Vasili Perebeinos

PhD

Vasili Perebeinos.

Vasili Perebeinos

PhD

Vasili Perebeinos

PhD

Specialty/Research Focus

Theory and modelling of electrical and optical properties of low dimensional materials such as carbon nanotubes, graphene, and other 2D materials

Biography Teaching Research Latest News

Latest News

  • UB scientists awarded Genesis Mission grants for AI-focused research
    7/24/26

    The funding supports UB’s efforts to develop new technologies that boost the nation’s industrial competitiveness, address complex challenges.

  • Researchers measure giant light-conversion effect in chiral carbon nanotubes
    6/3/26

    Technology.org featured research by Vasili Perebeinos and colleagues from Rice University on using films of carbon nanotubes to convert the color of light at greater magnitudes than conventional materials. 

  • UB receives $2.4 million grant to develop Earth’s thinnest materials for space tech
    11/8/23

    The team will use AI and quantum science to apply 2D materials to satellite sensors, radiation shields and quantum computing.

  • Your hard drive may one day use diamonds for storage
    5/4/22
    Lifewire quotes Vasili Perebeinos, professor of electrical engineering, in a story on how diamonds may eventually be used to store massive amounts of computer data.
  • SUNY collaboration explores quantum computing network
    4/8/22
    An article on Technology.org reports on SUNY-wide research of quantum computing networks and quotes the study’s lead author Vasili Perebeinos, professor of electrical engineering.
  • New project will improve chip performance
    3/23/22
    Power Systems Design reported that UB has been chosen by the Department of Defense (DoD) to lead a $7.5 million project that will develop new concepts to perform precision testing of the important qualities of semiconductor chips.
  • UB to lead $7.5 million project to improve computer chip reliability and security via revolutionary testing advancements
    3/21/22
    Sciencemag reported that UB has been selected by the Department of Defense to lead a $7.5 million project to develop new concepts for precision testing of important qualities of semiconductor chips.