• About Us
  • Submit Project
  • Advertise
  • NewsLetter
PA
Subscribe
  • Articles
    • Archipreneurs
    • Technology
    • Bim / Aec
    • 3D Printing
    • Architects
    • Artificial Intelligence
    • Robotics
    • Sustainability
    • Tools
    • Case Study
    • City Guide
    • Opinions
    • Interviews
    • Architecture & Design
      • Urbanism
      • Metaverse
      • Space Architecture
      • Geography
  • Projects
    • Architecture
    • Interior
    • Design
      • Fashion
      • Pavilion
      • Installation
      • Digital Art
      • Landscape Design
    • Products
  • News
  • Workshops
  • PA Talks
  • Videos
  • Books
  • More
    • PA+ Membership
    • Courses
    • Competitions
    • Events
    • Jobs
    • About Us
    • Contact Us
Font ResizerAa
PAPA
Search
  • Articles
    • Archipreneurs
    • Technology
    • Bim / Aec
    • 3D Printing
    • Architects
    • Artificial Intelligence
    • Robotics
    • Sustainability
    • Tools
    • Case Study
    • City Guide
    • Opinions
    • Interviews
    • Architecture & Design
  • Projects
    • Architecture
    • Interior
    • Design
    • Products
  • News
  • Workshops
  • PA Talks
  • Videos
  • Books
  • More
    • PA+ Membership
    • Courses
    • Competitions
    • Events
    • Jobs
    • About Us
    • Contact Us
Follow US
PA > Blog > Architecture News > Cornell Researchers Develop Flexible Solar Fabric That Tracks the Sun
Architecture News

Cornell Researchers Develop Flexible Solar Fabric That Tracks the Sun

Last updated: July 30, 2025 8:28 am
Isha Chaudhary
Isha Chaudhary
ByIsha Chaudhary
Isha Chaudhary is an architecture writer who follows and writes about current trends and emerging discussions in architecture, with a focus on design, technology, and place-making.
Share
List of Images 1/6
SHARE

Cornell University’s HelioSkin project has brought to life a flexible, photovoltaic fabric inspired by plant biology. This photovoltaic textile merges engineering, biology, and architecture, offering lightweight solar power collection that could wrap around curved surfaces from backyard canopies to stadiums and skyscrapers.

Contents
  • Bio-Inspired Design: HelioSkin’s Solar Fabric Innovation
  • HelioSkin’s Market Potential and Use Cases
  • HelioSkin Details

Bio-Inspired Design: HelioSkin’s Solar Fabric Innovation

HelioSkin takes its cue from heliotropism, the phenomenon by which plants, such as sunflowers, track the sun throughout the day. Researchers studied Arabidopsis, a model plant that bends its stem up to 90° toward the light by growing cells on the shaded side approximately 25% larger in size.

Using that insight, the team translates cellular growth patterns into computational models and structural form, enabling a fabric that morphs slowly over its surface to follow the sun, without motors or heavy mechanisms.

The development of HelioSkin is the result of a unique collaboration between experts from architecture, physics, and plant biology. At the forefront is architect Jenny Sabin, whose work focuses on adaptive design and material innovation. She is joined by physicist Itai Cohen, known for his research on dynamic systems and material behavior, and plant biologist Adrienne Roeder, who brings deep insight into plant growth patterns and morphology. 

Together, they combine origami/kirigami patterns, 3D printing, digital fabrication, and soft substrates to create solar modules that bend, stretch, and flex while maintaining energy performance.

As Sabin explains: “We’re passionate not only to produce energy passively, but also to create transformational environments. Sustainability is about performance and function, but equally, it’s about beauty.”

In its first real-world application, the HelioSkin team is creating a 150-square-foot solar canopy designed for outdoor environments like patios or small public spaces. Unlike traditional rigid panels, this flexible structure can subtly track the sun across the sky throughout the day, improving energy capture without relying on motors or heavy hardware.

To get this pilot off the ground, the project received $650,000 in Phase I funding from the U.S. National Science Foundation’s Convergence Accelerator program. The team is now seeking an additional $5 million to expand development over the next three years. The goal is to refine key elements like sensing systems, energy wiring, surface geometry, and manufacturing scalability, making the technology ready for broader deployment.

HelioSkin’s Market Potential and Use Cases

HelioSkin is a flexible, stretchable fabric that can conform to almost any surface, including curves and irregular shapes. That opens up possibilities far beyond rooftop building façades, shade structures, public art installations, and more. Despite its unconventional design, HelioSkin competes closely with traditional solar panels in terms of both energy output and cost per watt.

A key part of the project’s success is the involvement of industry partners. E Ink is contributing expertise in integrating dynamic e-paper displays, enabling surfaces that can change appearance or convey information. Rainier Industries is helping engineer the durable, flexible substrate materials, while SunFlex is optimizing the photovoltaic components to ensure maximum efficiency.

