Scientists announced that they have developed a device that can be placed in the body and provide wireless charging using direct body energy. This technological advancement opens the doors to a future era in which mobile phones can be charged by collecting energy from users’ skin.
The rapid advancement of science and technology reveals an unexpected method to meet the energy requirements of mobile devices: charging through human skin.
Wireless Charging Chip That Can Be Integrated Under the Skin
Scientists from Lanzhou University in China, “wireless charging chip” developed a device that can be integrated under the skin, which they call. With the placement of this chip in the body, users will be able to get rid of large batteries and portable charging cables if successful.
This new technology, which has only been tested on rodents so far, could create a significant revolution if it is made available to humans. Developed prototype, Ability to transfer energy wirelessly from the body or has the ability to use the body to recharge batteries. With its flexible and soft structure, the chip can adapt to body tissue in cases requiring surgery and is biodegradable.

Does Not Require Surgical Intervention
While most bioelectronic devices operate for a limited time with built-in batteries, this newly developed charger has the ability to dissolve in the body and does not require surgical intervention. The developed prototype has the ability to transfer energy wirelessly from the body or use the body to charge batteries.
It has a flexible and soft structure The chip can also adapt to the shape of body tissue and is biodegradable in cases requiring surgery.
Most bioelectronic devices operate on built-in batteries of limited capacity. These devices are often connected to an external power source and can pose a risk of infection to patients, especially when parts need to be replaced. This newly developed chip may offer a promising solution to overcome such problems.
The prototype was successfully used on mice for up to ten days and completely dissolved in the body within two months. However, more testing and development is required before it can be used in humans. The research team plans to conduct prospective studies to overcome the technical difficulties of the device and test it on humans.
