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用于水净化的智能微型和纳米机器人。

Smart micro- and nanorobots for water purification.

作者信息

Urso Mario, Ussia Martina, Pumera Martin

机构信息

Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.

出版信息

Nat Rev Bioeng. 2023;1(4):236-251. doi: 10.1038/s44222-023-00025-9. Epub 2023 Feb 6.

Abstract

Less than 1% of Earth's freshwater reserves is accessible. Industrialization, population growth and climate change are further exacerbating clean water shortage. Current water-remediation treatments fail to remove most pollutants completely or release toxic by-products into the environment. The use of self-propelled programmable micro- and nanoscale synthetic robots is a promising alternative way to improve water monitoring and remediation by overcoming diffusion-limited reactions and promoting interactions with target pollutants, including nano- and microplastics, persistent organic pollutants, heavy metals, oils and pathogenic microorganisms. This Review introduces the evolution of passive micro- and nanomaterials through active micro- and nanomotors and into advanced intelligent micro- and nanorobots in terms of motion ability, multifunctionality, adaptive response, swarming and mutual communication. After describing removal and degradation strategies, we present the most relevant improvements in water treatment, highlighting the design aspects necessary to improve remediation efficiency for specific contaminants. Finally, open challenges and future directions are discussed for the real-world application of smart micro- and nanorobots.

摘要

地球上可获取的淡水资源储备不足1%。工业化、人口增长和气候变化正在进一步加剧清洁水短缺的问题。目前的水修复处理方法无法完全去除大多数污染物,或者会向环境中释放有毒副产物。使用自行推进的可编程微纳尺度合成机器人是一种很有前景的替代方法,可通过克服扩散限制反应并促进与目标污染物(包括纳米塑料和微塑料、持久性有机污染物、重金属、油类和致病微生物)的相互作用来改善水监测和修复。本综述介绍了从被动微纳材料到主动微纳马达,再到先进智能微纳机器人在运动能力、多功能性、自适应响应、群体行为和相互通信方面的发展历程。在描述去除和降解策略之后,我们展示了水处理方面最相关的进展,突出了提高特定污染物修复效率所需的设计方面。最后,讨论了智能微纳机器人实际应用面临的公开挑战和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3864/9901418/881aaec0242f/44222_2023_25_Fig1_HTML.jpg

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