A surprising application emerged using HelioSkin as dynamic, solar‑powered advertising skins, where E Ink display features can shift patterns or branding, ideal for retail façades or stadium exteriors.

Buildings account for approximately 40% of U.S. greenhouse‑gas emissions, while heating, cooling, and lighting contribute ~28% of CO₂ output. HelioSkin addresses both energy and architectural design challenges, making solar energy visually appealing and functional on complex geometries.

Cornell’s photovoltaic fabric, HelioSkin, is a solar product in renewable energy integration. It combines plant-inspired adaptability, architectural design, and scalable fabrication to provide solar power in a form that people want to see and use.

A rendering of a solar backyard canopy prototype. Image: Jenny Sabin Lab

HelioSkin Details

  • Mechanism: Bio-inspiration from heliotropism, Arabidopsis stem curvature
  • Fabric design: Origami/kirigami patterns, stretchable photovoltaic substrate
  • Pilot prototype size: ~150 sq ft backyard canopy, dual-axis tracking
  • Industry partners: E Ink, Rainier Industries, SunFlex
  • Potential applications: Retractable roofs, building skins, solar advertising displays.

Image Credit: Jenny Sabin Lab/Cornell University

TAGGED:Bio-inspired designcornell universityHelioSkinsolar fabric
Share This Article
Email Copy Link Print
ByIsha Chaudhary
Isha Chaudhary is an architecture writer who follows and writes about current trends and emerging discussions in architecture, with a focus on design, technology, and place-making.
Previous Article Earth Architecture at Yacademy: How to Design Sustainable Futures with Bricks
Next Article 3,500-Year-Old City of Peñico Discovered in Peru, Bridging Coast, Andes, and Amazon

More Stories

Construction Projects

Beyond the Architect: Rethinking Power and Hierarchy in Contemporary Construction Projects

By
Mahshid Motamed
How AI Is Transforming Outdoor Living Spaces Beyond The House

How AI Is Transforming Outdoor Living Spaces Beyond The House

By
PA Editorial Team
2026 FIFA World Cup Stadiums

5 Infrastructure Lessons from FIFA World Cup 2026: What Future Host Cities Must Learn

By
Pooja Khanna Tyagi
Miami Bay Towers

Miami Bay Towers Brings Four Sculptural Forms to Biscayne Bay

By
Isha Chaudhary
Origami architecture

Top 10 Buildings Shaped by the Art of Origami Folding in Architecture

By
Arpitha S
Sarnath

Sarnath Becomes India’s 45th UNESCO World Heritage Site

By
Isha Chaudhary
Korean Football Park

UNStudio Completes Korean Football Park in Cheonan

By
Isha Chaudhary
Iranian Architecture

A Legacy Built in Brick and Geometry: Arches in Iranian Architecture

By
Mahshid Motamed
Tianmeng Tower

Woods Bagot Shapes the IGG Tianmeng Tower Around Fuzhou’s Iconic Banyan Tree

By
Isha Chaudhary

Motion in the Shell by Melike Altinisik Architects

By
Hamid Hassanzadeh
Previous Next

Subscribe Newsletter

- Upcoming Workshop-
Ad image

You Might Also Like

Architecture & DesignArchitecture News

Ghibli Style Architecture: 15 Modern Masterpieces Turned Skylines into a Dreamworld

March 30, 2025
Architecture News

Jeddah Kingdom Tower: Saudi Arabia’s Monument to the Sky

May 30, 2025
Architecture News

Venice Architecture Biennale announced that Carlo Ratti will be the curator of 2025

August 6, 2024
Architecture News

Foster + Partners revealed plans for a 200-meters-tall tower in London

August 7, 2023
PA

© All rights reserved. Parametric Architecture (2018-2026) - ISSN 3023-7564

Facebook Twitter Youtube Rss Medium

Get to Know Us

  • Architecture
  • Design
  • Digital Art
  • Fashion
  • Installation
  • Pavilion
  • Interior
  • Products

© 2026 ParametricArchitecture. All Rights Reserved. By utilizing this website, you are consenting to our User Agreement, Privacy Policy, and Cookie Statement. In compliance with the privacy laws of Turkey and the United States, we recognize and respect your rights. Please be aware that we may receive commissions for products bought through our affiliate links. Unauthorized reproduction, distribution, or transmission of any material from this site is strictly forbidden without prior written permission from ParametricArchitecture.

Join Us!
Subscribe to our newsletter and never miss our latest news, podcasts etc..
Please check admin setting to display form corretly.
Zero spam, Unsubscribe at any capitalpost.
Welcome Back!

Sign in to your account

Username or Email Address
Password

Lost your password?