欢迎登录材料期刊网

材料期刊网

高级检索

介绍了近年国际上在π共轭有机半导体中新发现的有机磁电阻效应(Organic magnetoresistance,O-MAR)实验和理论的研究进展,展望了有机磁电阻效应的应用和研究.有机磁电阻效应不仅具有各向同性、常温下大磁电阻率和高磁场灵敏度的特点,而且不同于传统的磁电阻效应和目前广泛研究的巨磁电阻效应(Giant magnetore-sistance,GMR),其结构中不包含磁性材料也没有外部极化自旋的注入,是有机半导体的一种内禀性质.

参考文献

[1] Ruden P P;Smith D L .Theory of spin injection into conjugated organic semiconductors[J].Journal of Applied Physics,2004,95:4898.
[2] Tang C W .2-layer organic photovoltaic cell[J].Applied Physics Letters,1986,48:183.
[3] Tang C W;Van Slyke S A .Organnic electroluminescent diodes[J].Applied Physics Letters,1987,51:913.
[4] Wolf S A;Awschalom D D;Buhrman R A et al.Spintronic:A spin-based electronics vision for the future[J].Science,2001,294:1488.
[5] Francis T L;Mermer O;Veeraraghavan G et al.Large magnetoresistance at room temperature in semiconducting polymer sandwich devices[J].New Journal of Physics,2004,6:185.
[6] Mermer O;Veeraraghavan G;Francis T L et al.Large magnetoresistance in nonmagnetic π-conjugated semiconductor thin film devices[J].Physical Review B:Condensed Matter,2005,72:205202.
[7] Nguyen T D;Sheng Y;Rybicki J et al.Magnetoresistance in π-conjugated organic sandwich devices with varing hyperfine and spin-orbit coupling strengths,and raring dopant concentrations[J].Journal of Materials Chemistry,2007,17:1995.
[8] Wu Y;Hu B .Metal electrode effects on spin-orbital coupling and magnetoresistance in organic semiconductor devices[J].Applied Physics Letters,2006,89:203510.
[9] Mermer O;Veeraraghavan G;Francis TL;Wohlgenannt M .Large magnetoresistance at room-temperature in small-molecular-weight organic semiconductor sandwich devices[J].Solid State Communications,2005(9):631-636.
[10] Sheng Y;Nguyen T D;Veeraraghavan G et al.Effect of spinz-orbit coupling on magnetoresistance in organic semiconductors[J].Physical Review B:Condensed Matter,2007,75:035202.
[11] Sheng Y;Nguyen TD;Veeraraghavan G;Mermer O;Wohlgenannt M;Qiu S;Scherf U .Hyperfine interaction and magnetoresistance in organic semiconductors[J].Physical review, B. Condensed matter and materials physics,2006(4):5213-1-5213-9-0.
[12] Kepler R G;Beeson P M;Jacobs S J et al.Electron and hole mobility in tris(8-hydroxyquinolinolato-N1,O8) aluminum[J].Applied Physics Letters,1995,66:3618.
[13] Nguyen T D;Sheng Y;Wohlgenannt M et al.On the role of hydrogen in organic magnetoresistance:A study of C60 devices[J].Synthetic Metals,2007,157:930.
[14] Frankevich E L;Lymarev A A;Sokolik I et al.Polaronpair generation in poly(phenylene vinylenes)[J].Pbys Rev B,1992,46:9320.
[15] Kalinowski J.;Cocchi M.;Virgili D.;Di Marco P.;Fattori V. .Magnetic field effects on emission and current in Alq(3)-based electroluminescent diodes[J].Chemical Physics Letters,2003(5-6):710-715.
[16] Frankevich E.;Yoshino K.;Maruyama Y.;Yakushi K.;Zakhidov A. .PHOTOCONDUCTIVITY OF POLY(2,5-DIHEPTYLOXY-P-PHENYLENE VINYLENE) IN THE AIR ATMOSPHERE - MAGNETIC-FIELD EFFECT AND MECHANISM OF GENERATION AND RECOMBINATION OF CHARGE CARRIERS[J].Physical Review.B.Condensed Matter,1996(8):4498-4508.
[17] Kalinowski J.;Szmytkowski JD.;Stampor W. .Magnetic hyperfine modulation of charge photogeneration in solid films of Alq(3)[J].Chemical Physics Letters,2003(3-4):380-387.
[18] Pippard A B.Magnetoresistance in metals[M].Cambridge:Cambridge University Press,1989
[19] Efros A L;Shklovskii B I.Electoronic properties of doped semiconductors[M].New York:springer-verlag,1984
[20] Menon R.rganic photovoltaics[M].Berlin:springer-verlag,2003
[21] Bergmann G.Weak localization in thin films:A time-offlight experiment with conduction electrons[J].Physics Reports,1984:107.
[22] Mermer O;Wohlgenannt M;Veeraraghavan G et al.Weak localization and antilocalization in semiconducting polymer sandwich devices[Z].arXiv:cond-mat/0312204v1,2006.
[23] Prigodin V N;Bergeson J D;Lincoln M D et al.Anomalous room temperature magnetoresistance in organic semiconductors[J].Synthetic Metals,2007,157:930.
[24] Ern V;Merrifield R E .Magnetic field effect on triplet exciton quenching in organic crystals[J].Physical Review Letters,1968,21:609.
[25] Desai P;Shakya P;Kreouzis T;Gillin WP;Morley NA;Gibbs MRJ .Magnetoresistance and efficiency measurements of Alq(3)-based OLEDs[J].Physical review, B. Condensed matter and materials physics,2007(9):4423-1-4423-5-0.
[26] Wohlgenannt M .Theory of magnetoresistance based on variable-range hopping in the presence of Hubbard interaction and spin-dynmics[Z].arXiv,cond-mat/0609592v2
[27] Bobbert PA;Nguyen TD;van Oost FWA;Koopmans B;Wohlgenannt M .Bipolaron mechanism for organic magnetoresistance[J].Physical review letters,2007(21):216801-1-216801-4-0.
[28] Bloom FL;Wagemans W;Kemerink M;Koopmans B .Separating positive and negative magnetoresistance in organic semiconductor devices[J].Physical review letters,2007(25):257201-1-257201-4-0.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%