A review of fast bubble-driven micromotors powered by biocompatible fuel: Low-concentration fuel, bioactive fluid and enzyme

63Citations
Citations of this article
91Readers
Mendeley users who have this article in their library.

Abstract

Micromotors are extensively applied in various fields, including cell separation, drug delivery and environmental protection. Micromotors with high speed and good biocompatibility are highly desirable. Bubble-driven micromotors, propelled by the recoil effect of bubbles ejection, show good performance of motility. The toxicity of concentrated hydrogen peroxide hampers their practical applications in many fields, especially biomedical ones. In this paper, the latest progress was reviewed in terms of constructing fast, bubble-driven micromotors which use biocompatible fuels, including low-concentration fuels, bioactive fluids, and enzymes. The geometry of spherical and tubular micromotors could be optimized to acquire good motility using a low-concentration fuel. Moreover, magnesium- and aluminum-incorporated micromotors move rapidly in water if the passivation layer is cleared in the reaction process. Metal micromotors demonstrate perfect motility in native acid without any external chemical fuel. Several kinds of enzymes, including catalase, glucose oxidase, and ureases were investigated to serve as an alternative to conventional catalysts. They can propel micromotors in dilute peroxide or in the absence of peroxide.

Cite

CITATION STYLE

APA

Chi, Q., Wang, Z., Tian, F., You, J., & Xu, S. (2018, October 22). A review of fast bubble-driven micromotors powered by biocompatible fuel: Low-concentration fuel, bioactive fluid and enzyme. Micromachines. MDPI AG. https://doi.org/10.3390/mi9100537

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free