Ajay A K, Srivastava Divesh N
Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.
Biosens Bioelectron. 2007 Sep 30;23(2):281-4. doi: 10.1016/j.bios.2007.04.019. Epub 2007 May 5.
A conductometric sensor using microtubules of polyaniline as transducer cum immobilization matrix is reported, capable of detecting ethanol in liquid phase. Enzyme ADH (alcohol dehydrogenase) and its coenzyme NAD+ have been used to improve the selectivity of the sensor. The sensor concept is based on the protonation of the polyaniline by the hydrogen ion produced in the enzyme-catalyzed reaction, leading to changes in the electrical conductance of the polyaniline. The sensor works well on the physiological pH, can detect ethanol as low as 0.02% (v/v) (0.092 M) and has a linear trend at par healthcare guidelines. The sensor responses were measured in various permutation and combination of enzyme and coenzyme concentrations and site of immobilization. The sensor shows minor interference with other functional groups and alcohols. The possible causes for such interference have been discussed.
据报道,一种以聚苯胺微管作为换能器兼固定基质的电导传感器能够检测液相中的乙醇。酶乙醇脱氢酶(ADH)及其辅酶NAD⁺已被用于提高该传感器的选择性。该传感器的原理基于酶催化反应中产生的氢离子使聚苯胺质子化,从而导致聚苯胺的电导发生变化。该传感器在生理pH值下工作良好,能够检测低至0.02%(v/v)(0.092 M)的乙醇,并且在符合医疗保健指南方面具有线性趋势。在酶和辅酶浓度以及固定位点的各种排列组合下测量了传感器的响应。该传感器对其他官能团和醇类显示出轻微干扰。已讨论了此类干扰的可能原因。