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双层管状微马达用于环境监测和修复的同步进行。

Bilayer Tubular Micromotors for Simultaneous Environmental Monitoring and Remediation.

机构信息

Key Laboratory of Micro-Systems and Micro-Structures Manufacturing of Ministry of Education , Harbin Institute of Technology , Harbin 150001 , China.

School of Information and Communication Engineering , University of Electronic Science and Technology of China , Chengdu 611731 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 17;10(41):35099-35107. doi: 10.1021/acsami.8b10921. Epub 2018 Oct 8.

Abstract

There are two main aspects of environmental governance including monitoring and remediation, both of which are essential for environmental protection. Self-propelled micro/nanomotors (MNM) have shown promising potential for achieving on-demand tasks in environmental field, including environmental sensing and pollutant removal or degradation. However, most of the current MNM used in environmental protection can hardly accomplish the two major tasks of both monitoring and pollutant degradation. Hereby, we present a bubble-propelled mesoporous silica-coated titania (TiO@mSiO) bilayer tubular micromotor with platinum (Pt) and magnetic FeO nanoparticles modified on their inner walls. The outer mesoporous silica (mSiO) layer can effectively adsorb and collect the pollutants, and the adsorption capacity of the TiO@mSiO tube is about 3 times higher than that of the TiO tube due to the presence of mSiO shell. By magnetic manipulation, the micromotors can be recovered to release the collected pollutant for precise analysis of the composition of the pollutants, such us pollutant molecule identification by surface-enhanced Raman scattering. The active motion and photocatalytic TiO inner layer of the micromotors can greatly enhance the degradation rate of the model pollutant rhodamine 6G (R6G). Our results show that within 30 min, up to 98% of R6G can be degraded by the motors. The successful demonstration of the TiO@mSiO bilayer tubular motors for simultaneous environmental monitoring and pollutant degradation paves the way for future development of active and intelligent micro/nanorobots for advanced environmental governance.

摘要

环境治理有两个主要方面,包括监测和修复,这两者对于环境保护都是必不可少的。自推进微/纳米马达(MNM)在环境领域实现按需任务方面显示出了有前景的潜力,包括环境传感和污染物去除或降解。然而,目前大多数用于环境保护的 MNM 很难完成监测和污染物降解这两个主要任务。在此,我们提出了一种气泡推进的介孔硅包覆二氧化钛(TiO@mSiO)双层管状微马达,其内壁修饰有铂(Pt)和磁性 FeO 纳米粒子。外介孔硅(mSiO)层可以有效地吸附和收集污染物,并且由于存在 mSiO 壳,TiO@mSiO 管的吸附能力约为 TiO 管的 3 倍。通过磁操控,可以回收微马达以释放收集的污染物,从而对污染物的成分进行精确分析,例如通过表面增强拉曼散射来识别污染物分子。微马达的活性运动和光催化 TiO 内层可以大大提高模型污染物罗丹明 6G(R6G)的降解率。我们的结果表明,在 30 分钟内,高达 98%的 R6G 可以被马达降解。TiO@mSiO 双层管状马达在同时进行环境监测和污染物降解方面的成功演示为未来开发用于先进环境治理的主动和智能微/纳米机器人铺平了道路。

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