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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >In situ syntheses of silver nanoparticles inside silver citrate nanorods via catalytic nanoconfinement effect
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In situ syntheses of silver nanoparticles inside silver citrate nanorods via catalytic nanoconfinement effect

机译:原位合成银纳米粒子内的银纳米粒子通过催化纳米钨酸酐效应

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摘要

Although it is still worth to use silver nanoparticles as antimicrobial agents, silver nanoparticles can also be dangerous to human body, when they used directly to the wound sites. One strategy for avoiding this problem is to embed the nanoparticles in matrices such as hydrogels, polymers, or composites; however, most methods have limitations in terms of nanoparticle loading efficiency and/or pre- or post-treatment required in the manufacturing process. Herein, we introduce two in-situ synthetic methods in which silver nanoparticles are directly synthesized inside silver citrate nanorods that are antimicrobial materials composed of silver and citrate ions. The silver nanoparticles embedded antimicrobial silver citrate nanorods are expected to exhibit a synergistic, long-lasting, and sustainable antimicrobial effect. In addition, this study shows that a large number of nanoparticles can be formed inside silver citrate nanorods with no additional reagents not only at temperatures much lower (as low as 25 degrees C) than those usually required but also rapidly via electron beam irradiation. The fundamental principles of the proposed efficient syntheses are discussed in terms of the catalytic effect of reactants confined in nanospaces.
机译:虽然仍然值得使用银纳米颗粒作为抗微生物剂,但是当它们直接用于伤口部位时,银纳米颗粒也可能对人体危险。一种避免该问题的一种策略是将纳米颗粒嵌入诸如水凝胶,聚合物或复合材料的基质中;然而,大多数方法在制造过程中所需的纳米颗粒加载效率和/或预处理方面具有局限性。在此,我们介绍了两种原位合成方法,其中银纳米颗粒在银柠檬酸盐纳米棒中直接合成,其是由银和柠檬酸盐离子组成的抗微生物材料。预期银纳米颗粒嵌入式抗微生物氧化酯纳米粉碳酸盐表现出协同,持久和可持续的抗微生物效果。此外,该研究表明,大量纳米颗粒可以形成在银柠檬酸盐纳米棒内,不仅在低得多(低至25℃)的温度下不仅需要额外的试剂,而且通过电子束照射也快速地迅速地进行。就纳米空间中局限于纳入的反应物的催化作用而言,讨论了所提出的高效合成的基本原理。

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