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微流控电子学。

Microfluidic electronics.

机构信息

Ericsson AB, Borgarfjordsgatan 18, SE-164 80, Stockholm, Sweden.

出版信息

Lab Chip. 2012 Aug 21;12(16):2782-91. doi: 10.1039/c2lc21176a. Epub 2012 Jun 18.

Abstract

Microfluidics, a field that has been well-established for several decades, has seen extensive applications in the areas of biology, chemistry, and medicine. However, it might be very hard to imagine how such soft microfluidic devices would be used in other areas, such as electronics, in which stiff, solid metals, insulators, and semiconductors have previously dominated. Very recently, things have radically changed. Taking advantage of native properties of microfluidics, advances in microfluidics-based electronics have shown great potential in numerous new appealing applications, e.g. bio-inspired devices, body-worn healthcare and medical sensing systems, and ergonomic units, in which conventional rigid, bulky electronics are facing insurmountable obstacles to fulfil the demand on comfortable user experience. Not only would the birth of microfluidic electronics contribute to both the microfluidics and electronics fields, but it may also shape the future of our daily life. Nevertheless, microfluidic electronics are still at a very early stage, and significant efforts in research and development are needed to advance this emerging field. The intention of this article is to review recent research outcomes in the field of microfluidic electronics, and address current technical challenges and issues. The outlook of future development in microfluidic electronic devices and systems, as well as new fabrication techniques, is also discussed. Moreover, the authors would like to inspire both the microfluidics and electronics communities to further exploit this newly-established field.

摘要

微流控技术已经发展了几十年,在生物学、化学和医学等领域得到了广泛的应用。然而,很难想象这种软性微流控设备将如何应用于其他领域,例如电子学,其中以前一直由坚硬的固体金属、绝缘体和半导体主导。最近,情况发生了根本性的变化。利用微流控的固有特性,基于微流控的电子技术的进步在许多新的有吸引力的应用中显示出了巨大的潜力,例如仿生设备、可穿戴式医疗和医疗传感系统以及符合人体工程学的单元,在这些应用中,传统的刚性、庞大的电子产品在满足舒适用户体验的需求方面面临着无法克服的障碍。微流控电子学的诞生不仅将对微流控和电子学领域产生影响,而且可能塑造我们日常生活的未来。然而,微流控电子学仍处于早期阶段,需要在研究和开发方面做出重大努力来推进这一新兴领域。本文的目的是回顾微流控电子学领域的最新研究成果,解决当前的技术挑战和问题。还讨论了微流控电子设备和系统的未来发展前景以及新的制造技术。此外,作者希望激发微流控和电子学两个领域进一步开发这个新兴领域。

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