Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
702752 | Diamond and Related Materials | 2009 | 6 Pages |
Abstract
First-principles calculations using quantum-mechanical density functional theory (DFT) are carried out to investigate the geometrical structure and electronic properties for hydrogen terminated nanometer-sized diamonds. The results reveal that the size dependent feature in the electronic structures for nanodiamonds is different from that of Si clusters. The field emission properties for nanodiamonds are also explored, and it is found that under applied electric field Mulliken charges redistribute and accumulate on the emission side. Furthermore, the emission currents from the occupied orbitals for nanodiamond are calculated and it is revealed that the largest emission current comes from the third highest occupied molecular orbital.
Related Topics
Physical Sciences and Engineering
Engineering
Electrical and Electronic Engineering
Authors
C. Wang, B. Zheng, W.T. Zheng, C.Q. Qu, L. Qiao, S.S. Yu, Q. Jiang,