贻贝启发的银纳米团簇自组装成多功能银气凝胶,用于增强催化和杀菌应用

IF 22.5
Yunshan Gao, Jie Xu, Shaohua Qu, Yixiao Li, Gleb B. Sukhorukov, Li Shang
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引用次数: 0

摘要

银纳米团簇在催化、传感、生物等领域具有广阔的应用前景。然而,agnc有限的稳定性已成为制约其在复杂环境中实际应用的主要挑战。本文报道了一种以贻贝为灵感、多巴胺辅助的自组装方法来制备三维AgNC气凝胶(PDA/AgNC),该方法具有显著增强的结构稳定性和协同功能特性。制备的AgNC气凝胶具有分层网状结构,其超细韧带尺寸为10.3±1.2 nm,比表面积为50.7 m2 g−1。凝胶机制是通过深入表征和凝胶过程的时间推移监测,通过光谱和微观方法阐明。由于气凝胶的独特特性和agnc与PDA的协同作用,所制备的气凝胶不仅能以比单个agnc更快的动力学速度对染料进行高效脱色,而且具有显著的广谱抗菌活性。因此,建立了一种概念性的水处理装置,通过在棉花基质上沉积PDA/AgNC气凝胶,该装置在流动系统中具有良好的催化染料降解和细菌杀灭性能。这种以贻贝为灵感的自组装策略在开发强大的agnc功能材料方面具有很大的潜力,也为设计具有综合功能和协同性能的复杂材料提供了新的指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mussel-inspired self-assembly of silver nanoclusters into multifunctional silver aerogels for enhanced catalytic and bactericidal applications

Mussel-inspired self-assembly of silver nanoclusters into multifunctional silver aerogels for enhanced catalytic and bactericidal applications

Silver nanoclusters (AgNCs) have shown broad application prospects in catalysis, sensing, and biological fields. However, the limited stability of AgNCs has become the main challenge restricting their practical application in complex environments. Herein, a mussel-inspired, dopamine-assisted self-assembly approach is reported to fabricate 3D AgNC aerogels (PDA/AgNCs), which possess significantly enhanced structural stability and synergistic functional properties. The prepared AgNC aerogels display a hierarchical network structure with an ultrafine ligament size of 10.3 ± 1.2 nm and a high specific surface area of 50.7 m2 g−1. The gelation mechanism is elucidated by in-depth characterization and time-lapse monitoring of the gelation process vis spectroscopic and microscopic approaches. Owing to the distinct features of aerogels and the synergistic effect of AgNCs and PDA, the fabricated aerogels can not only efficiently decolorize dyes with a faster kinetic than individual AgNCs, but also exhibit remarkable broad-spectrum antimicrobial activity. Consequently, a conceptual water-treatment device is established by depositing PDA/AgNC aerogels on the cotton substrate, which shows good performance in both catalytic dye degradation and bacterial killing in the flowing system. This mussel-inspired self-assembly strategy has great potential in developing robust AgNC-based functional materials, which also provides a new guideline for designing sophisticated materials with integrated functions and synergistic properties.

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