TY - JOUR
T1 - Challenges and opportunities for innovation in bioinformed sustainable materials
AU - Stuart-Fox, Devi
AU - Ng, Leslie
AU - Barner, Leonie
AU - Bennett, Andrew T.D.
AU - Blamires, Sean J.
AU - Elgar, Mark A.
AU - Evans, Alistair R.
AU - Franklin, Amanda M.
AU - Hölttä-Otto, Katja
AU - Hutchison, James A.
AU - Jativa, Fernando
AU - Jessop, Anna Lee
AU - Kelley, Jennifer
AU - McGaw, Janet
AU - Mei, Jun
AU - Mirkhalaf, Mohammad
AU - Musameh, Mustafa
AU - Neto, Chiara
AU - O’Connor, Andrea J.
AU - Schork, Tim
AU - Schröder-Turk, Gerd E.
AU - Voelcker, Nicolas H.
AU - Wang, Anna
AU - Watson, Gregory S.
AU - Watson, Jolanta A.
AU - Wesemann, Lukas
AU - Wong, Wallace W.H.
N1 - Publisher Copyright:
© 2023, Springer Nature Limited.
PY - 2023/12
Y1 - 2023/12
N2 - Nature provides a rich source of information for the design of novel materials; yet there remain significant challenges in the design and manufacture of materials that replicate the form, function, and sustainability of biological solutions. Here, we identify key challenges and promising approaches to the development of materials informed by biology. These challenges fall into two main areas; the first relates to harnessing biological information for materials innovation, including key differences between biological and synthetic materials, and the relationship between structure and function. We propose an approach to materials innovation that capitalizes on biodiversity, together with high-throughput characterization of biological material architectures and properties, linked to environmental and ecological context. The second area relates to the design and manufacture of bioinformed materials, including the physical scale of material architectures and manufacturing scale up. We suggest ways to address these challenges and promising prospects for a bioinformed approach to materials innovation.
AB - Nature provides a rich source of information for the design of novel materials; yet there remain significant challenges in the design and manufacture of materials that replicate the form, function, and sustainability of biological solutions. Here, we identify key challenges and promising approaches to the development of materials informed by biology. These challenges fall into two main areas; the first relates to harnessing biological information for materials innovation, including key differences between biological and synthetic materials, and the relationship between structure and function. We propose an approach to materials innovation that capitalizes on biodiversity, together with high-throughput characterization of biological material architectures and properties, linked to environmental and ecological context. The second area relates to the design and manufacture of bioinformed materials, including the physical scale of material architectures and manufacturing scale up. We suggest ways to address these challenges and promising prospects for a bioinformed approach to materials innovation.
UR - https://www.scopus.com/pages/publications/85173613747
U2 - 10.1038/s43246-023-00405-z
DO - 10.1038/s43246-023-00405-z
M3 - Article
AN - SCOPUS:85173613747
SN - 2662-4443
VL - 4
SP - 1.12
JO - Communications Materials
JF - Communications Materials
IS - 1
M1 - 80
ER -