Home  |  Contact  |  Sitemap  |  Chinese  |  CAS
Search: 
News
Location: Home > 旧网站归档- > News > Events
Enhanced Driving Force and Charge Separation E?ciency of Protonated g?C3N4 for Photocatalytic O2 Evolution
Author:
ArticleSource:
Update time: 2015-11-16
Close
Text Size: A A A
Print

Photocatalysts based on g-C3N4 by loading cocatalysts or constructing heterojunctions have shown great potential in solar-driven water oxidation. However, the intrinsic drawbacks of g-C3N4, such as poor mass di?usion and charge separation e?ciency, remain as the bottleneck to achieve highly e?cient water oxidation. Here we report a simple protonation method to improve the activity of g-C3N4. Studies using valence band X-ray photoelectron spectra and steady-state and time-resolved spectroscopy reveal that the promotion of catalytic ability originates from the higher thermodynamical driving force and longer-lived charge separation state, which may provide guidance in designing e?cient polymeric semiconductor photocatalysts with desirable kinetics for water oxidation.

ACS Catalysis, 2015

Copyright 2007-2015 All rights reserved. 29 Zhongguancun East Road, Haidian District, Beijing, 100190, PR China
Please send any comments or problems with this site to: lzhang@mail.ipc.ac.cn.