WSU physicists write with light, turn crystal into an electrical circuit | WSU Insider (2024)

WSU physicists write with light, turn crystal into an electrical circuit | WSU Insider (1)By Eric Sorensen, WSU Science Writer

PULLMAN, Wash.—Washington State University physicists have found a way to write an electrical circuit into a crystal, opening up the possibility of transparent, three-dimensional electronics that, like an Etch A Sketch, can be erased and reconfigured.

The work, to appear in the on-line journal Scientific Reports, serves as a proof of concept for a phenomenon that WSU researchers first discovered by accident four years ago. At the time, a doctoral student found a 400-fold increase in the electrical conductivity of a crystal simply by leaving it exposed to light.

WSU physicists write with light, turn crystal into an electrical circuit | WSU Insider (2)

Matt McCluskey, a WSU professor of physics and materials science, has now used a laser to etch a line in the crystal. With electrical contacts at each end of the line, it carried a current.

“It opens up a new type of electronics where you can define a circuit optically and then erase it and define a new one,” said McCluskey. “It’s exciting that it’s reconfigurable. It’s also transparent. There are certain applications where it would be neat to have a circuit that is on a window or something like that, where it actually is invisible electronics.”

WSU physicists write with light, turn crystal into an electrical circuit | WSU Insider (3)

Ordinarily, a crystal does not conduct electricity. But when the crystal strontium titanate is heated under the right conductions, it is altered so light will make it conductive. The phenomenon, called “persistent photoconductivity,” also occurs at room temperature. This makes it easier to improve conductivity than cooling materials with liquid nitrogen, another focus of research.

“We’re still trying to figure out exactly what happens,” said McCluskey. He surmises that heat forces strontium atoms to leave the material, creating light-sensitive defects responsible for the persistent photoconductivity.

McCluskey’s recent work increased the crystal’s conductivity 1,000-fold. The phenomenon can last up to a year.

“We look at samples that we exposed to light a year ago and they’re still conducting,” said McCluskey. “It may not retain 100 percent of its conductivity, but it’s pretty big.”

Moreover, the circuit can be by erased by heating it on a hot plate and recast with an optical pen.

“It’s an Etch A Sketch,” said McCluskey. “We’ve done it a few cycles. Another engineering challenge would be to do that thousands of times.”

The research was funded by the National Science Foundation. Co-authors on the paper are former students Violet Poole and Slade Jokela.

The work is in keeping with WSU’s Grand Challenges, a suite of initiatives aimed at addressing large societal problems. It is particularly relevant to the challenge of Smart Systems and its theme of foundational and emergent materials.

Media contact:

Eric Sorensen, Washington State University science writer, 509-335-4846, [email protected]

WSU physicists write with light, turn crystal into an electrical circuit | WSU Insider (2024)

FAQs

Can crystals conduct electricity? ›

In crystals, electrical current is due to the motion of both ions and electrons. Ions move by hopping occasionally from site to site; all solids can conduct electricity in this manner. When the voltage is zero, there is no net current because the ions hop randomly in all directions.

What are the electrical properties of crystals? ›

The electrical properties of crystals are the phenomena associated in some way or other with electrical polarization. In some cases this polarization is spontaneous, i.e., not induced by external effects; in others it may be due to the heating of a crystal, the application of an electric field, a mechanical load, etc.

What crystal creates electricity? ›

The most well-known, and the first piezoelectric material used in electronic devices is the quartz crystal.

Which crystals are good conductor of electricity? ›

Crystals which are good conductor of electricity and heat are known as metallic crystals.

What is the most conductive crystal? ›

The four rules for finding crystals with high thermal conductivity are that the crystal should have (1) low atomic mass, (2) strong bonding, (3) simple crystal structure, and (4) low anharmonicity. The prime example of such a solid is diamond, which has the highest known thermal conductivity at 300K.

Do crystals produce voltage? ›

For example, a 1 cm3 cube of quartz with 2 kN (500 lbf) of correctly applied force can produce a voltage of 12500 V. Piezoelectric materials also show the opposite effect, called the converse piezoelectric effect, where the application of an electrical field creates mechanical deformation in the crystal.

What is the stone that conducts electricity? ›

A unique characteristic of tourmaline is its ability to produce and hold an electric charge when heated, or physically stressed or squeezed. These characteristics are referred to as pyroelectric and piezoelectric, respectively. This is why tourmaline is also known as “the electric stone.”

Is crystal Electrically Conductive? ›

Ordinarily, a crystal does not conduct electricity. But when the crystal strontium titanate is heated under the right conductions, it is altered so light will make it conductive. The phenomenon, called “persistent photoconductivity,” also occurs at room temperature.

What type of crystal does not conduct electricity? ›

In an ionic crystal the ions can't move so they can't conduct. In addition, all of the electrons are “spoken for”, they are firmly attached to the ions and not free to move about the solid like in a metal. As a result, there are no movable charged particles and therefore no conduction (conduction = movement).

What gems can conduct electricity? ›

A unique characteristic of tourmaline is its ability to produce and hold an electric charge when heated, or physically stressed or squeezed. These characteristics are referred to as pyroelectric and piezoelectric, respectively. This is why tourmaline is also known as “the electric stone.”

What crystals react to electricity? ›

The side between kinetic and electrical corners represents the piezoelectric effect and produces no heat. Although artificial pyroelectric materials have been engineered, the effect was first discovered in minerals such as Quartz, Tourmaline, Londonite and other ionic crystals.

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