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六元杂环分子电学特性的理论研究 被引量:8

Theoretical studies on electronic transport properties of six-membered heterocyclic molecules
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摘要 在第一性原理基础上,利用弹性散射格林函数方法,研究了六元杂环分子结2,5-哒嗪二硫酚、2,5-吡嗪二硫酚和2,5-嘧啶二硫酚的电子输运特性,分析了终端原子的选取对杂环分子吡啶电学特性的影响.利用分子前线轨道理论和微扰方法定量地确定了分子与金属的相互作用能参数.计算结果表明,2,5-哒嗪二硫酚具有较好的电学特性,而2,5-嘧啶二硫酚在外加电压较低时电导值比较小.对于吡啶分子,选取硒原子作为终端原子时,其导电特性优于分别以氧原子和硫原子作为终端原子的情况. By applying the elastic scattering Green's function theory in combination with the hybrid density function theory, the electronic transport properties of molecular junctions constructed by the six-membered heterocyclic molecules, pyridazine-2,5- dithiol, pyrazine-2, 5-dithiol, and pyrimidine-2, 5-dithiol, have been stUdied. For the heterocyclic molecule pyridine, the influence of the terminal atoms on the current-voltage characteristics has also been obtained. We bare accurately determined the coupling constant between the molecule and electrodes by using the frontier molecular orbital theory and the perturbation method. The numerical results show that pyridazine-2,5-dithiol has higher current and conductance, while the conductance of pyrimidine- 2,5-dithiol is very small when the bias voltage is lower than 4V. The conductivity of the molecule pyridine with selenium atom as the terminal atom is higher than that with oxygen atom or sulfur atom.
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2006年第4期1974-1978,共5页 Acta Physica Sinica
基金 国家自然科学基金(批准号:10274044)资助的课题.
关键词 六元杂环分子 伏安特性 电子输运 分子电子学 six-membered heterocyclic molecule, current-voltage characteristics, electronic transport, molecular electronics
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参考文献25

  • 1Reed M A,Zhou C,Muller C J et al 1997 Science 278 252.
  • 2Datta S,Tian W,Reifenberger S et al 1997 Phys.Rev.Lett.79 2530.
  • 3Chen J,Reed M A,Rawlett A M et al 1999 Science 286 1550.
  • 4Collier C P,Mattersteig G,Wong E W et al 2000 Science 289 1172.
  • 5Bumm L A,Arnold J J,Cygan M T et al 1996 Science 271 1705.
  • 6Mujica V,Kemp M A,Ratner M A 1994 J.Chem.Phys.101 6849.
  • 7Samanta M P,Tian W,Datta S et al 1996 Phys.Rev.B 53 R7626.
  • 8Yaliraki S N,Kemp M,Ratner M A 1999 J.Am.Chem.Soc.121 3428.
  • 9Dahlke R,Schollwck U 2004 Phys.Rev.B 69 085324.
  • 10Tian W,Datta S,Hong S et al 1998 J.Chem.Phys.109 2874.

二级参考文献81

  • 1[1]Allara D L, Dunbar T D, Weiss P S, Bumm L A, Cygan M T, Tour J M, Reine rt h W A, Yao Y, Kozaki M and Jones L 1998 Molecular Electronics:Science an d Tec hnology edited by Aviram A and Ratner M A, Annals of The New York Academy of S cience 852(New York Academy of Science, New York) 349
  • 2[2]Bumm L A, Arnold J J, Cygan M T, Dunbar T D, Burgin T P, Jones L, Allar a D L, Tour J M and Weiss P S 1996 Science 271 1705
  • 3[3]Reed M A, Zhou C, Muller C J, Burgin T P and Tour J M 1997 Science 278 252
  • 4[4]Chen J, Reed M A, Rawlett A M and Tour J M 1999 Science 286 1550Chen J, Wang W, Reed M A, Rawlett A M, Price D W and Tour J M 2000 Appl.Phys.Lett. 77 1224
  • 5[5]Reed M A and Tour J M 2000 Sci.Am. 6 45
  • 6[6]Mujica V, Kemp M and Ratner M A 1994 J.Chem.Phys. 101 6 849,6856
  • 7[7]Tian W, Datta S, Hong S, Reifenberger R, Henderson J I and Kubiak C P 1 998 J.Chem.Phys. 109 2874
  • 8[8]Ventra M D,Pantelides S T and Lang N D 2000 Phys.Rev.Lett. 84 979
  • 9[12]Becke A D 1988 Phys. Rev. A 38 3098Becke A D 1993 J.Chem.Phys. 98 1372Becke A D 1993 J.Chem.Phys. 98 5648
  • 10[13]Yaliraki S N, Roitberg A E, Gonzalez C, Mujica V and Rater M A 1999 J.Chem.Phys. 111 6997

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