Internalized Carbon Dots for Enhanced Extracellular Electron Transfer in the Dark and Light

Small. 2020 Nov;16(44):e2004194. doi: 10.1002/smll.202004194. Epub 2020 Oct 12.

Abstract

Cellular internalization of nanomaterials to endow cells with more functionalities is highly desirable. Herein, a straightforward strategy for internalizing red-emission carbon dots (CDs) into Shewanella xiamenensis is proposed. This suggests that the internalized CDs not only afford enhanced conductivity of bacteria but also trigger the cellular physiological response to secrete abundant electron shuttles to aid the boosting of extracellular electron transfer (EET) efficiency. Additionally, once illuminated, internalized CDs can also serve as light absorbers to allow for photogenerated electrons to be transferred into cellular metabolism to further facilitate light-enhanced EET processes. Specifically, the findings advance the fundamental understanding of the interaction between internalized carbon-based semiconductor and cells in the dark and light, and provide a facile and effective strategy for enhancing EET efficiency.

Keywords: Shewanella; carbon dots; dark/light conditions; extracellular electron transfer; internalization.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Carbon
  • Electron Transport
  • Electrons*
  • Shewanella*

Substances

  • Carbon

Supplementary concepts

  • Shewanella xiamenensis