Litcius/Paper detail

M13 Virus Triboelectricity and Energy Harvesting

Han Kim, Ju‐Hyuck Lee, Ju Hun Lee, Byung Yang Lee, Byoung Duk Lee, Kento Okada, Seungwook Ji, Jihwan Yoon, Jong Hyuk Lee, Seung‐Wuk Lee

2021Nano Letters24 citationsDOI

Abstract

Triboelectrification is a phenomenon that generates electric potential upon contact. Here, we report a viral particle capable of generating triboelectric potential. M13 bacteriophage is exploited to fabricate precisely defined chemical and physical structures. By genetically engineering the charged structures, we observe that more negatively charged phages can generate higher triboelectric potentials and can diffuse the electric charges faster than less negatively charged phages can. The computational results show that the glutamate-engineered phages lower the LUMO energy level so that they can easily accept electrons from other materials upon contact. A phage-based triboelectric nanogenerator is fabricated and it could produce ∼76 V and ∼5.1 μA, enough to power 30 light-emitting diodes upon a mechanical force application. Our biotechnological approach will be useful to understand the electrical behavior of biomaterials, harvest mechanical energy, and provide a novel modality to detect desired viruses in the future.

Topics & Concepts

Triboelectric effectNanogeneratorMechanical energyNanotechnologyEnergy harvestingMaterials scienceElectric potential energyElectric chargeOptoelectronicsPhysicsEnergy (signal processing)Power (physics)Quantum mechanicsPiezoelectricityComposite materialAdvanced Sensor and Energy Harvesting MaterialsModular Robots and Swarm IntelligenceAdvanced biosensing and bioanalysis techniques