Skip to main content
Communication Theory Lab
CTL
Communication Theory Lab
Home
News
Events
People
All People
Principal Investigator
Research Scientists
Postdoctoral Fellows
Students
Visiting Scholars
Former Members
Former Members from Texas A&M University
Former Members from University of Minnesota
Collaborators
Alumni
Research
Publications
Teaching
Funding
Media
Contact Us
Laser-derived graphene
Electrochemical sensors and biosensors using laser-derived graphene: A comprehensive review
1 min read ·
Tue, Sep 15 2020
News
Laser-derived graphene
Electrochemical Sensors
Laser-scribed graphene
Modified electrodes
Abdellatif Ait Lahcen, et al., "Electrochemical sensors and biosensors using laser-derived graphene: A comprehensive review." Biosensors and Bioelectronics 168, 2020, 112565. Laser-derived graphene (LDG) technology is gaining attention as a promising material for the development of novel electrochemical sensors and biosensors. Compared to established methods for graphene synthesis, LDG provides many advantages such as cost-effectiveness, fast electron mobility, mask-free, green synthesis, good electrical conductivity, porosity, mechanical stability, and large surface area. This review