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Copper Selenide Nanosnakes: Bovine Serum Albumin-Assisted Room Temperature Controllable Synthesis and Characterization

机译:硒化铜纳米蛇:牛血清白蛋白辅助室温可控的合成和表征

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摘要

Herein we firstly reported a simple, environment-friendly, controllable synthetic method of CuSe nanosnakes at room temperature using copper salts and sodium selenosulfate as the reactants, and bovine serum albumin (BSA) as foaming agent. As the amounts of selenide ions (Se2−) released from Na2SeSO3 in the solution increased, the cubic and snake-like CuSe nanostructures were formed gradually, the cubic nanostructures were captured by the CuSe nanosnakes, the CuSe nanosnakes grew wider and longer as the reaction time increased. Finally, the cubic CuSe nanostructures were completely replaced by BSA–CuSe nanosnakes. The prepared BSA–CuSe nanosnakes exhibited enhanced biocompatibility than the CuSe nanocrystals, which highly suggest that as-prepared BSA–CuSe nanosnakes have great potentials in applications such as biomedical engineering.
机译:在这里,我们首先报道了一种简单,环境友好,可控的室温合成CuSe纳米蛇的方法,该方法使用铜盐和硒代硫酸钠作为反应物,牛血清白蛋白(BSA)作为起泡剂。随着溶液中从Na2SeSO3释放的硒离子(Se 2-)的数量增加,立方和蛇形CuSe纳米结构逐渐形成,立方纳米结构被CuSe纳米蛇CuSe捕获。随着反应时间的增加,纳米蛇变得越来越宽和更长。最终,立方晶状的CuSe纳米结构被BSA–CuSe纳米蛇完全取代。制备的BSA-CuSe纳米蛇比CuSe纳米晶体具有更高的生物相容性,这强烈表明,所制备的BSA-CuSe纳米蛇在生物医学工程等应用中具有巨大的潜力。

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