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Increasing Performance and Stability of Mass- Manufacturable Biobatteries by Ink Modification

机译:通过墨水改性提高可大量生产的生物电池的性能和稳定性

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摘要

In this work, biobatteries assembled using roll-to-roll screen printed enzymatic electrodes were characterised in terms of their electrical performance and storage stability. The enzymes and mediators used on the anode and cathode were glucose oxidase with ferrocenemethanol and laccase with ABTS, respectively. This study shows that besides rheological properties of enzyme inks used for the printing of the biobattery electrodes also adhesion of these electrodes to the printing substrate can be adjusted by varying the amount and composition of the binder in the ink. Another important observation is that the mediator has a strong impact on both the performance and the stability of the anode electrode. Consequently, electrochemical performance of biobatteries can be enhanced by adding fresh mediator into the battery during activation or by some other method preserving the activity of the mediator. Hence, this study discusses and sheds light on important practical aspects for up-scaling production process of biobatteries and also other printed bioelectronics.
机译:在这项工作中,使用卷对卷丝网印刷酶电极组装的生物电池的电气性能和存储稳定性得到了表征。阳极和阴极上使用的酶和介体分别是二茂铁甲醇的葡萄糖氧化酶和ABTS的漆酶。该研究表明,除了用于印刷生物电池电极的酶油墨的流变特性外,还可以通过改变油墨中粘合剂的含量和组成来调节这些电极对印刷基材的粘附性。另一个重要的观察结果是,介体对阳极电极的性能和稳定性都有很大影响。因此,可以通过在激活期间将新鲜的介体添加到电池中或通过保留介体的活性的某些其他方法来增强生物电池的电化学性能。因此,本研究讨论并阐明了扩大生物电池及其他印刷生物电子产品生产过程的重要实践方面。

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