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Yolk–Shell‐Structured Aluminum Phenylphosphonate Microspheres with Anionic Core and Cationic Shell

机译:卵黄壳结构的带苯基核的磷酸苯酯铝微球带阴离子核和阳离子壳

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摘要

Spherical materials with yolk‐shell structure have great potential for a wide range of applications. The main advantage of the yolk‐shell geometry is the possibility of introducing different chemical or physical properties within a single particle. Here, a one‐step hydrothermal synthesis route for fabricating amphoteric yolk‐shell structured aluminum phenylphosphonate microspheres using urea as the precipitant is proposed. The resulting microspheres display 3D sphere‐in‐sphere architecture with anionic core and cationic shell. The controllable synthesis of aluminum phosphates with various morphologies is also demonstrated. The anionic core and cationic shell of the aluminum phenylphosphonate microspheres provide docking sites for selective adsorption of both cationic methylene blue and anionic binuclear cobalt phthalocyanine ammonium sulphonate. These new adsorbents can be used for simultaneous capture of both cations and anions from a solution, which make them very attractive for various applications such as environmental remediation of contaminated water.
机译:卵黄壳结构的球形材料具有广阔的应用前景。蛋黄壳几何形状的主要优点是可以在单个颗粒中引入不同的化学或物理性质。在此,提出了一种以尿素为沉淀剂制备两性卵黄壳结构的苯基膦酸铝微球的一步法水热合成路线。所得的微球显示具有阴离子核和阳离子壳的3D球内结构。还证明了可控制的合成具有各种形态的磷酸铝。苯基膦酸铝微球的阴离子核和阳离子壳为阳离子亚甲基蓝和阴离子双核钴酞菁磺酸铵的选择性吸附提供了对接位点。这些新的吸附剂可用于从溶液中同时捕获阳离子和阴离子,这使其对各种应用(如污染水的环境修复)非常有吸引力。

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