USB-powered morphing structure

Our latest prototype can be powered by a standard smartphone charger, showing how easily our technology can integrate into everyday life products.

Published in Materials

Like

Share this post

Choose a social network to share with, or copy the URL to share elsewhere

This is a representation of how your post may appear on social media. The actual post will vary between social networks

In addition to these advanced features, the structure is simple to manufacture and - in comparison to most other morphing structures - very affordable. If you have access to a 3D printer and silicone resin, you can start making these structures right away. This opens up possibilities across industries, from biomedical devices and aerospace to robotics and automotive design. We are especially committed to making this technology accessible for a wide range of applications.

Follow the Topic

Bioinspired Materials
Physical Sciences > Materials Science > Soft Materials > Bioinspired Materials

Related Collections

With Collections, you can get published faster and increase your visibility.

Cancer Prevention and Control

This cross-journal collection will consider submissions of research Articles and Registered Reports that advance the science and practice of cancer prevention, including strategies to reduce cancer risk and improve early detection.

Publishing Model: Hybrid

Deadline: Feb 19, 2027

Healthy Aging

This collection welcomes submissions based on studying preclinical models, as well as population-wide and clinical studies. Studies that advance our understanding of mechanisms behind healthy aging are also welcomed. Clinical research of interest will include epidemiological studies, observational studies, longitudinal cohort studies, systematic reviews and clinical trials.

Publishing Model: Open Access

Deadline: Dec 31, 2026