Sunday, August 2, 2026
Science
No Result
View All Result
  • Login
  • HOME
  • SCIENCE NEWS
  • CONTACT US
  • HOME
  • SCIENCE NEWS
  • CONTACT US
No Result
View All Result
Scienmag
No Result
View All Result
Home Science News Space

MIT engineers design tiny batteries for powering cell-sized robots

August 16, 2024
in Space
Reading Time: 4 mins read
0
MIT engineers design tiny batteries for powering cell-sized robots
68
SHARES
616
VIEWS
Share on FacebookShare on Twitter
ADVERTISEMENT

A tiny battery designed by MIT engineers could enable the deployment of cell-sized, autonomous robots for drug delivery within in the human body, as well as other applications such as locating leaks in gas pipelines.

Microbatteries

Credit: Courtesy of Michael Strano, et al

A tiny battery designed by MIT engineers could enable the deployment of cell-sized, autonomous robots for drug delivery within in the human body, as well as other applications such as locating leaks in gas pipelines.

The new battery, which is 0.1 millimeters long and 0.002 millimeters thick — roughly the thickness of a human hair — can capture oxygen from air and use it to oxidize zinc, creating a current of up to 1 volt. That is enough to power a small circuit, sensor, or actuator, the researchers showed.

“We think this is going to be very enabling for robotics,” says Michael Strano, the Carbon P. Dubbs Professor of Chemical Engineering at MIT and the senior author of the study. “We’re building robotic functions onto the battery and starting to put these components together into devices.”

Ge Zhang PhD ’22 and Sungyun Yang, an MIT graduate student, are the lead author of the paper, which appears in Science Robotics. 

Powered by batteries

For several years, Strano’s lab has been working on tiny robots that can sense and respond to stimuli in their environment. One of the major challenges in developing such tiny robots is making sure that they have enough power. 

Other researchers have shown that they can power microscale devices using solar power, but the limitation to that approach is that the robots must have a laser or another light source pointed at them at all times. Such devices are known as “marionettes” because they are controlled by an external power source. Putting a power source such as a battery inside these tiny devices could free them to roam much farther.

“The marionette systems don’t really need a battery because they’re getting all the energy they need from outside,” Strano says. “But if you want a small robot to be able to get into spaces that you couldn’t access otherwise, it needs to have a greater level of autonomy. A battery is essential for something that’s not going to be tethered to the outside world.”

To create robots that could become more autonomous, Strano’s lab decided to use a type of battery known as a zinc-air battery. These batteries, which have a longer lifespan than many other types of batteries due to their high energy density, are often used in hearing aids. 

The battery that they designed consists of a zinc electrode connected to a platinum electrode, embedded into a strip of a polymer called SU-8, which is commonly used for microelectronics. When these electrodes interact with oxygen molecules from the air, the zinc becomes oxidized and releases electrons that flow to the platinum electrode, creating a current.

In this study, the researchers showed that this battery could provide enough energy to power an actuator — in this case, a robotic arm that can be raised and lowered. The battery could also power a memristor, an electrical component that can store memories of events by changing its electrical resistance, and a clock circuit, which allows robotic devices to keep track of time.

The battery also provides enough power to run two different types of sensors that change their electrical resistance when they encounter chemicals in the environment. One of the sensors is made from atomically thin molybdenum disulfide and the other from carbon nanotubes.  

“We’re making the basic building blocks in order to build up functions at the cellular level,” Strano says.

Robotic swarms

In this study, the researchers used a wire to connect their battery to an external device, but in future work they plan to build robots in which the battery is incorporated into a device.

“This is going to form the core of a lot of our robotic efforts,” Strano says. “You can build a robot around an energy source, sort of like you can build an electric car around the battery.”

One of those efforts revolves around designing tiny robots that could be injected into the human body, where they could seek out a target site and then release a drug such as insulin. For use in the human body, the researchers envision that the devices would be made of biocompatible materials that would break apart once they were no longer needed.

The researchers are also working on increasing the voltage of the battery, which may enable additional applications.

The research was funded by the U.S. Army Research Office, the U.S. Department of Energy, the National Science Foundation, and a MathWorks Engineering Fellowship.

