Theoretical analysis of the adsorption of ammonia-borane and their dehydrogenation products on the (001) surface of TiC and ZrC

被引:8
|
作者
Echeverri, Andrea [1 ,2 ]
Cardenas, Carlos [2 ,3 ]
Calatayud, Monica [4 ]
Zilahy Hadad, Cacier [1 ]
Gomez, Tatiana [5 ]
机构
[1] Univ Antioquia, Inst Quim, Grp Quim Fis Teor, Calle 70 52-21, Medellin, Colombia
[2] Univ Chile, Fac Ciencias, Dept Fis, Santiago 653, Chile
[3] CEDENNA, Ctr Desarrollo Nanociencia & Nanotecnol, Av Ecuador, Santiago 3493, Chile
[4] UPMC Univ Paris 06, Sorbonne Univ, CNRS, Lab Chim Theor, CC 137-4,Pl Jussieu F, F-75252 Paris 05, France
[5] Univ Autonoma Chile, Fac Engn, Inst Appl Chem Sci, Theoret & Computat Chem Ctr, Santiago 2801, Chile
关键词
CORE-SHELL NANOPARTICLES; INITIO MOLECULAR-DYNAMICS; TOTAL-ENERGY CALCULATIONS; AU-C INTERACTIONS; HYDROGEN GENERATION; HYDROLYTIC DEHYDROGENATION; THERMAL DEHYDROGENATION; CATALYTIC HYDROLYSIS; EFFICIENT CATALYSTS; H-2; ADSORPTION;
D O I
10.1016/j.susc.2018.10.016
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The adsorption of ammonia-borane (AB) over the (001) surface of TiC and ZrC, has been studied systematically by means of periodic-boundary density functional calculations using slab models. We present evidence that a surface with an appreciable degree of polarity such as those used in this research, can simultaneously activate the N-H and B-H bonds of the AB molecule and its dimer AB-AB. The molecule is highly activated by both supports, and the N-H and B-H bonds are stretched long enough to release one or two hydrogens. Additionally, the bond distance B-N is shortened by 0.04 and 0.06 angstrom by TiC and ZrC supports respectively, which results in the strengthening of the bond, what seems convenient to avoid unwanted by-products (NH3, BH3, etc.). A systematic study for the adsorption of BH2NH2, which is isoelectronic with ethylene, was also done. The adsorption leads to a major elongation of the B-N bond with respect to the calculated value in the gas phase (0.17 and 0.18 angstrom for TiC and ZrC respectively). Both supports can activate the molecule, with the biggest impact being on the BH2 fragment. On the other hand, the migration of hydrogen atoms on both supports is a thermodynamically favorable process. On the surface H prefers bonding to a C, which is in agreement with other studies for dissociative adsorption of H-2 on metallic carbides. Nevertheless, we show that the hydrogen molecule readily forms when both atoms sit on the transition metal of the surface. On the basis of this theoretical study, both supports are proposed as potential catalysts for the dehydrogenation of ammonia-borane.
引用
收藏
页码:95 / 106
页数:12
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