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Double-responsive polyampholyte as a nanoparticle stabilizer: application to reversible dispersion of gold nanoparticles

机译:双响应型两性电解质作为纳米颗粒稳定剂:在金纳米颗粒可逆分散中的应用

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摘要

Water-soluble and durable Au nanoclusters, smaller than 4 nm with a narrow size distribution, were supported on a pH- and solvent-responsive water-soluble polyampholyte (SPES). Such synthesized Au@SPES hybrids possessed clear pH- and solvent-sensitive properties, and exhibited precipitation behaviors in response to pH and solvent changes in aqueous solution. Furthermore, the recycled catalyst could be redissolved in water for reuse via simple procedures based on the pH-sensitivity of the polyampholyte. By employing such catalysts, aerobic oxidation of alcohols should be able to be carried out in a homogeneous manner and may thus give rise to similar catalytic activities and selectivities as the homogeneous parent system. The phase separation and sensitivity of the SPES-stabilizing Au nanoclusters permitted a facile separation of the clusters from the reaction mixture without any negative aggregation.
机译:水溶性和耐用的Au纳米簇(小于4 nm,尺寸分布窄)被支撑在pH和溶剂响应型水溶性两性电解质(SPES)上。这种合成的Au @ SPES杂化物具有清晰的pH和溶剂敏感性,并表现出响应水溶液中pH和溶剂变化的沉淀行为。此外,基于聚两性电解质的pH敏感性,可通过简单的程序将再循环的催化剂重新溶解在水中以再利用。通过使用这样的催化剂,醇的需氧氧化应该能够以均相方式进行,并且因此可以产生与均相母体系统相似的催化活性和选择性。稳定SPES的Au纳米团簇的相分离和灵敏性使得簇可以轻松地从反应混合物中分离出来,而没有任何负聚集。

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