Please wait a minute...
Chin. Phys. B, 2011, Vol. 20(3): 037101    DOI: 10.1088/1674-1056/20/3/037101
CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES Prev   Next  

First-principles study of electronic properties and stability of Nb5SiB2 (001) surface

Xu Yu-Jiang-Zi(许昱江子)a), Shang Jia-Xiang(尚家香)a),and Wang Fu-He(王福合)b)
a Key Laboratory of Aerospace Materials and Performance (Ministry of Educatio14), School of Materials Science and Engineering, Beihang University, Beijing 100191, China; b Department of Physics, Capital Normal University, Beijing 100048, China
Abstract  The density functional calculations are performed to study the electronic structure and stability of Nb5SiB2 (001) surface with different terminations. The calculated cleavage energies along the (001) planes in Nb5SiB2 are 5.015 ·m-2 and 6.593 J·m-2 with the break of Nb–Si and Nb–NbB bonds, respectively. There exists a close correlation between the surface relaxation including surface ripple and the cleavage energy: the larger the cleavage energy, the larger the surface relaxation. Moreover, the surface stability of the Nb5SiB2 (001) with different terminations has been investigated by the chemical potential phase diagram. From a thermodynamics point of view, the four terminations can be stabilized under different conditions. In chemical potential space, NbB (Nb) and Nb (Si) terminations are just stable in a small area, whereas Si (Nb) and Nb (NbB) terminations are stable in a large area (the letters in brackets represent the subsurface atoms).
Keywords:  first principles      Nb5SiB2 surface      electronic properties      surface stability  
Received:  04 October 2010      Revised:  25 October 2010      Accepted manuscript online: 
PACS:  71.15.Nc (Total energy and cohesive energy calculations)  
  73.20.At (Surface states, band structure, electron density of states)  
Fund: Project supported by the National Natural Science Foundation of China (Grant No. 50771004).

Cite this article: 

Xu Yu-Jiang-Zi(许昱江子), Shang Jia-Xiang(尚家香), and Wang Fu-He(王福合) First-principles study of electronic properties and stability of Nb5SiB2 (001) surface 2011 Chin. Phys. B 20 037101

