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Powering a microprocessor by photosynthesis

  • Paolo Bombelli
  • , A Savanth
  • , A Scarampi
  • , S J L Rowden
  • , David H Green
  • , A Erbe
  • , E Årstøl
  • , I Jevremovic
  • , M F Hohmann-Marriott
  • , S P Trasatti
  • , E Ozer
  • , Christopher J. Howe

Publikation: ArticleBegutachtung

71 Zitate (Scopus)
696 Downloads (Pure)

Abstract

Sustainable, affordable and decentralised sources of electrical energy are required to power the network of electronic devices known as the Internet of Things. Power consumption for a single Internet of Things device is modest, ranging from μW to mW, but the number of Internet of Things devices has already reached many billions and is expected to grow to one trillion by 2035, requiring a vast number of portable energy sources (e.g., a battery or an energy harvester). Batteries rely largely on expensive and unsustainable materials (e.g., rare earth elements) and their charge eventually runs out. Existing energy harvesters (e.g., solar, temperature, vibration) are longer lasting but may have adverse effects on the environment (e.g., hazardous materials are used in the production of photovoltaics). Here, we describe a bio-photovoltaic energy harvester system using photosynthetic microorganisms on an aluminium anode that can power an Arm Cortex M0+, a microprocessor widely used in Internet of Things applications. The proposed energy harvester has operated the Arm Cortex M0+ for over six months in a domestic environment under ambient light. It is comparable in size to an AA battery, and is built using common, durable, inexpensive and largely recyclable materials.
OriginalspracheEnglish
FachzeitschriftEnergy & Environmental Science
Jahrgang2022
Ausgabenummer6
Frühes Online-Datum12 Mai 2022
DOIs
PublikationsstatusPublished - 12 Mai 2022

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. Affordable and clean energy
    Affordable and clean energy

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