Skip to main content
MaterialsStoriesBrandsEventsBooksTalksChannels
← Stories
Material Futures

Moving and self-healing light-responsive materials

News · Story by MaterialDistrict · 30 Sept 2018 · 1 min read

Researchers at Tufts University School of Engineering developed magnetic elastomeric composites that move in different ways when exposed to light, while researchers at MIT designed a polymer material that can change its structure in response to light.

Elastomeric composite
The light actuated materials created by the researchers at Tufts are based on the principle of the Curie temperature, the temperature above which certain materials change their magnetic properties. By heating and cooling a magnetic material, its magnetism can be turned on and off.

Biopolymers and elastomers doped with a ferromagnetic material will heat up when exposed to a laser or sunlight, temporary losing their magnetic properties until they cool down again. The movements of the material include bending, twisting and expansion.

The material could be used in a wide range of products, from tiny engines and valves, to solar arrays that bend toward sunlight.

Light-controlled polymer
The light-controlled polymer by MIT can change it structure in response to different wavelengths of light, converting from a rigid substance to a softer one that can heal itself when damaged.

The material consists of polymers attached to a light-sensitive molecule that can be used to alter the bonds formed within the material. When the material is exposed to ultra-violet light it is rigid, but when green light is shone upon it, it turns soft.

The material could be used to coat objects such as cars or satellites, giving them the ability to heal after being damaged. Another possible application for these materials is drug delivery.

Photos: Silklab/Tufts University / Felice Frankel / Demin Liu/Molgraphics

MDMaterialDistrict30 Sept 2018 · 1 min read
Enjoyed this story?Make MaterialDistrict a preferred source — see our stories first in Google.
Make MaterialDistrict your preferred source
Latest materials
  • Mush Surfaces – Bio-Lithic EditionMush Composites
  • ‘Carbon Capture’ tilesStudio Jesper Eriksson
  • OBRO – Leather-Infused Translucent PVC CompositeOkunote
All materials →

Follow the Transition

Choose your topics and stay updated on the innovations shaping a sustainable built environment.

Email updates:
Unlock all articles
Read every in-depth story

Insiders read every in-depth article, get quarterly trend reports and 1 free event entry per year.

Become an Insider — €10/mo

Related

  • ArticleSelf-Healing Composite Materials Could Redefine Long-Term Performance in Structural Design
  • ArticleA self-folding tulip made from common 3D printing material
  • ArticleNew soft-matter self-healing material can repair its circuit
  • ArticleSelf-healing rubber could mean the end of flat tires
  • ArticleSelf-Healing Material Activated By Water
  • ArticleBiocycle, technocycle and performative materials at MaterialDistrict Rotterdam
MaterialDistrict
The leading platform for innovative and sustainable materials — for architects, designers and manufacturers.

Choose your topics and stay updated on the innovations shaping a sustainable built environment.

Discover
MaterialsStoriesEventsTalksBooksBrands
For specifiers
Create free accountInsider membershipCompare materialsBoardsInsider insights
For manufacturers
List your materialsBrand profileReach 80,000+ specifiersSample requestsInnovation Fund
Company
About MaterialDistrictOur missionFrequently asked questionsContact
Contact
info@materialdistrict.com+31 (0)20 71 30 650
MaterialDistrict B.V.
Amsterdamsestraatweg 43-A2
NL-1411 AX Naarden
The Netherlands
Company Number 60837802
VAT Number NL854081732B01
LinkedInInstagramX
© 1998 – 2026 MaterialDistrictAdd MaterialDistrict to Google
Privacy policyAccessibilityCookiesTerms of use