[1] Rodrigues G, Nunes C A, Suzuki P A and Coelho G C 2004 it Intermetallics 12 181
[2] Kim J H, Tabaru T, Hirai H Kitahara A and Hanada S 2003 Scrip. Mater. 48 1439
[3] Kim W Y, Tanaka H, Kasama A and Hanada S 2001 Intermetallics 9 827
[4] Kim W Y, Tanaka H and Hanada S 2002 Intermetallics 10 625
[5] Kim W Y, Yeo I D, Ra T Y, Cho G S and Kim M S 2004 J. Alloys Compounds 364 186
[6] Zhao J C, Peluso L A, Jackson M R and Tan L Z 2003 J. Alloys Compounds 360 183
[7] Geng J, Tsakiropoulos P and Shao G 2006 Intermetallics bf 14 227
[8] Chan K S 2002 Mater. Sci. Eng. A 329-331 513
[9] Zelenitsas K and Tsakiropoulos P 2006 Intermetallics 14 639
[10] Geng J, Tsakiropoulos P and Shao G S 2006 Mater. Sci. Eng. A 441 26
[11] Geng J, Tsakiropoulos P and Shao G H 2007 Intermetallics bf 15 69
[12] Geng J and Tsakiropoulos P 2007 Intermetallics 15 270
[13] Chattopadhyay K, Balachandran G, Mitra R and Ray K K 2006 it Intermetallics 14 1452
[14] Sha J B, Hirai H, Tabaru T, Kitahara A, Ueno A and Hanada S 2004 Mater. Sci. Eng. A 364 151
[15] Behrani V, Thom A J, Kramer M J and Akinc M 2006 it Intermetallics 14 24
[16] Candioto K C G, Nunes C A, Coelho G C and Suzuki P A 2001 Mater. Character 47 241
[17] Brauner A, Nunes C A, Bortolozo A D, Rodrigues G and Machado A J S 2009 Solid State Commun. 149 467
[18] Yang Z J, Guo Y D, Li J, Liu J C, Dai W, Cheng X L and Yang X D 2010 Chin. Phys. B 19 077102
[19] Gu M H, Shi M, Lin L, Liu B L and Liu X L 2010 Acta Phys. Sin. 59 2836 (in Chinese)
[20] Yun J N and Zhang Z Y 2009 Chin. Phys. B 18 2945
[21] Xie Y P, Luo Y and Liu S J 2007 Chin. Phys. 16 1429
[22] Bottin F, Finocchi F and Noguera C 2003 Phys. Rev. B bf 68 035418
[23] Zheng L, Jiang C B, Shang J X and Xu H B 2009 Chin. Phys. B 18 1647
[24] Ni G X and Wang Y X 2009 Chin. Phys. B 18 1194
[25] Kresse G and Hafner J 1993 Phys. Rev. B 48 13115
[26] Kresse G and Furthm"Auller 1996 J. Phys. Rev. B 54 11169
[27] Kresse G and Furthm"Auller 1996 J. Comput. Mater. Sci. 6 15
[28] Bl"Aochl PE 1994 Phys. Rev. B 50 17953
[29] Kresse G and Joubert D 1999 Phys. Rev. B 59 1758
[30] Perdew J P, Chevary J A, Vosko S H, Jackson K A, Pederson M R, Singh D J and Fiolhais C 1992 Phys. Rev. B 46 6671
[31] Katrych S, Grytsiv A, Bondar A, Rogl P, Velikamova T and M Bohn M 2004 J. Solid State Chem. 177 493
[32] Zhang H Z and Wang S Q 2007 Acta Materialia 55 4645
[33] Heigets E, Goddard W A, Kotomin E A, Eglitis R I and Borstel G 2004 Phys. Rev. B 69 035408
[34] Shang J X, Guan K and Wang F H 2010 J. Phys.: Condens. Matter 22 085004
[35] Dean J A 1999 Lange's Handbook of Chemistry (New York: Mcgraw-Hill)
[36] Qian G X, Martin R M and Chahi D J 1998 Phys. Rev. B 38 7649
[37] Northrup J E 1989 Phys. Rev. Lett. 62 2487
[38] Kitchin J R, Reuter K and Scheffler M 2001 Phys. Rev. B bf 64 035305
[39] Liu S Y, Shang J X, Wang F H and Zhang Y 2009 Phys. Rev. B 79 075419
[40] Liu S Y, Shang J X, Wang F H, Liu S Y, Zhang Y and Xu H B 2009 it Phys. Rev. B 80 085414
[1] Theoretical study of M6X2 and M6XX' structure (M = Au, Ag; X,X' = S, Se): Electronic and optical properties, ability of photocatalytic water splitting, and tunable properties under biaxial strain
Jiaqi Li(李嘉琪), Xinlu Cheng(程新路), and Hong Zhang(张红). Chin. Phys. B, 2022, 31(9): 097101.
[2] Assessing the effect of hydrogen on the electronic properties of 4H-SiC
