Jump to HeaderJump to Main ContentJump to Footer
Michigan State University
  • Browse Stories By

    Topics

    Explore stories by subject area

    • Arts and Culture
    • Business and Economy
    • Climate and Environment
    • Education and Learning
    • Engineering, Science and Technology
    • Government and Society
    • Health and Medicine
    • Media and Communications
    • MSU Leadership and Impact
    • Sports and Recreation
    • Student and Campus Experience
    View All Stories

    Collections

    Curated story series

    • Turfgrass
    • Ask the Expert
    • Big Ideas
    • Climate solutions
    • Water at MSU
    • Mobility
    • Spartan Perspectives
    • Student views
    • Graduate voices
    • Faculty voices
    View All Collections

    Featured

    Editor's picks

    • The Spartans behind your favorite Michigan golf courses

      July 22, 2026

      The Spartans behind your favorite Michigan golf courses

    • MSU in the 1990s: 10 Spartan milestones

      July 14, 2026

      MSU in the 1990s: 10 Spartan milestones

MSUTODAY
  • Browse Stories By

< Browse Stories By

Topics

Explore stories by subject area

  • Arts and Culture
  • Business and Economy
  • Climate and Environment
  • Education and Learning
  • Engineering, Science and Technology
  • Government and Society
  • Health and Medicine
  • Media and Communications
  • MSU Leadership and Impact
  • Sports and Recreation
  • Student and Campus Experience
  • View All Stories

Collections

Curated story series

  • Turfgrass
  • Ask the Expert
  • Big Ideas
  • Climate solutions
  • Water at MSU
  • Mobility
  • Spartan Perspectives
  • Student views
  • Graduate voices
  • Faculty voices
  • View All Collections

Featured

Editor's picks

  • The Spartans behind your favorite Michigan golf courses

    July 22, 2026

    The Spartans behind your favorite Michigan golf courses

  • MSU in the 1990s: 10 Spartan milestones

    July 14, 2026

    MSU in the 1990s: 10 Spartan milestones

  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information

Resources

  • A to Z Index
  • Find People
  • Maps
  • Email
  • Student Information System (SIS)
  • D2L
  • Libraries
  • Tech Support
  • MSU Misconduct Hotline
  • Social Media Directory
  • Events Calendar
  • For Media
Michigan State University
MSUToday
  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information
MSUTODAY
Natural Sciences

June 26, 2017

Finding new solar power

By: Layne Cameron

Unless you have unlimited funds, finding solar power that is affordable and highly efficient is largely out of reach. A Michigan State University chemist is hoping to change that.

Thomas Hamann, the James L. Dye Chair in Materials Chemistry, intends to use a $465,000 grant from the U.S. Department of Energy to create a new paradigm for capturing solar energy.

“We’re capable of making photovoltaics that are close to 50 percent efficient, but only NASA can afford those,” Hamann said. “Little changes to existing technology won’t cut it; we need to make paradigm changes and discover new approaches.”

Hamann is working on a platform called a dye-sensitized solar cell that is potentially quite cost effective. His big challenge is to make them more efficient. These solar cells comprise three components: a semiconductor; dye, which acts as the light absorber; and redox molecules that shuttle electrons. Hamann is exploring new materials for semiconductors as well as new redox molecules.

“We’re making new redox molecules and combining them with various semiconductors to understand and control recombination – the back reaction that generally limits the efficiency of solar cells,” Hamann said. “There’s probably been more than 1,000 dyes tested, but little research has focused on developing new materials or redox molecules.”

The best dye-sensitized solar cells achieve more than 10 percent solar-to-electricity power conversion efficiency. They fall short of their 20-percent potential level largely because of energy lost in each electron-transfer step, Hamann said.

One way Hamann and his team are tackling this issue is by developing new cobalt-based redox shuttles. By changing the ligands that bind to the cobalt center, he has shown they can control the rate of electron transfer by a factor of a billion. Combined with the ability to modify the redox potential, this paradigm offers the possibility to quickly transfer electrons where they are needed, but not suffer from recombination. 

“All redox shuttles investigated to date have been generally constrained to a small potential window in order to minimize the driving force of dye regeneration with optimized, existing dyes,” Hamann said. “This energy constraint limits the ability to fully understand and optimize the kinetics.”

By elevating redox shuttles into the research spotlight, Hamann hopes to open up new paths to improved performance through kinetic manipulation. He’s also looking forward to the new science this will spur.

“Our ultimate goals are to develop a next-generation solar cell as well as eventually find a way to convert it to a carbon-free liquid fuel,” Hamann said. “Solving the conundrum of finding renewable energy has always been a goal of my research. I enjoy attempting to solve important problems, and I believe we can find sustainable approaches, build new transmission lines and develop new storage batteries to solve these issues.”

MEDIA CONTACTS

Thomas Hamann
Natural SciencesEngineering, Science and Technology

Latest News

MSUToday Weekly Update

The MSUToday Weekly Update email showcases how Spartans are making a difference through academic excellence, research impact and community outreach. Get inspired by these stories of innovation, collaboration and determination. Plus, enjoy photos and videos of campus and more MSU content to help keep you connected to the Spartan community.

Sign UpUpdate My Information

Connect With Us

Visit our Facebook pageVisit our page on XVisit our Instagram pageVisit our LinkedIn pageVisit our YouTube pageVisit our TikTok page

Health and Safety

  • MSU Police and Public Safety
  • Olin Health Center
  • Counseling & Psychiatric Services (CAPS)
  • University Health and Wellbeing
  • MSU Health Care
  • Civil Rights and Title IX
  • Our Commitment
  • Center for Survivors
  • Security & Fire Safety Report
  • University Policy on Relationship Violence and Sexual Misconduct
  • Notice of Non-Discrimination, Anti-Harassment and Non-Retaliation
  • Health Care Non-Discrimination Notice

Support Services

  • Disability Resources
  • Supportive Services
  • Learning Resources

Working at MSU

  • Human Resources
  • EBS Login
  • Job Postings
  • Employee Assistance Program

Reports

  • CARES Act Funding
  • Student Achievement and Outcomes

Contact us

517-355-1855

Address

Michigan State University 426 Auditorium Road East Lansing, MI 48824

Follow Us

  • Visit our Facebook page
  • Visit our page on X
  • Visit our Instagram page
  • Visit our TikTok page
  • Visit our LinkedIn page
  • Visit our YouTube page

If you're having accessibility issues, please let us know.

Know More: Campus Safety Information and ResourcesTransparency Reporting: Budget & Salary/Compensation
  • Contact Information|
  • Site Map|
  • Privacy Statement|
  • Site Accessibility|
  • Call MSU: (517) 355-1855|
  • Visit: msu.edu|
  • Notice of Nondiscrimination|

SPARTANS WILL|© Michigan State University|