April 7 - 11, 2025
Seattle, Washington
Symposium Supporters
2025 MRS Spring Meeting & Exhibit
MT04.05.12

Z-Schematic Ta3N5-Si Photoanode with Enhanced Light Harvesting and Charge Transport

When and Where

Apr 8, 2025
5:00pm - 7:00pm
Summit, Level 2, Flex Hall C

Presenter(s)

Co-Author(s)

Hee Ryeong Kwon1,Seon Ju Park1,Soomin Lee1,Ho Won Jang1

Seoul National University1

Abstract

Hee Ryeong Kwon1,Seon Ju Park1,Soomin Lee1,Ho Won Jang1

Seoul National University1
Simultaneous enhancement of light harvesting and charge transport in photoelectrochemical (PEC) systems is a major challenge to achieving high solar-to-hydrogen efficiency. Here, a Ta3N5-Si Z-scheme system is constructed to facilitate charge transport pathways from generation to catalysis, taking advantage of the exquisite bandgap and band position of Ta3N5. The tailored Ta3N5-Si junction with an NbNx electron mediator effectively establishes a Z-scheme charge transport and enhances the driving force for water oxidation, reducing the onset potential by an increment in photovoltage. Moreover, the nitrogen-doped CoFeOx co-catalyst boosts hole dynamics and kinetics at the surface level, resulting in improved hole extraction for water oxidation catalysis. The synergy between the above strategies cooperatively expedites the charge separation and transport in a Ta3N5 photoanode, which decreases the photocurrent onset potential from 0.69 to 0.27 V versus the reversible hydrogen electrode, a reduction of 420 mV. This result represents one of the lowest onset potentials observed for Ta3N5-based photoanodes. A systematic approach to enhancing photovoltage and photocurrent expands the design concept of metal nitride-based PEC devices.

Keywords

photochemical

Symposium Organizers

Shoji Hall, Johns Hopkins University
Megan Jackson, University of North Carolina at Chapel Hill
Yao Yang, Cornell University
Emil Hernandez-Pagan, University of Delaware

Session Chairs

Shoji Hall
Emil Hernandez-Pagan
Megan Jackson
Yao Yang

In this Session