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Towards a light-addressable transducer bacteriorhodopsin-based

机译:迈向基于细菌视紫红质的光寻址换能器

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Highly oriented bacteriorhodopsin films were deposited using a specially designed procedure of electric field assisted monolayer formation. The self-assembly of the monolayer at the air/water interface was monitored by the increase of the surface pressure. The monolayers were transferred onto solid substrates by the Langmuir-Schaefer technique. Electrical measurements on the films with a specially designed chamber confirmed the improved orientation of the films. Possible application of the films in practical devices such as a transducer for biosensor is discussed, keeping in mind features and inherent limitations when compared with existing silicon transducers. [References: 28]
机译:使用专门设计的电场辅助单层形成程序沉积高度定向的细菌视紫红质膜。通过表面压力的增加来监测单层在空气/水界面处的自组装。通过Langmuir-Schaefer技术将单层转移到固体基质上。使用专门设计的腔室对薄膜进行电学测量,确认了薄膜的取向得到改善。讨论了薄膜在实际设备(如生物传感器换能器)中的可能应用,与现有的硅换能器相比,要牢记其特征和固有局限性。 [参考:28]

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