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Bio-inspired and bionic materials for enhanced photosynthesis (BEEP)

Project
The amount of solar energy that reaches the earth’s surface exceeds the global energy demand of humans by about 12000 times. However, despite huge efforts in the scientific community, harvesting and efficient exploitation of this renewable and green energy source is still a major challenge for humanity. In the marine world, photosynthetic bacteria and algae (microalgae and seaweeds) are the predominant primary producers and many different organisms (e.g. corals, giant clams or photosynthetic sea slugs) cooperate synergistically with algae and bacteria for optimal solar light harvesting and conversion into chemically bound energy for biosynthesis and growth.
Inspired by such organisms, the “Bio-inspired and Bionic materials for enhanced photosynthesis (BEEP)” project aims to train researchers in a truly interdisciplinary setting to develop novel bio-mimetic approaches for light management.
BEEP’s specific mission is to design and manufacture hybrid systems combining living organisms and artificial materials: We envision that by understanding the critical aspects of complex symbiotic interaction in marine organisms we will be able to create new bionic and bio-inspired system, such as more efficient bio-photoreactors. This truly interdisciplinary research requires an intersectorial approach by specialized and skilled scientists from different disciplines, combining expertise from marine biology (UCPH, UN, NHM), and microbiology (HOEKMINE) with expertise in optics and spectroscopy (UCAM, IIT, UCL), chemistry (UNISTRA, UNIBA, BP), and advanced microscopy (TESCAN). BEEP will kick-start an unprecedented interdisciplinary European research training effort in the emerging area of marine biomimetics with a concomitant strong emphasis on science outreach and exploitation.
  • Overview
  • Research Areas
  • Publications

Overview

Contributors

DE COLA LUISA   Scientific Manager  

Departments involved

Dipartimento di Scienze Farmaceutiche   Principale  

Type

H20MCITNIF - Horizon 2020_Marie Skłodowska-Curie actions-Innovative Training Network (ITN)/Individual Fellowships (IF)

Funder

EUROPEAN COMMISSION
External Organization Funding Organization

Date/time interval

July 1, 2020 - December 31, 2023

Project duration

42 months

Research Areas

Concepts


Settore CHIM/10 - Chimica degli Alimenti

Publications

Outputs

Development of a new kappa-carrageenan hydrogel system to study benthic diatom vertical movements 
PLOS ONE
PUBLIC LIBRARY OF SCIENCE
2024
Academic Article
Open Access
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