Ron Izhar, Friedman Noga, Cahen David, Sheves Mordechai
Department of Materials and Interfaces, Weizmann Institute of Science, P. O. Box 26, Rehovot 76100, Israel.
Small. 2008 Dec;4(12):2271-8. doi: 10.1002/smll.200800524.
Controlling the orientation of bacteriorhodopsin (bR) monolayers is an important step in studying and utilizing such membranes in a solid-state configuration in, for example, photoelectric applications. Macroscopic monolayers of bR have been fabricated in a variety of ways, but characterization of the distribution of the two possible orientations in which the membrane fragments can adsorb has not yet been addressed experimentally. Here, an approach is presented that labels only one of the membrane surfaces by electroless growth of metal nanoparticles on top of the solid-supported membranes. In this way, it is possible to observe which surface of the membranes is actually adsorbed to the substrate. How this technique serves to interface the membranes with a top metal contact for further electrical measurements is also demonstrated.
控制细菌视紫红质(bR)单层膜的取向是在例如光电应用中以固态结构研究和利用此类膜的重要一步。已经通过多种方式制备了bR的宏观单层膜,但膜片段吸附的两种可能取向的分布特征尚未通过实验得到解决。在此,提出了一种方法,即通过在固体支撑膜顶部进行金属纳米颗粒的无电生长来仅标记膜的一个表面。通过这种方式,可以观察到膜的哪个表面实际上吸附在基底上。还展示了该技术如何用于将膜与顶部金属接触连接以进行进一步的电学测量。