Liu C C
Edison Sensor Technology Center, Case Western Reserve University, Cleveland, OH.
Appl Biochem Biotechnol. 1993 Apr-May;41(1-2):99-107. doi: 10.1007/BF02918536.
Electrochemical sensors have been used either as a whole or as an integral part of a chemical and biological sensing device. Microfabrication technology has been used in the development of electrochemical sensors. The recent advancement of micromachining techniques adds new impetus to electrochemical sensor development. Most noticeable is the application of anisotropic chemical etching, plasma etching, sacrificial layer methods, and high aspect ratio X-ray lithography to enhance the opportunity to produce scientifically and commercially viable electrochemical sensors. Examples will be used to illustrate the potential of microfabrication and micromachining techniques in electrochemical sensor development.
电化学传感器已被整体使用,或作为化学和生物传感设备的一个组成部分。微加工技术已被用于电化学传感器的开发。微机械加工技术的最新进展为电化学传感器的发展增添了新的动力。最值得注意的是各向异性化学蚀刻、等离子体蚀刻、牺牲层方法和高深宽比XX X射线光刻技术的应用,以增加生产具有科学和商业可行性的电化学传感器的机会。将通过实例来说明微加工和微机械加工技术在电化学传感器开发中的潜力。