| Literature DB >> 25722405 |
Juan Liu1, Yang Liu1, Naiyun Liu1, Yuzhi Han1, Xing Zhang1, Hui Huang1, Yeshayahu Lifshitz2, Shuit-Tong Lee3, Jun Zhong1, Zhenhui Kang3.
Abstract
The use of solar energy to produce molecular hydrogen and oxygen (H2 and O2) from overall water splitting is a promising means of renewable energy storage. In the past 40 years, various inorganic and organic systems have been developed as photocatalysts for water splitting driven by visible light. These photocatalysts, however, still suffer from low quantum efficiency and/or poor stability. We report the design and fabrication of a metal-free carbon nanodot-carbon nitride (C3N4) nanocomposite and demonstrate its impressive performance for photocatalytic solar water splitting. We measured quantum efficiencies of 16% for wavelength λ = 420 ± 20 nanometers, 6.29% for λ = 580 ± 15 nanometers, and 4.42% for λ = 600 ± 10 nanometers, and determined an overall solar energy conversion efficiency of 2.0%. The catalyst comprises low-cost, Earth-abundant, environmentally friendly materials and shows excellent stability.Entities:
Year: 2015 PMID: 25722405 DOI: 10.1126/science.aaa3145
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728