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Sponge-supported synthesis of colloidal selenium nanospheres

机译:海绵支持的胶体硒纳米球的合成

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摘要

With increasing biomedical and engineering applications of selenium nanospheres (SeNS), new efficient methods are needed for the synthesis and long-term preservation of these nanomaterials. Currently, SeNS are mostly produced through the biosynthesis route using microorganisms or by using wet chemical reduction, both of which have several limitations in terms of nanoparticle size, yield, production time and long-term stability of the nanoparticles. Here, we introduce a novel approach for rapid synthesis and long-term preservation of SeNS on a solid microporous support by combining a mild hydrothermal process with chemical reduction. By using a natural sponge as a solid three-dimensional matrix for nanoparticle growth, we have synthesized highly monodisperse spherical nanoparticles with a wide size range (10-1000 nm) and extremely high yield in a relatively short period of time (1 h). Additionally, the synthesized SeNS can be stored and retrieved whenever needed by simply washing the sponge in water. Keeping the nanospheres in the support offers remarkable long-term stability as particles left on the sponge preserve their morphological and colloidal characteristics even after eight months of storage. Furthermore, this work reveals that SeNS can be used for efficient mercury capture from contaminated waters with a record-breaking mercury removal capacity of 1900 mg g(-1).
机译:随着硒纳米球(SeNS)的生物医学和工程应用的增加,需要新的有效方法来合成和长期保存这些纳米材料。当前,SeNS主要通过使用微生物或通过湿化学还原的生物合成途径来生产,这两者在纳米颗粒尺寸,产量,生产时间和纳米颗粒的长期稳定性方面均具有若干限制。在这里,我们通过结合温和的水热过程和化学还原,在固体微孔载体上介绍了SeNS的快速合成和长期保存的新方法。通过使用天然海绵作为用于纳米粒子生长的固体三维基质,我们在相对较短的时间段(1小时)内合成了具有宽尺寸范围(10-1000 nm)和极高产率的高度单分散球形纳米粒子。此外,只需在水中清洗海绵,即可随时存储和检索合成的SeNS。将纳米球保持在载体中可提供出色的长期稳定性,因为即使在储存八个月后,留在海绵上的颗粒仍能保持其形态和胶体特性。此外,这项工作表明,SeNS可用于从受污染的水中高效捕集汞,破纪录的除汞能力为1900 mg g(-1)。

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