TY - JOUR
T1 - Role of acetylenic bonds in the mechanical, electronic and optical properties of yne-diamonds
AU - Bu, Hongxia
AU - Wang, Xiaopeng
AU - Xi, Yan
AU - Zhao, Xiaoyang
AU - Zhao, Mingwen
PY - 2013
Y1 - 2013
N2 - Yne-diamonds are novel carbon allotropes designed by inserting acetylenic bonds into the framework of diamond. Varying the ratio of acetylenic bonds yields a new family of carbon allotropes consisting of sp- and sp 3-hybridized atoms. The study of these novel carbon frameworks is becoming a topic of increasing interest. Here, we report our systematic studies on the stability, mechanical, electronic and optical properties of yne-diamonds. Our calculations indicate that yne-diamonds are mechanically stable, although they are energetically less favorable than diamond due to sp-hybridized carbon atoms in the frameworks. In contrast to early estimation, yne-diamonds are unlikely superhard materials, but exhibit good ductility. The band gaps of yne-diamonds vary from 0.165 eV to 4.850 eV, as the ratio of acetylenic bonds increases. The energetically most favorable yne-diamond has a direct band gap of 2.916 eV. The optical properties of these carbon allotropes are also discussed.
AB - Yne-diamonds are novel carbon allotropes designed by inserting acetylenic bonds into the framework of diamond. Varying the ratio of acetylenic bonds yields a new family of carbon allotropes consisting of sp- and sp 3-hybridized atoms. The study of these novel carbon frameworks is becoming a topic of increasing interest. Here, we report our systematic studies on the stability, mechanical, electronic and optical properties of yne-diamonds. Our calculations indicate that yne-diamonds are mechanically stable, although they are energetically less favorable than diamond due to sp-hybridized carbon atoms in the frameworks. In contrast to early estimation, yne-diamonds are unlikely superhard materials, but exhibit good ductility. The band gaps of yne-diamonds vary from 0.165 eV to 4.850 eV, as the ratio of acetylenic bonds increases. The energetically most favorable yne-diamond has a direct band gap of 2.916 eV. The optical properties of these carbon allotropes are also discussed.
KW - acetylenic bonds
KW - carbon allotropes
KW - electronic properties
KW - mechanical properties
KW - yne-diamond
UR - https://www.scopus.com/pages/publications/84878786589
U2 - 10.1016/j.diamond.2013.04.016
DO - 10.1016/j.diamond.2013.04.016
M3 - 文章
AN - SCOPUS:84878786589
SN - 0925-9635
VL - 37
SP - 55
EP - 63
JO - Diamond and Related Materials
JF - Diamond and Related Materials
ER -