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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Synthesis of pH-responsive shell cross-linked micelles and their use as nanoreactors for the preparation of gold nanoparticles
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Synthesis of pH-responsive shell cross-linked micelles and their use as nanoreactors for the preparation of gold nanoparticles

机译:pH响应壳交联胶束的合成及其作为纳米反应器制备金纳米颗粒的用途

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Poly [(ethylene oxide)-block-glycerol monomethacrylate-block-2-(diethylamino)ethyl methacrylatel (PEO-GMA-DEA) and poly[(ethylene oxide)-block-2-hydroxyethyl methacrylate-block-2-(diethylamino)ethyl methacrylate] (PEO-HEMA-DEA) triblock copolymers were synthesized directly, without recourse to protecting group chemistry, via atom transfer radical polymerization by successive polymerization of GMA (or HEMA) and DEA monomers using a PEO-based macroinitiator. These triblock copolymers dissolved molecularly in aqueous solution at low pH; on addition of NaOH, micellization occurred above pH 7-8 to form three-layer "onionlike"micelles comprising DEA cores, GMA (or HEMA) inner shells, and PEO outer coronas. Selective cross-linking of the GMA (or HEMA) inner shell was successfully achieved by adding divinyl sulfone [DVS] to the alkaline micellar solution at room temperature. Unexpectedly, the PEO-HEMA-DEA triblock proved to be much less reactive toward DVS than the two PEO-GMA-DEA triblocks, and an excess of DVS was required to prepare shell cross-linked (SCL) micelles using the former triblock. The resulting SCL micelles exhibited reversible swelling behavior on varying the solution pH. At low pH, the DEA cores became protonated and hence hydrophilic. The effect of varying the block composition and the [DVS]/[GMA] molar ratio on the structural stability and pH-dependent (de)swelling of the SCL micelles was studied. Longer DEA blocks and lower [DVS]/[GMA] molar ratios led to increased swellability, as expected. Finally, these SCL micelles can serve as nanoreactors for the synthesis of gold nanoparticles. The basic DEA residues in the cores of the SCL micelles were first protonated using HAuCl4, and then the electrostatically bound AuCl4- anions were reduced to nanoparticles of elemental gold using NaBH4 at neutral pH. The gold-loaded SCL micelles exhibited excellent long-term colloid stability. [References: 52]
机译:聚[(环氧乙烷)-嵌段-单甲基丙烯酸甘油酯-嵌段-2-甲基丙烯酸(二乙氨基)乙基酯(PEO-GMA-DEA)和聚[(环氧乙烷)-嵌段-甲基丙烯酸2-羟乙酯-嵌段-2-(二乙基氨基)甲基丙烯酸乙酯](PEO-HEMA-DEA)三嵌段共聚物是通过使用GPE(或HEMA)和DEA单体使用基于PEO的大分子引发剂连续聚合,通过原子转移自由基聚合而直接合成的,而无需借助保护基化学。这些三嵌段共聚物在低pH条件下分子溶解在水溶液中。在添加NaOH时,在pH 7-8以上发生胶束化,形成三层“洋葱状”胶束,其包含DEA核,GMA(或HEMA)内壳和PEO外电晕。通过在室温下向碱性胶束溶液中添加二乙烯基砜[DVS],成功实现了GMA(或HEMA)内壳的选择性交联。出乎意料的是,事实证明,PEO-HEMA-DEA三嵌段对DVS的反应性远低于两个PEO-GMA-DEA三嵌段,并且使用前一种三嵌段制备壳交联(SCL)胶束需要过量的DVS。所得的SCL胶束在改变溶液pH值时表现出可逆的溶胀行为。在低pH值下,DEA核质子化,因此呈亲水性。研究了改变嵌段组成和[DVS] / [GMA]摩尔比对SCL胶束结构稳定性和pH依赖性(去膨胀)的影响。如预期的那样,更长的DEA嵌段和更低的[DVS] / [GMA]摩尔比导致可溶胀性提高。最后,这些SCL胶束可以用作纳米反应器,用于金纳米颗粒的合成。首先使用HAuCl4对SCL胶束核心中的基本DEA残基进行质子化,然后使用NaBH4在中性pH下将静电结合的AuCl4-阴离子还原为元素金的纳米粒子。载金的SCL胶束具有出色的长期胶体稳定性。 [参考:52]

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