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Interesting Engineering

New robotic lab conducts 50,000 experiments, hits 27% efficiency in solar cells US firm to scale laser-based nuclear fusion ‘breakthrough’ with new partnership Military Archives - Interesting Engineering World’s first non-nuclear lead-cooled reactor to generate electricity begins installation US scientists devise new process to turn sewage sludge into 99% pure natural gas US firm unveils submarine-hunting drone with 9,200-mile-range, 35 mph top speed Military Archives - Interesting Engineering Supercomputer finds lithium-titanium tweak to boost sodium-ion batteries for grids Lockheed Martin demonstrates vertical launch missile system for mobile drone defense China’s 1116 MWe Taipingling Unit 1 reactor goes online, set to generate 9bn kWh yearly ChatGPT Images 2.0 update combines reasoning, research, and design with 2K output US Navy tests plug-and-play laser system on USS Bush carrier, downs drones at sea China’s CATL reveals 621-mile EV battery, under-7-minute charging to challenge BYD US uses world’s first exascale supercomputer to model supernovae, fusion reactors AI and Robotics Archives - Interesting Engineering First-in-human study confirms safety of graphene-based brain interface Tesla’s Optimus humanoid robot greets runners, poses for photos at Boston Marathon Interlocking materials offer high strength and flexibility for robotics, infrastructure US redeploys 100,000-ton nuclear-powered aircraft carrier in Red Sea after repairs US scientists unveil concept for ‘world’s first neutrino laser’ to unlock breakthroughs New military tech can maintain communication in contested electronic warfare environments Got a dark personality? Psychologists can help you choose your career wisely China demonstrates microwave beam that recharges drones in flight, continues power delivery Scientists run compact free-electron laser for eight hours, cracks FEL stability problem China’s PLA considers to use minelaying underwater drones to enforce Taiwan blockade: Report 1-ton sharks may struggle for survival in waters exceeding 62.6°F, study suggests US firm’s thorium nuclear fuel bundles move to manufacturing for commercial reactors Tesla hits 0% charge in remote Chilean desert as YouTuber uses hood-mounted solar Humanoid robot surpasses human world record in Beijing half-marathon, clocking 50:26 mins New method extracts maximum work from unknown quantum states using symmetry tricks
Humidity boosts performance of 3D-printed nanogenerator i...
Bojan Stojko · 2026-04-20 · via Interesting Engineering

Humidity usually kills static electricity – but not in every case. In dry air, a charged surface can hold energy for minutes. Add moisture, and that charge disappears almost instantly, as thin layers of water form and quietly conduct it away. This basic property of water has long limited the performance of triboelectric nanogenerators, or TENGs.

These devices generate electricity when two different materials come into contact and then separate, briefly exchanging charge. They have been widely seen as a potential power source for wearable sensors and implantable medical devices.

However, their efficiency typically drops sharply once humidity rises above 60–70 percent – a serious constraint, given that the human body and many real-world environments regularly exceed those levels.

Rethinking humidity by turning water into a power source

For years, researchers have tried to shield TENGs from moisture by making their surfaces water-repellent or sealing them inside protective casings. While effective to a point, these fixes add design complexity and struggle to scale across the intricate 3D structures demanded by modern wearable and implantable devices, Nanowerk reports.

A newer strategy takes the opposite direction: instead of resisting water, it embraces it. By engineering the tribolayer to be strongly hydrophilic, captured moisture can actively support charge generation rather than dissipate it. The challenge has been translating this concept into a material that is both printable and capable of delivering consistent, high performance.

A new study in Advanced Functional Materials introduces a material designed to work with humidity rather than against it. The researchers developed a photocurable resin that can be shaped using LCD 3D printing into fine, complex structures.

What sets it apart is its chemistry: the polymer network is packed with polar groups that attract and hold water molecules. Instead of degrading performance, this built-in moisture absorption enhances it. As humidity increases, the resulting films generate stronger output, turning a long-standing limitation of triboelectric nanogenerators into a functional advantage.

Charged polymers help nanogenerators thrive in high humidity 

Instead of testing a single material, the researchers compared three acrylic polymers, each crosslinked with polyethylene glycol diacrylate and formed into thin films about 200 micrometers thick. These materials include chemical groups (carboxyl, hydroxyl, and amide) that readily bond with water in the air. Among them, the amide-based version stood out, delivering the strongest performance, with output continuing to rise even as humidity reached 90 percent.

The team then pushed the concept further. They introduced a zwitterionic component, sulfobetaine methacrylate, which contains both positive and negative charges within the same molecule. This structure enhances polarization and draws in even more water, strengthening the material’s ability to generate electricity under humid conditions.

The best performance came at 5 wt%, where the device reached 45.6 microamperes, 802 volts, and 48.4 W/m² at 90% humidity – about twice the power of earlier designs, without inorganic fillers and still fully printable. At 10%, performance dropped as excess ions formed clusters, increasing conductivity and causing charge leakage. The key is balancing polarization gains against these losses.

Furthemore, simulations showed that water binds tightly to the polymer, boosting dipole strength, while Raman spectroscopy confirmed that water remains structured rather than forming conductive films, allowing output to rise with humidity.

The Blueprint

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Bojan Stojkovski is a freelance journalist based in Skopje, North Macedonia, covering foreign policy and technology for more than a decade. His work has appeared in Foreign Policy, ZDNet, and Nature.