Adamatzky Andrew, Tarabella Giuseppe, Phillips Neil, Chiolerio Alessandro, D'Angelo Pasquale, Nikolaidou Anna, Sirakoulis Georgios Ch
Unconventional Computing Laboratory, University of the West of England, Bristol, UK.
Department of Electrical and Computer Engineering, Democritus University of Thrace, Xanthi, Greece.
Sci Rep. 2023 Jun 9;13(1):9367. doi: 10.1038/s41598-023-36244-8.
A kombucha is a tea and sugar fermented by over sixty kinds of yeasts and bacteria. This symbiotic community produces kombucha mats, which are cellulose-based hydrogels. The kombucha mats can be used as an alternative to animal leather in industry and fashion once they have been dried and cured. Prior to this study, we demonstrated that living kombucha mats display dynamic electrical activity and distinct stimulating responses. For use in organic textiles, cured mats of kombucha are inert. To make kombucha wearables functional, it is necessary to incorporate electrical circuits. We demonstrate that creating electrical conductors on kombucha mats is possible. After repeated bending and stretching, the circuits maintain their functionality. In addition, the abilities and electronic properties of the proposed kombucha, such as being lighter, less expensive, and more flexible than conventional electronic systems, pave the way for their use in a diverse range of applications.
康普茶是一种由六十多种酵母和细菌发酵的茶和糖。这种共生群落会产生康普茶菌膜,它是基于纤维素的水凝胶。一旦经过干燥和固化,康普茶菌膜在工业和时尚领域可作为动物皮革的替代品。在本研究之前,我们证明了活的康普茶菌膜表现出动态电活动和独特的刺激反应。用于有机纺织品时,固化后的康普茶菌膜是惰性的。为使康普茶可穿戴设备具备功能,有必要集成电路。我们证明了在康普茶菌膜上制造电导体是可行的。经过反复弯曲和拉伸后,电路仍能保持其功能。此外,所提出的康普茶的特性和电子性能,如比传统电子系统更轻、更便宜且更灵活,为其在各种应用中的使用铺平了道路。