Willner Itamar, Katz Eugenii
Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Angew Chem Int Ed Engl. 2003 Oct 6;42(38):4576-88. doi: 10.1002/anie.200201602.
Bioelectronics is a rapidly progressing interdisciplinary research field that has important implications for the development of biosensors, biofuel cells, biomaterial-based computers, and bioelectronic devices. Magneto-controlled molecular electronics and bioelectronics are new topics that examine the effect of an external magnetic field on electrocatalytic and bioelectrocatalytic processes of functionalized magnetic particles associated with electrodes. In this article we describe the progress in the developments of magneto-switchable electrocatalytic and bioelectrocatalytic transformations, and the effects of the rotation of the magnetic particles on the electrocatalytic and bioelectrocatalytic processes are discussed. Finally, the implications of the results on the development of biosensors, amplified immunosensors, and DNA sensors are described.
生物电子学是一个快速发展的跨学科研究领域,对生物传感器、生物燃料电池、基于生物材料的计算机和生物电子器件的发展具有重要意义。磁控分子电子学和生物电子学是新的课题,研究外部磁场对与电极相关的功能化磁性颗粒的电催化和生物电催化过程的影响。在本文中,我们描述了磁控电催化和生物电催化转化的发展进展,并讨论了磁性颗粒的旋转对电催化和生物电催化过程的影响。最后,阐述了这些结果对生物传感器、放大免疫传感器和DNA传感器发展的意义。