Lieberzeit Peter A, Dickert Franz L
Department of Analytical Chemistry and Food Chemistry, University of Vienna, Waehringer Strasse 38, 1090, Vienna, Austria.
Anal Bioanal Chem. 2009 Jan;393(2):467-72. doi: 10.1007/s00216-008-2464-3. Epub 2008 Nov 4.
Environmental analysis is a potential key application for chemical sensors owing to their inherent ability to detect analytes on-line and in real time in distributed systems. Operating a chemosensor in a natural environment poses substantial challenges in terms of ruggedness, long-term stability and calibration. This article highlights current trends of achieving both the necessary selectivity and ruggedness: one way is deploying sensor arrays consisting of robust broadband sensors and extracting information via chemometrics. If using only a single sensor is desired, molecularly imprinted polymers offer a straightforward way for designing artificial recognition materials. Molecularly imprinted polymers can be utilized in real-life environments, such as water and air, aiming at detecting analytes ranging from small molecules to entire cells.
由于化学传感器具有在分布式系统中在线实时检测分析物的固有能力,环境分析是其潜在的关键应用领域。在自然环境中操作化学传感器在耐用性、长期稳定性和校准方面面临重大挑战。本文重点介绍了实现必要的选择性和耐用性的当前趋势:一种方法是部署由坚固的宽带传感器组成的传感器阵列,并通过化学计量学提取信息。如果希望仅使用单个传感器,分子印迹聚合物为设计人工识别材料提供了一种直接的方法。分子印迹聚合物可用于水和空气等实际生活环境中,旨在检测从小分子到整个细胞的各种分析物。