Published January 1, 2016 | Version v1
Journal article

First principles study on the interfacial properties of NM/graphdiyne (NM = Pd, Pt, Rh and Ir): The implications for NM growing

  • 1. College of Physics and Electronic Engineering, Henan Normal University, Xinxiang 453007 (China)
  • 2. College of Physics and Electronic Engineering, Nanyang Normal University, Nanyang 473061 (China)
  • 3. School of Physics, Anyang Normal University, Anyang 455000 (China)
  • 4. Collaborative Innovation Center of Nano Functional Materials and Applications, Kaifeng (China)

Description

Graphical abstract: - Highlights: • The NM adatoms belong to embedded adsorption in 18C-hexagon of GDY. • The Rh and Ir/GDY can be applied to single metal catalysts or sensors. • A simple linear relationship between Ee-ads and Eb is presented. • The linear relationship can be used in the noble metal modified GDY. - Abstract: Based on the dispersion-corrected density functional calculations (DFT-D), we systematically studied the adsorption of noble metals (NM), Pd, Pt, Rh and Ir, on graphdiyne (GDY). We present a systematic study on the geometry, embedded adsorption energy and electronic structure of four different adatoms adsorbed on the GDY. The strong interaction between the NM adatoms and the GDY substrate is found with the NM embedded in the 18C-hexagon of the GDY. We investigated the mobility of the NM adatoms on the GDY, and found that the mobility barrier energy increases along with the increasing of the embedded adsorption energy. We present the NM adatoms growth of high concentrations on the GDY. Upon the analysis of the electronic structure and the frontier molecular orbitals, Rh and Ir adatoms of low concentrations (about 1.37 at%) on the GDY have the potential to be applied as single metal catalysts or gas molecule sensors.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.apsusc.2015.10.219

Additional details

Identifiers

DOI
10.1016/j.apsusc.2015.10.219;
PII
S0169-4332(15)02649-5;

Publishing Information

Journal Title
Applied Surface Science
Journal Volume
360
Journal Issue
Part A
Journal Page Range
p. 1-7
ISSN
0169-4332
CODEN
ASUSEE

Optional Information

Copyright
Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.