Yuanchao Huang(黄渊超), Rong Wang(王蓉), Yiqiang Zhang(张懿强), Deren Yang(杨德仁), and Xiaodong Pi(皮孝东). Chin. Phys. B, 2022, 31(5): 056108.
[3] Insights into the adsorption of water and oxygen on the cubic CsPbBr3 surfaces: A first-principles study
Xin Zhang(张鑫), Ruge Quhe(屈贺如歌), and Ming Lei(雷鸣). Chin. Phys. B, 2022, 31(4): 046401.
[4] First-principles study of stability of point defects and their effects on electronic properties of GaAs/AlGaAs superlattice
Shan Feng(冯山), Ming Jiang(姜明), Qi-Hang Qiu(邱启航), Xiang-Hua Peng(彭祥花), Hai-Yan Xiao(肖海燕), Zi-Jiang Liu(刘子江), Xiao-Tao Zu(祖小涛), and Liang Qiao(乔梁). Chin. Phys. B, 2022, 31(3): 036104.
[5] Boron at tera-Pascal pressures
Peiju Hu(胡佩菊), Junhao Peng(彭俊豪), Xing Xie(谢兴), Minru Wen(文敏儒),Xin Zhang(张欣), Fugen Wu(吴福根), and Huafeng Dong(董华锋). Chin. Phys. B, 2022, 31(3): 036301.
[6] First principles study on geometric and electronic properties of two-dimensional Nb2CTx MXenes
Guoliang Xu(徐国亮), Jing Wang(王晶), Xilin Zhang(张喜林), and Zongxian Yang(杨宗献). Chin. Phys. B, 2022, 31(3): 037304.
[7] Stability, electronic structure, and optical properties of lead-free perovskite monolayer Cs3B2X9 (B=Sb, Bi; X=Cl, Br, I) and bilayer vertical heterostructure Cs3B2X9/Cs3B2'X9 (B,B'=Sb, Bi; X=Cl, Br, I)
Yaowen Long(龙耀文), Hong Zhang(张红), and Xinlu Cheng(程新路). Chin. Phys. B, 2022, 31(2): 027102.
[8] Effect of structural vacancies on lattice vibration, mechanical, electronic, and thermodynamic properties of Cr5BSi3
Tian-Hui Dong(董天慧), Xu-Dong Zhang(张旭东), Lin-Mei Yang(杨林梅), and Feng Wang(王峰). Chin. Phys. B, 2022, 31(2): 026101.
[9] First principles study of hafnium intercalation between graphene and Ir(111) substrate
Hao Peng(彭浩), Xin Jin(金鑫), Yang Song(宋洋), and Shixuan Du(杜世萱). Chin. Phys. B, 2022, 31(10): 106801.
[10] Strain-modulated ultrafast magneto-optic dynamics of graphene nanoflakes decorated with transition-metal atoms
Yiming Zhang(张一鸣), Jing Liu(刘景), Chun Li(李春), Wei Jin(金蔚), Georgios Lefkidis, and Wolfgang Hübner. Chin. Phys. B, 2021, 30(9): 097702.
[11] Density functional theory investigation on lattice dynamics, elastic properties and origin of vanished magnetism in Heusler compounds CoMnVZ (Z= Al, Ga)
Guijiang Li(李贵江), Enke Liu(刘恩克), Guodong Liu(刘国栋), Wenhong Wang(王文洪), and Guangheng Wu(吴光恒). Chin. Phys. B, 2021, 30(8): 083103.
[12] Achieving high-performance multilayer MoSe2 photodetectors by defect engineering
Jintao Hong(洪锦涛), Fengyuan Zhang(张丰源), Zheng Liu(刘峥), Jie Jiang(蒋杰), Zhangting Wu(吴章婷), Peng Zheng(郑鹏), Hui Zheng(郑辉), Liang Zheng(郑梁), Dexuan Huo(霍德璇), Zhenhua Ni(倪振华), and Yang Zhang(张阳). Chin. Phys. B, 2021, 30(8): 087801.
[13] High-throughput identification of one-dimensional atomic wires and first principles calculations of their electronic states
Feng Lu(卢峰), Jintao Cui(崔锦韬), Pan Liu(刘盼), Meichen Lin(林玫辰), Yahui Cheng(程雅慧), Hui Liu(刘晖), Weichao Wang(王卫超), Kyeongjae Cho, and Wei-Hua Wang(王维华). Chin. Phys. B, 2021, 30(5): 057304.
[14] First principles study of behavior of helium at Fe(110)-graphene interface
Yan-Mei Jing(荆艳梅) and Shao-Song Huang(黄绍松). Chin. Phys. B, 2021, 30(4): 046802.
[15] Structural, mechanical, electronic properties, and Debye temperature of quaternary carbide Ti3NiAl2C ceramics under high pressure: A first-principles study
Diyou Jiang(姜迪友), Wenbo Xiao(肖文波), and Sanqiu Liu(刘三秋). Chin. Phys. B, 2021, 30(3): 036202.
No Suggested Reading articles found!