synthesis of nanohydrogels is performed in the presence of tetrakis (hydroxymethyl) phosphonium chloride (THPC) due to its rapid oxygen scavenging abilities and hydrogen peroxide (H2O2) as a source of hydroxyl radicals. The effect of radiation dose, feed composition ratio of PVA and H2O2 is investigated on swelling properties such as temperature and pH dependence of equilibrium swelling ratio as well as deswelling kinetics. Experimental data exhibit high equilibrium swelling ratio and fast response time for the synthesized nanohydrogels. The average molecular weight between crosslinks (M_c) and crosslinking density (ρ_x) of the obtained nanohydrogels are calculated from swelling data as a function of radiation dose, H2O2 and PVA amount. Fourier transform infrared spectroscopy (FT-IR), elemental analysis of nitrogen content and thermogravimetric analysis (TGA) are used to confirm the grafting reaction. Lower critical solution temperature (LCST) is measured around 33 °C by differential scanning calorimetry (DSG) for PVA-g-NIPAAm nanohydrogels. Dynamic light scattering (DLS) data demonstrate that the increase of radiation dose leads to the decreasing in dimension of nanohydrogels. Also, rheological studies are confirmed an improvement in the mechanical properties of the nanohydrogels with increasing the radiation dose. A cytotoxicity study exhibits a good biocompatibility for the obtained nanohydrogels. The prepared nanohydrogels show fast swelling/deswelling behavior, high swelling ratio, dual sensitivity and good cytocompatibility, which may find potential applications as biomaterial.
机译:聚乙烯醇-g-N-异丙基丙烯酰胺(PVA-g-NIPAAm)的纳米水凝胶是由PVA和NIPAAm稀水溶液通过较少的1-20 Gy辐射剂量通过室温下的分子内交联合成的。纳米水凝胶的辐射合成是在四(羟甲基)phospho氯化物(THPC)的存在下进行的,因为它具有快速的除氧能力和过氧化氢(H2O2)作为羟基自由基的来源。研究了辐照剂量,PVA和H2O2的进料组成比对溶胀性能的影响,例如温度和pH对平衡溶胀率的依赖性以及溶胀动力学。实验数据显示出合成纳米水凝胶的高平衡溶胀比和快速响应时间。根据溶胀数据根据辐射剂量,H2O2和PVA量计算所得纳米水凝胶的交联平均分子量(M_c)和交联密度(ρ_x)。傅里叶变换红外光谱(FT-IR),氮含量的元素分析和热重分析(TGA)用于确认接枝反应。较低的临界溶液温度(LCST)通过差示扫描量热法(DSG)在PVA-g-NIPAAm纳米水凝胶中进行测量。动态光散射(DLS)数据表明,辐射剂量的增加导致纳米水凝胶尺寸的减小。同样,流变学研究证实,随着辐射剂量的增加,纳米水凝胶的机械性能得到改善。细胞毒性研究显示出所获得的纳米水凝胶具有良好的生物相容性。制备的纳米水凝胶具有快速的溶胀/溶胀性能,高的溶胀率,双重敏感性和良好的细胞相容性,有望成为生物材料的潜在应用。

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