微塑料
蜂群(蜜蜂)
材料科学
纳米技术
聚苯乙烯
过氧化氢
群集运动
聚合物
生物污染
微粒
原细胞
推进
发泡聚苯乙烯
作者
Qianfan Chen,Peiji Deng,Jueyi Xue,Si Liu,Ziping Li,Peijun Qin,Tianruo Guo,Xiaoguang Duan,Kang Liang
标识
DOI:10.1021/acsami.6c00431
摘要
The pervasive accumulation of microplastics in aquatic environments presents escalating ecological challenges, yet their small size and dispersibility hinder efficient removal using conventional technologies. Here, we report a programmable, light-responsive nanomotor based on 9-(methylaminomethyl)anthracene (9-MMA) functionalized, cobalt-doped ZIF-90. The nanomotors exhibit autonomous propulsion in dilute hydrogen peroxide and undergo reversible, light-controlled swarming and deswarming behavior under alternating 365 and 265 nm irradation, driven by 9-MMA photodimerization and photodissociation. UV laser-guided photopatterning further enables spatially programmable swarming, allowing precise control over dynamic aggregation zones and macroscale pattern formation. Upon 365 nm exposure, the swarming nanomotors efficiently bind and coaggregate dispersed polystyrene (PS) and polypropylene (PP) microplastics into visible flocs, enabling enhanced collection. This study presents a new microplastic enrichment strategy that integrates nanomotor propulsion, dynamic swarming, and multifunctionality, offering new insights for environmental nanotechnology.
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