Tarabella G, D'Angelo P, Cifarelli A, Dimonte A, Romeo A, Berzina T, Erokhin V, Iannotta S
IMEM-CNR , Institute of Materials for Electronics and Magnetism - National Research Council , Parco Area delle Scienze 37/A - 43124 , Parma , Italy . Email:
Chem Sci. 2015 May 1;6(5):2859-2868. doi: 10.1039/c4sc03425b. Epub 2015 Feb 20.
A hybrid bio-organic electrochemical transistor was developed by interfacing an organic semiconductor, poly(3,4-ethylenedioxythiophene) doped with poly(styrene sulfonate), with the cell. The system shows unprecedented performances since it could be operated both as a transistor, in a three-terminal configuration, and as a memristive device in a two terminal configuration mode. This is quite a remarkable achievement since, in the transistor mode, it can be used as a very sensitive bio-sensor directly monitoring biochemical processes occurring in the cell, while, as a memristive device, it represents one of the very first examples of a bio-hybrid system demonstrating such a property. Our system combines memory and sensing in the same system, possibly interfacing unconventional computing. The system was studied by a full electrical characterization using a series of different gate electrodes, namely made of Ag, Au and Pt, which typically show different operation modes in organic electrochemical transistors. Our experiment demonstrates that a remarkable sensing capability could potentially be implemented. We envisage that this system could be classified as a Bio-Organic Sensing/Memristive Device (BOSMD), where the dual functionality allows merging of the sensing and memory properties, paving the way to new and unexplored opportunities in bioelectronics.
通过将有机半导体聚(3,4 - 乙撑二氧噻吩)掺杂聚(苯乙烯磺酸盐)与细胞连接,开发出了一种混合生物有机电化学晶体管。该系统展现出前所未有的性能,因为它既可以在三端配置下作为晶体管工作,也可以在两端配置模式下作为忆阻器件工作。这是一项相当了不起的成就,因为在晶体管模式下,它可以用作非常灵敏的生物传感器,直接监测细胞中发生的生化过程,而作为忆阻器件,它是展示这种特性的首批生物混合系统之一。我们的系统在同一系统中结合了记忆和传感功能,可能与非常规计算相连接。使用一系列不同的栅电极,即由银、金和铂制成的栅电极,对该系统进行了全面的电学表征研究,这些栅电极在有机电化学晶体管中通常表现出不同的工作模式。我们的实验表明,有可能实现显著的传感能力。我们设想该系统可归类为生物有机传感/忆阻器件(BOSMD),其双重功能允许传感和记忆特性融合,为生物电子学带来新的、未被探索的机遇。