In Situ Formation of Heterojunctions in Modified Graphitic Carbon Nitride: Synthesis and Noble Metal Free Photocatalysis

Autor/a

Shalom, Menny

Guttentag, Miguel

Fettkenhauer, Christian

Inal, Sanika

Neher, Dieter

Llobet, Antoni

Antonietti, Markus

Fecha de publicación

2014



Resumen

<p> Herein, we report the facile synthesis of an efficient roll-like carbon nitride (C3N4) photocatalyst for hydrogen production using a supramolecular complex composed of cyanuric acid, melamine, and barbituric acid as the starting monomers. Optical and photocatalytic investigations show, along with the known red shift of absorption into the visible region, that the insertion of barbituric acid results in the in situ formation of in-plane heterojuctions, which enhance the charge separation process under illumination. Moreover, platinum as the standard cocatalyst in photocatalysis could be successfully replaced with first row transition metal salts and complexes under retention of 50% of the catalytic activity. Their mode of deposition and interaction with the semiconductor was studied in detail. Utilization of the supramolecular approach opens new opportunities to manipulate the charge transfer process within carbon nitride with respect to the design of a more efficient carbon nitride photocatalyst with controlled morphology and optical properties.</p>

Tipo de documento

Artículo

Lengua

Inglés

Publicado por

American Chemical Society

Es versión de

Chemistry of Materials

Número del acuerdo de la subvención

CTQ2013-49075-R

Documentos relacionados

MINECO with FEDER Funds

Proyectos I+D+I - Retos 2013

PRO-H

Documentos

OA In-situ Formation of Heterojunctions in Modified Graphitic Carbon Nitride Synthesis and Noble Metal Free Photo-catalysis.pdf

3.238Mb

 

Derechos

Copyright © 2014 American Chemical Society

Este ítem aparece en la(s) siguiente(s) colección(ones)

Papers [1240]