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首页> 外文期刊>Electrochimica Acta >Biomimetic electrochemistry from conducting polymers. A review Artificial muscles, smart membranes, smart drug delivery and computereuron interfaces
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Biomimetic electrochemistry from conducting polymers. A review Artificial muscles, smart membranes, smart drug delivery and computereuron interfaces

机译:来自导电聚合物的仿生电化学。综述人造肌肉,智能膜,智能药物输送和计算机/神经元接口

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Films of conducting polymers in the presence of electrolytes can be oxidized or reduced by the flow of anodic or cathodic currents. Ions and solvent are exchanged during a reaction for charge and osmotic pressure balance. A reactive conducting polymer contains ions and solvent. Such variation of composition during a reaction is reminiscent of the biological processes in cells. Along changes to the composition of the material during a reaction, there are also changes to other properties, including: volume (electrochemomechanical), colour (electrochromic), stored charge (electrical storage), porosity or permselectivity (electroporosity), stored chemicals, wettability and so on. Most of those properties mimic similar property changes in organs during their functioning. These properties are being exploited to develop biomimetic reactive and soft devices: artificial muscles and polymeric actuators; supercapacitors and all organic batteries; smart membranes; electron-ion transducers; nervous interfaces and artificial synapses, or drug delivery devices. In this review we focus on the state of the art for artificial muscles, smart membranes and electron-ion transducers. The reactive nature of those devices provide them with a unique advantage related to the present days technologies: any changes in the surrounding physical or chemical variable acting on the electrochemical reaction rate will be sensed by the device while working. Working under constant current (driving signal), the evolution of the device potential or the evolution of the consumed electrical energy (sensing signals) senses and quantifies the variable increment. Driving and sensing signals are present, simultaneously, in the same two connecting wires. It is possible to prepare electrochemical devices based on conducting polymers in which there are several kinds of different sensors and one actuator embedded in one device. Examples of the tools and products, start-up companies, increasing evolution of scientific literature and patents are also presented. Scientific and technological challenges are also considered.
机译:在存在电解质的情况下,导电聚合物薄膜会被阳极或阴极电流流氧化或还原。反应期间离子和溶剂交换以平衡电荷和渗透压。反应性导电聚合物包含离子和溶剂。反应期间组成的这种变化让人联想到细胞中的生物学过程。随着反应过程中材料成分的变化,其他特性也会发生变化,包括:体积(电化学机械),颜色(电致变色),存储电荷(电存储),孔隙率或渗透性(电孔隙率),存储的化学物质,润湿性等等。这些特性中的大多数模仿器官在其运行过程中的相似特性变化。利用这些特性来开发仿生反应性和柔软装置:人造肌肉和聚合物致动器;超级电容器和所有有机电池;智能膜电子离子换能器;神经接口和人工突触或药物输送装置。在本文中,我们将重点介绍人造肌肉,智能膜和电子离子换能器的最新技术。这些设备的反应性为它们提供了与当今技术相关的独特优势:在工作时,设备会感测到周围物理或化学变量对电化学反应速率的任何变化。在恒定电流(驱动信号)下工作,设备电位的变化或消耗的电能的变化(感应信号)会感应并量化可变增量。驱动和传感信号同时出现在同一两条连接线中。可以基于导电聚合物制备电化学装置,其中有多种不同的传感器和一个致动器嵌入在一个装置中。还介绍了工具和产品的示例,初创公司,科学文献和专利的不断发展。还考虑了科学和技术挑战。

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