Why Do Some Fruits and Vegetables Conduct Electricity? (2024)

Why Do Some Fruits and Vegetables Conduct Electricity? (1)

At any science fair, you're almost guaranteed to see at least two go-to experiments: the clichéd papier-mâché volcano and the ever-popular pickle or potato battery. Many people may think it's amazing that a simple piece of produce can conduct electricity. As it turns out, that's not the whole story.

There are many types of electrical conductors. These include traditional electrical conductors, such as the copper and silver wires that are used to run electrical currents in homes and buildings, and ionic conductors, which can power electricity via free moving ions. Organic material, such as human tissue or the potato in your science experiment, are ionic conductorsthat create ionic circuits. Electrolytes — chemical compounds that create ions when they are dissolved in water — in these materials do all of the work.

"Fruits and vegetables conduct electricity in the same way a salt solution will complete an electrical circuit," Michael Hickner, an associate professor of materials science and engineering at Penn State, told Live Science. "It's due to the ions in the salt solution. They don't conduct electrons [as traditional electrical conductors do] [How Do Batteries Work?]

An ionic conductor contains positive and negative charges —otherwise known as charged ions — that move freely when they come into contact with a voltage. For example, when table salt is dissolved in water, the sodium and chloride — which have opposite charges, as Na+ and Cl- — create an ionic solution, Hickner said. These ionic solutions are called electrolytesand can be found in every living thing. Because of this, technically, any fruit or vegetable could become an ionic conductor, but some are better at it than others. This is also why salt water or unfiltered tap water are better ionic conductors than filtered fresh water.

The best food battery is any fruit or vegetable that has high levels of superconductive ions, such as potassium or sodium, and the proper internal structure to create a working current. Potatoes, which have hom*ogenous structures, and pickles, which have high levels of sodium and acidity, are good examples of such foods. For an extra electrical "oomph," you can soak your potato in salt water before setting up the potato battery experiment, Hickner said.

In contrast, tomatoes have unorganized, messy insides and often leak, and even an orange — which has high levels of potassium— won't work well, because the flesh of the fruit is divided into internal compartments, and these create barriers that block the current, Paul Takhistov, an associate professor of food engineering at Rutgers University in New Jersey, told Live Science.

Some fruits and vegetables may be chock-full of superconductive ions, but you'll need a few more materials to turn these foods into batteries. The voltage from the battery comes from electrodes made of two different metals, such as copper and zinc, Hickner said. You can easily make a potato or pickle battery using a copper penny and a galvanized nail (which is usually made of iron coated with zinc).

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"The fruit or vegetable can't conduct on its own. It needs something to drive the ions," Takhistov said. "When you insert two different metals and connect them with wire, you create an electrical circuit.Then, when this material is brought in contact with the electrolytes, the battery reaction starts to generate the voltage. Because of the difference in electrical potential energy between the two metals, the positive and negative ions will begin to move freely."

But could a potato battery power, for example, a phone? Probably not.

A potato battery can produce only about 1.2 volts of energy. Takhistov said you would need to link many potato batteries in parallel to create enough of a current to charge a device like a phone or tablet. "At that point," Takhistov said, "it's probably just easier to use your phone charger."

Original story on Live Science.

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Why Do Some Fruits and Vegetables Conduct Electricity? (2024)

FAQs

Why Do Some Fruits and Vegetables Conduct Electricity? ›

"Fruits and vegetables conduct electricity in the same way a salt solution will complete an electrical circuit," Michael Hickner, an associate professor of materials science and engineering at Penn State, told Live Science. "It's due to the ions in the salt solution.

Why do some fresh fruits and vegetables conduct electricity? ›

The acidity in fruits, such as those containing hydrochloric acid and citric acid, enables them to generate electricity by breaking down into ions in a water solution 1. Fruits with high acidity, like citrus fruits, are capable of producing electrical current and can be used as power sources.

What fruits and vegetables can conduct electricity? ›

You can also use apples, pineapples, cucumbers, and tomatoes as well! The reason why is that these fruits and vegetables have the right amount of electrolytes in their composition. As I explained in the squishy circuits guide: an electrolyte is a fluid mixture that conducts electricity, usually because of salts.

Why do some fruits produce more electricity than others? ›

Depending on the number of ions these juices produce, they are able to have higher or lower voltages. In essence, the fruits that appear to have higher voltages produce more ions that attack the electrodes, compared to the fruits that have lower voltages.

What fruits do not conduct electricity? ›

Fruits such as oranges, apples, peach, and grapes are good conductors of electricity whereas fruits like kiwi, banana, Papaya, pineapple are poor conductors of electricity.

Which fruit vegetable is the best conductor of electricity? ›

The best electrodes are zinc and copper. The best fruit is an apple. The best vegetable is a carrot. The farther apart the electrodes, the better electricity is conducted.

What fruit makes the best battery? ›

However, after extensive tests we can report that lemons are still best for making fruit batteries.

Does cucumber conduct electricity? ›

Other vegetables that conduct electricity due to their potassium and ionic content are tomatoes, carrots, sweet potatoes and cucumbers.

Why do potatoes produce electricity? ›

Potato is rich in phosphoric acids and starch juices, making it a significant electrolyte that allows the swift movement of electrolytes. Potato battery projects can supply equivalent lighting compared to kerosene lamps, which are used in various underdeveloped parts of the world at one-fifth cost.

Does avocado conduct electricity? ›

Question: What fruit or vegetable is the best conductor of electricity? The avocado will be the best conductor of electricity because of the high amount of iron.

Is a potato a vegetable? ›

“Since the inception of the U.S. Department of Agriculture, it has classified potatoes correctly as a vegetable,” the letter reads. “There is no debate about the physical characteristics of the potato and its horticultural scientific classification.

Can bananas conduct electricity? ›

That's why bananas can also swipe right — they conduct electricity about as well as your finger. And if you put on a glove (on your finger or on the banana) you won't see any effect.

Do lemons or potatoes make better batteries? ›

Surprisingly a potato can produce approximately one volt while a lemon can produce approximately 0.7 volts.

What fruit produces the most electricity? ›

The highest electric current value is produced by tamarind fruit because the acid content is higher than soursop and mango. A high value of acid content can produce a high value of electric current because if a material has a high acid content, it will have a high concentration of H+.

Can lemons conduct electricity? ›

The lemon provides citric acid, and acids contain ions which conduct electricity, making the lemon our electrolyte.

What vegetables are electrically charged? ›

Electric Foods With High Bioelectric Charge

This makes them superfoods for our bodies. Foods with high bioelectric charge include cucumbers, approved greens, onions, seaweeds, avocados, limes, sesame seeds, Seville oranges, tomatoes, dandelions, and berries (except cranberry).

Why do fruits and vegetables give you energy? ›

As a study in Critical Reviews in Food Science and Nutrition notes, they contain nutrients, protein, and fiber that may help sustain energy levels throughout the day. They also contain good fats that may increase energy levels, and make fat-soluble nutrients more available in the body.

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