Laser-induced graphene device built on wood, and fabrication method thereof
A laser system comprises a femtosecond laser, and a beam delivery system configured to deliver and scan a laser beam emanating from the femtosecond laser onto wood, based on a desired graphene design, wherein graphene is formed on the wood by the laser beam. A device capable of being fabricated by the laser system may include a temperature sensor which detects a temperature by measuring resistance of the graphene, a heater or a boiler which converts electrical energy to thermal energy, or electrical interconnects.
1 . A laser system comprising:
a femtosecond laser configured to output a laser pulse with a near-infrared wavelength, and
a beam delivery system configured to deliver and scan a laser beam emanating from the femtosecond laser onto wood, based on a desired graphene design,
wherein graphene is formed on the wood by the laser beam, and
wherein the beam delivery system is further configured to create an outline on a border of graphene electrodes by scanning the laser beam with a lower scanning speed than a reference speed, and filling up the graphene on an inside by scanning the laser beam with a high scanning speed than the reference speed.
2 . The system of claim 1 , wherein the graphene design is determined based on a device type to be patterned on the wood.
3 . The system of claim 2 , wherein the device type includes a temperature sensor which detects a temperature by measuring the resistance of the graphene.
4 . The system of claim 2 , wherein the device type includes a heater or a boiler which converts electrical energy to thermal energy by the Joule heating method.
5 . The system of claim 2 , wherein the device type includes electrical interconnects.
6 . The system of claim 1 , wherein the wood includes rubberwood, mulbau wood, or bamboo.