Publication detail

Nature-Inspired Photocatalytic Hydrogen Production with a Flavin Photosensitizer

IVANOVÁ, L. TRUKSA, J. WHANG D.R SARICIFTCI N.S YUMUSAK C. KRAJČOVIČ, J

Original Title

Nature-Inspired Photocatalytic Hydrogen Production with a Flavin Photosensitizer

Type

journal article in Web of Science

Language

English

Original Abstract

Green hydrogen, by definition, must be produced with renewable energy sources without using fossil fuels. To transform the energy system, we need a fully sustainable production of green and renewable energy as well as the introduction of such "solar fuels" to tackle the chemical storage aspect of renewable energies. Conventional electrolysis of water splitting into oxygen and hydrogen gases is a clean and nonfossil method, but the use of massive noble-metal electrodes makes it expensive. Direct photocatalytic hydrogen evolution in water is an ideal approach, but an industrial scale is not available yet. In this paper, we intend to introduce flavins as metal-free organic photosensitizers for photoinduced reduction processes. Specifically, a flavin photosensitizer was employed for the photocatalytic evolution of hydrogen gas in aqueous media. The ratio of photosensitizer to cocatalyst concentration has been found to affect the efficiency of the hydrogen evolution reaction. Since flavins are nature-inspired molecules (like vitamin B2) with easily tunable properties through structure modification, this family of compounds opens the door for new possibilities in sustainable green hydrogen production.

Keywords

Green hydrogen, flavins, metal-free organic photosensitizers

Authors

IVANOVÁ, L.; TRUKSA, J.; WHANG D.R; SARICIFTCI N.S; YUMUSAK C.; KRAJČOVIČ, J

Released

26. 1. 2024

Publisher

AMER CHEMICAL SOC

Location

WASHINGTON

ISBN

2470-1343

Periodical

ACS OMEGA

Year of study

9

Number

5

State

United States of America

Pages from

5534

Pages to

5540

Pages count

7

URL

Full text in the Digital Library

BibTex

@article{BUT188118,
  author="Lucia {Ivanová} and Jan {Truksa} and Dong Ryeol {Whang} and Niyazi Serdar {Sariciftci} and Cigdem {Yumusak} and Jozef {Krajčovič}",
  title="Nature-Inspired Photocatalytic Hydrogen Production with a Flavin Photosensitizer",
  journal="ACS OMEGA",
  year="2024",
  volume="9",
  number="5",
  pages="5534--5540",
  doi="10.1021/acsomega.3c07458",
  issn="2470-1343",
  url="https://pubs.acs.org/doi/epdf/10.1021/acsomega.3c07458"
}