# Yale University

engineers bioinspired regenerative lignification to produce ultra-hard, sustainable bamboo-style structural materials.

Source: https://en.bioecon.ru/companies/yale-university/
Updated: 2026-07-09

- Country: United States

## Verifiable facts

| Fact | Value | Source |
| --- | --- | --- |
| Affiliation | Yale University, Center for Materials Innovation (CMI) | https://cmi.yale.edu/sustainable-materials |
| Research focus | Sustainable materials, structural engineering of wood and bamboo, bioinspired regenerative lignification, industrial ecology, and materials innovation | https://cmi.yale.edu/news, https://cmi.yale.edu/sustainable-materials, https://doi.org/10.1002/exp.20250303 |
| Facility | Center for Materials Innovation (CMI), Yale Building Lab | https://cmi.yale.edu/sustainable-materials, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |
| Grant | Yale Planetary Solutions Project grants, ARPA-E funding, DOE grant | https://cmi.yale.edu/news, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |
| Publications | Bioinspired Regenerative Lignification Enables Ultra‐Hard and Sustainable Bamboo Structural Materials (Exploration, 2026) | https://doi.org/10.1002/exp.20250303 |
| Principal staff | Liangbing Hu, Yuan Yao, Alan Organschi, Julie Zimmerman, Paul Anastas, Mark Ashton, Phillip Bernstein, Anna Dyson, Nikhil Malvankar | https://cmi.yale.edu/news, https://cmi.yale.edu/sustainable-materials, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |

Independent sources: cmi.yale.edu, doi.org, planetarysolutions.yale.edu

## Technologies

- [Cultivated wood & plant scaffolds](https://en.bioecon.ru/technology/cultivated-wood-plant-scaffolds/)
