Role of Capping Molecule L-Cysteine on Synthesis and Characterization of Silver Oxide (Ag2O) Nanoparticles by Co-Precipitation Method

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Abstract

Biocompatible Ag2Onanoparticles have been developed using L-Cysteine biomolecule as a capping molecule via the elementary co-precipitation method resulting in a stable, efficient, and pure crystal phase of silver oxide nanoparticles at room temperature. Optical, structural, morphological, and compositional measurements indicated that L-Cysteine plays a crucial role in the synthesis because of the better surface passivation and stability of Ag2O nanoparticles. The face-centered cubic phase structure is evident from the XRD pattern, and the particle size was calculated using the Scherrer formula, which is obtained in the range of 50 nm and 76 nm. The present synthetic approach is simple, eco-friendly (non-toxic), and as obtained, silver oxide nanoparticles can be used for photocatalytic and display applications.
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旋盖分子l -半胱氨酸在共沉淀法合成和表征氧化银纳米颗粒中的作用
利用l -半胱氨酸生物分子作为盖层分子,通过基本共沉淀法制备了具有生物相容性的ag2纳米粒子,在室温下获得了稳定、高效、纯净的氧化银纳米粒子晶体。光学、结构、形态和组成测试表明,l -半胱氨酸在Ag2O纳米颗粒的合成中起着至关重要的作用,因为它具有更好的表面钝化和稳定性。XRD谱图显示出明显的面心立方相结构,采用Scherrer公式计算得到的粒径范围为50 nm ~ 76 nm。目前的合成方法简单,环保(无毒),并且所获得的氧化银纳米颗粒可用于光催化和显示应用。
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