Bridge bond between potential energy surfaces and fuel cells on Pt-H2 interaction

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Autore principale: I. P. Zaragoza
Natura: Artículo científico
Lingua:en
Pubblicazione: Sociedad Mexicana de Física A.C. 2006
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author I. P. Zaragoza
author_facet I. P. Zaragoza
contents Bridge bond between potential energy surfaces and fuel cells on Pt-H2 interaction I. P. Zaragoza L. A. García S. Castillo J. H. Pacheco A. Bravo O. Novaro Física, Astronomía y Matemáticas fuel cells Potential energy surfaces platinum hydrgen interaction Reaction mechanisms between catalyst (Pt) and one of the fuels (H2) are found by means of DFT-B3LYP calculation, which represents a bridge bond between the theoretical calculations and the processes of fuel transformation in the fuel cells. All the closed shell energies involved in the process are obtained, starting when the platinum and the hydrogen are completely separated and ending until the hydrogen atoms separate and stay bound to the platinum, forming a new product. The equilibrium geometry of the latter system is reached with a broken H-H bond at an HPtH angle of about 90±. The latter was obtained using the DFT-B3LYP method. The confidence in all of theseresults is based on the fact that the potential energy well of the Pt-H2 interaction calculated using the DFT-B3LYP method is located between those calculated using Moller-Plesset and PSHONDO-IJKL-FOCK-CIPSI ab initio methods. 2006 artículo científico 0035-001X https://www.redalyc.org/articulo.oa?id=57065012 en http://www.redalyc.org/revista.oa?id=570 Revista Mexicana de Física application/pdf Sociedad Mexicana de Física A.C. Revista Mexicana de Física (México) Num.2 Vol.52
format Artículo científico
id redalyc_57065012
institution Redalyc
language en
publishDate 2006
publisher Sociedad Mexicana de Física A.C.
spellingShingle Bridge bond between potential energy surfaces and fuel cells on Pt-H2 interaction
I. P. Zaragoza
Física, Astronomía y Matemáticas
fuel cells
Potential energy surfaces
platinum hydrgen interaction
Bridge bond between potential energy surfaces and fuel cells on Pt-H2 interaction I. P. Zaragoza L. A. García S. Castillo J. H. Pacheco A. Bravo O. Novaro Física, Astronomía y Matemáticas fuel cells Potential energy surfaces platinum hydrgen interaction Reaction mechanisms between catalyst (Pt) and one of the fuels (H2) are found by means of DFT-B3LYP calculation, which represents a bridge bond between the theoretical calculations and the processes of fuel transformation in the fuel cells. All the closed shell energies involved in the process are obtained, starting when the platinum and the hydrogen are completely separated and ending until the hydrogen atoms separate and stay bound to the platinum, forming a new product. The equilibrium geometry of the latter system is reached with a broken H-H bond at an HPtH angle of about 90±. The latter was obtained using the DFT-B3LYP method. The confidence in all of theseresults is based on the fact that the potential energy well of the Pt-H2 interaction calculated using the DFT-B3LYP method is located between those calculated using Moller-Plesset and PSHONDO-IJKL-FOCK-CIPSI ab initio methods. 2006 artículo científico 0035-001X https://www.redalyc.org/articulo.oa?id=57065012 en http://www.redalyc.org/revista.oa?id=570 Revista Mexicana de Física application/pdf Sociedad Mexicana de Física A.C. Revista Mexicana de Física (México) Num.2 Vol.52
title Bridge bond between potential energy surfaces and fuel cells on Pt-H2 interaction
topic Física, Astronomía y Matemáticas
fuel cells
Potential energy surfaces
platinum hydrgen interaction
url https://www.redalyc.org/articulo.oa?id=57065012