###

Written by Anne Trafton, MIT News

Paper: “High energy density picoliter-scale zinc-air microbatteries for colloidal robotics”



Journal

Science Robotics

DOI

10.1126/scirobotics.ade4642

Article Title

High energy density picoliter-scale zinc-air microbatteries for colloidal robotics

Article Publication Date

14-Aug-2024

Share27Tweet17
Previous Post

Exploring Huntington’s disease, researchers discover that protein aggregates poke holes in nuclear membrane

Next Post

Advanced U-net segmentation model using residual grouped convolution and attention mechanism for brain tumor MRI image segmentation

Related Posts

How Solar Wind Is Stripping Mars of Its Atmosphere
Space

How Solar Wind Is Stripping Mars of Its Atmosphere

August 1, 2026
Moonquakes Help Scientists Locate Hidden Lunar Ice Deposits
Space

Moonquakes Help Scientists Locate Hidden Lunar Ice Deposits

July 31, 2026
UCF Opens FAA-Designated Clinic to Keep Pilots Flight-Ready
Space

UCF Opens FAA-Designated Clinic to Keep Pilots Flight-Ready

July 31, 2026
Black hole feeding frenzy ends in cosmic indigestion
Space

Black hole feeding frenzy ends in cosmic indigestion

July 30, 2026
Black hole “blast” reaches 300,000 light years
Space

Black hole “blast” reaches 300,000 light years

July 29, 2026
Zhurong Observations Reveal Primary Evaporite Deposits in Mars Utopia Planitia
Space

Zhurong Observations Reveal Primary Evaporite Deposits in Mars Utopia Planitia

July 29, 2026
Next Post
Advanced U-net segmentation model using residual grouped convolution and attention

Advanced U-net segmentation model using residual grouped convolution and attention mechanism for brain tumor MRI image segmentation

  • Mothers who receive childcare support from maternal grandparents show more

    Mothers who receive childcare support from maternal grandparents show more parental warmth, finds NTU Singapore study

    27656 shares
    Share 11059 Tweet 6912
  • University of Seville Breaks 120-Year-Old Mystery, Revises a Key Einstein Concept

    1061 shares
    Share 424 Tweet 265
  • Bee body mass, pathogens and local climate influence heat tolerance

    682 shares
    Share 273 Tweet 171
  • Researchers record first-ever images and data of a shark experiencing a boat strike

    546 shares
    Share 218 Tweet 137
  • Groundbreaking Clinical Trial Reveals Lubiprostone Enhances Kidney Function

    531 shares
    Share 212 Tweet 133
Science

Embark on a thrilling journey of discovery with Scienmag.com—your ultimate source for cutting-edge breakthroughs. Immerse yourself in a world where curiosity knows no limits and tomorrow’s possibilities become today’s reality!

RECENT NEWS

  • Brain Researchers Identify Canonical Circuit for Estimating Excitation-Inhibition Balance
  • Dietary Diversity Linked to Frailty and Prefrailty in Japan’s Hisayama Population
  • Feasibility Study Tests Pharmacogenetic-Guided Antidepressants for Depression in Young Western Australians
  • Machine Learning Imaging Predicts Parkinson’s Genotype, Mitochondrial-Lysosomal Abnormalities in iPS Neurons

Categories

  • Agriculture
  • Anthropology
  • Archaeology
  • Athmospheric
  • Biology
  • Biotechnology
  • Blog
  • Bussines
  • Cancer
  • Chemistry
  • Climate
  • Earth Science
  • Editorial Policy
  • Marine
  • Mathematics
  • Medicine
  • Pediatry
  • Policy
  • Psychology & Psychiatry
  • Science Education
  • Social Science
  • Space
  • Technology and Engineering

Subscribe to Blog via Email

Success! An email was just sent to confirm your subscription. Please find the email now and click 'Confirm Follow' to start subscribing.

Join 5,147 other subscribers

© 2025 Scienmag - Science Magazine

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • HOME
  • SCIENCE NEWS
  • CONTACT US

© 2025 Scienmag - Science Magazine