Scientists Build Soft Robots From Waste Onion Peels

Using porous carbon nanoparticles from waste onion peels, a team of scientists have developed soft robotic actuators with enhanced photomechanical capacity, the Department of Science and Technology said.

The actuators can act as efficient traps for illuminating low-power near-infrared (NIR) light and can convert a control signal into mechanical motion with bio-engineering applications such as drug delivery, wearable and assistive devices, prostheses, and even artificial organs.

Soft robots or actuators consisting of rubber-like polymer with embedded nanomaterial, which convert a source of energy to mechanical motion, have been gaining much interest with targeted applications in areas, including bio-medical, military, and remote space operations.

Generation of pre-designed motion facilitated by their flexibility, affordability, and easy customisation are the main reasons for such interest.

The high thermal conductivity of these nanoforms results in rapid distribution of the heat generated locally by thermal and photo-thermal stimuli, the DST said.

In the research work recently published in the ‘Journal of Nanostructure in Chemistry,’ the porous nano-carbons (PCN) was prepared from waste onion peels by Gurumurthy Hegde at the BMS College of Engineering in Bengaluru, it added.

The specific surface area of the high porosity PCNs were efficient traps for the illuminating low-power near-infrared (NIR) light resulting in the film comprising PCNs and PDMS achieving large magnitude (multi-mm) actuation with fast (sub-second) responses. These features are seldom obtained in single-layer films containing any other carbon nanostructure.

The researchers attribute the heat-trapping capability to the manner in which the PCN is prepared.

Pragnya Satapathy, a senior research fellow, said, “Exhaustive measurements performed show that the photothermal conversion efficiency and the heat-trapping capability is seen to be strongly correlated with the pyrolysis temperature employed for PCN preparation, and thus is an effective control parameter.”

As a value addition, the team also found with an additional ultrathin (30 nm) gold layer, the actuation magnitude could be more than doubled, and more importantly, bidirectional photo-controlled face-sensitive movement was realised.

As a novel application-oriented demonstration of the process, the team fabricated a near-infrared-driven electrical switch, which could activate LED circuits and could be used for other similar applications, it added.

Recent Posts

  • Featured

Delhi’s Dilemma: A Growing Economy, Growing Unemployment

India is on its way to becoming the third-largest economy in the world, yet unemployment among young people with graduate…

12 hours ago
  • Featured

Just 8% Of Women Candidates In First 2 Phases Of Lok Sabha Polls

In the first two phases of the Lok Sabha polls, women constituted only eight per cent of the total 1,618…

14 hours ago
  • Featured

A Job In A Warzone Or Unemployment At Home

Indian diplomatic missions need to closely monitor the security situation and assess the threat perceptions to its communities. Nation-making is…

14 hours ago
  • Featured

Nature Conservation Works And We’re Getting Better At It

To work in nature conservation is to battle a headwind of bad news. When the overwhelming picture indicates the natural…

2 days ago
  • Featured

The Challenges Of AI Weather Forecasting

Amid the surge of extreme weather events globally, billions of dollars are pouring into developing cutting-edge weather forecasting models based…

2 days ago
  • Featured

PM Modi Is Scared, He May Even Shed Tears On Stage: Rahul Gandhi

On Friday, April 26, Congress leader Rahul Gandhi retaliated against Prime Minister Narendra Modi over his attack on the grand…

2 days ago

This website uses cookies.