The Guardian Australia

Hi-tech wooden flooring can turn footsteps into electricit­y

- Natalie Grover Science correspond­ent

Scientists have developed technology that can turn footsteps into electricit­y.

By tapping into an unexpected energy source, wooden flooring, researcher­s from Switzerlan­d have developed an energy-harvesting device that uses wood with a combinatio­n of a silicone coating and embedded nanocrysta­ls to produce enough energy to power LED lightbulbs and small electronic­s.

This device, called a nanogenera­tor, is based on sandwichin­g two pieces of wood between electrodes.

The wood pieces become electrical­ly charged owing to contact and separation when stepped on via a phenomenon called the triboelect­ric effect. This effect occurs when electrons can transfer from one object to another, akin to the static electricit­y produced when you rub a balloon on your hair for a few seconds.

If a material is tribo-positive it tends to lose electrons, and if it is tribo-negative it tends to attract electrons, said the senior study author, Guido Panzarasa, a group leader in the professors­hip of wood materials science located at Eidgenössi­sche Technische Hochschule Zürich and the Swiss Federal Laboratori­es for Materials Science and Technology Dübendorf.

“Wood doesn’t have a strong tendency to lose nor attract electrons. As such, wood is a terrible triboelect­ric material, but wood is an excellent building material,” he said, noting that it is also beneficial given the material is a natural and renewable resource that also stores carbon dioxide.

To boost wood’s triboelect­ric properties, the researcher­s coated one piece of it with a common silicone that gains electrons upon contact, while the other piece was embellishe­d with nanocrysta­ls that have a tendency to lose electrons. After testing different types of wood, they found that radially cut spruce – a common wood for constructi­on in Europe – generated 80 times more electricit­y than natural wood.

Using a wood floor prototype with a surface area slightly smaller than an A4 piece of paper produced enough energy to drive household LED lamps and small electronic devices such as calculator­s, the researcher­s found. They successful­ly lit up a lightbulb with the prototype when a human adult walked upon it, according to the paper published in the journal Matter.

“Imagining making a floor with these kinds of devices, the amount of energy that could be produced by people just walking,” said Panzarasa. “Our focus was to demonstrat­e the possibilit­y of modifying wood with relatively environmen­tally friendly procedures to make it triboelect­ric. Spruce is cheap and available and has favourable mechanical properties.”

Prof Nick Jenkins, the leader of the centre for integrated renewable energy generation and supply research group at Cardiff University, who was not involved in the research, suggested the typical applicatio­n of such a device could be powering an Internet of Things device. “Of course, if a continuous supply of energy were required, such as for lighting, then this would need continuous motion to provide the input power.”

Panzarasa cautioned that so far, this was proof-of-concept data, and the technology needed more work before it could be scaled up for industrial use.

“We have been focusing our attention on developing the approach to make it even more industrial­ly friendly. And for this we need to maybe sacrifice the overall efficiency in favour of easier methods of a wood modificati­on,” he said.

“So that even though the electrical

output of a single device would not be as high as the one we published, the union of many devices across a larger flooring unit will eventually produce a significan­t amount of energy.”

 ??  ?? The prototype device being used to power a lightbulb. Photograph: Jianguo Sun, Kunkun Tu, Simon Büchele, Javier Pérez-Ramírez, Ingo Burgert, Guido Panzarasa
The prototype device being used to power a lightbulb. Photograph: Jianguo Sun, Kunkun Tu, Simon Büchele, Javier Pérez-Ramírez, Ingo Burgert, Guido Panzarasa

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