A density functional theory study on CO2 capture and activation by graphene-like boron nitride with boron vacancy


Autoria(s): Jiao, Yan; Du, Aijun; Zhu, Zhonghua; Rudolph, Victor; Lu, Gao Qing (Max); Smith, Sean C.
Data(s)

31/03/2011

Resumo

First principle calculations for a hexagonal (graphene-like) boron nitride (g-BN) monolayer sheet in the presence of a boron-atom vacancy show promising properties for capture and activation of carbon dioxide. CO2 is found to decompose to produce an oxygen molecule via an intermediate chemisorption state on the defect g-BN sheet. The three stationary states and two transition states in the reaction pathway are confirmed by minimum energy pathway search and frequency analysis. The values computed for the two energy barriers involved in this catalytic reaction after enthalpy correction indicate that the catalytic reaction should proceed readily at room temperature.

Identificador

http://eprints.qut.edu.au/61138/

Publicador

Elsevier BV

Relação

DOI:10.1016/j.cattod.2011.02.043

Jiao, Yan, Du, Aijun, Zhu, Zhonghua, Rudolph, Victor, Lu, Gao Qing (Max), & Smith, Sean C. (2011) A density functional theory study on CO2 capture and activation by graphene-like boron nitride with boron vacancy. Catalysis Today, 175(1), pp. 271-275.

Direitos

Copyright 2011 Elsevier BV

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Palavras-Chave #boron vacancy #graphene-like boron nitride #carbon dioxide #activation
Tipo

Journal Article