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自主推进微纳机器用于分析传感:批判性回顾。

Self-propelled micromachines for analytical sensing: a critical review.

机构信息

Department of Analytical Chemistry, Physical Chemistry and Chemical Engineering, University of Alcala, 28871, Alcala de Henares, Spain.

Chemical Research Institute "Andrés M. del Río", University of Alcala, 28871, Alcala de Henares, Madrid, Spain.

出版信息

Anal Bioanal Chem. 2019 Oct;411(25):6561-6573. doi: 10.1007/s00216-019-02070-z. Epub 2019 Aug 24.

Abstract

Self-propelled micromotors are micro- and nanoscale devices that move autonomously in solution by converting a specific stimulus into mechanical work. The broad scope of operations and applications along with the ultra-small dimensions have opened new possibilities to solve complex analytical challenges. Herein we give a critical overview of early developments and future prospects of such tiny moving objects for different analytical sensing and biosensing strategies. From early electrophoretic propelled nanomotors, which were limited to low viscous media, to bubble-propelled micromotors, the field has evolved into sophisticated all-in-one analytical systems with built-in sensing capabilities. Current progress for in vivo biosensing and integration into analytical instrumentation towards fully functional devices will be also covered. We hope that this review provides the reader with some general knowledge and future prospects of self-propelled micromachines as a new paradigm in analytical chemistry. Graphical abstract.

摘要

自推进微型马达是一种微纳米尺度的设备,通过将特定的刺激转化为机械功,能够在溶液中自主运动。广泛的操作范围和应用以及超小的尺寸为解决复杂的分析挑战开辟了新的可能性。本文批判性地综述了这种微型运动物体在不同分析传感和生物传感策略中的早期发展和未来前景。从早期仅限于低粘性介质的电泳推进纳米马达,到气泡推进微马达,该领域已经发展成为具有内置传感功能的复杂一体化分析系统。本文还涵盖了体内生物传感和集成到分析仪器中的最新进展,以实现全功能设备。我们希望这篇综述能为读者提供一些关于自推进微型机械作为分析化学新范例的一般知识和未来前景。

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