论文

MICROSTRUCTURE, MAGNETIC AND MAGNETOTRANSPORT PROPERTIES OF Co-C NANOCOMPOSITE THIN FILMS

  • TANG Rui-He ,
  • YANG Zhi-Gang ,
  • ZHANG Chi ,
  • YANG Bai ,
  • LIU Xiao-Fang ,
  • YU Rong-Hai
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  • 1) Key Laboratory of Advanced Materials, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084
    2) School of Materials Science and Engineering, Beihang University, Beijing 100191

Received date: 2010-10-13

  Revised date: 2010-12-17

  Online published: 2011-04-11

Supported by

Supported by National Natural Science Foundation of China (Nos.50771058 and 50729101) and the National Major Fundamental Research Program of China (No.2010CB934602)

Abstract

Co-C nanocomposite thin films with a Co atomic content of 13.0% were fabricated onto Si (100) substrates by magnetron co-sputtering technique. Post annealing was carried out in vacuum at annealing temperature ranging from 473 K to 773 K for 30 min. TEM images indicate that the Co nanoparticles are dispersed uniformly in an amorphous carbon matrix for the as-deposited samples, and Co particle size is in a range of 1.5-3.0 nm. After annealing at 673 K, the average Co particle size is enlarged distinctly. Magnetization hysteresis loops reveal that the as-deposited thin films show low magnetization. As annealing temperature is increased, both magnetization and coercivity are enhanced significantly. The samples annealed at 673 K and 773 K show ferromagnetic behaviors at low temperature, and superparamagnetic behaviors at room temperature, which are characteristic magnetic features for granular system. A negative magnetoresistance (MR) of 1.33% is observed for the as-deposited Co-C thin films at 4.2 K in the applied magnetic field of 3980 kA/m. The MR value decreases with increasing annealing temperature. Resistance (R) versus temperature (T) curves exhibit a good linear relationship of lnR-T-1/4 at a broad low temperature range, suggesting that the conduction in Co-C nanocomposite thin films follows the variable range hopping transport mechanism.

Cite this article

TANG Rui-He , YANG Zhi-Gang , ZHANG Chi , YANG Bai , LIU Xiao-Fang , YU Rong-Hai . MICROSTRUCTURE, MAGNETIC AND MAGNETOTRANSPORT PROPERTIES OF Co-C NANOCOMPOSITE THIN FILMS[J]. Acta Metall Sin, 2011 , 47(4) : 469 -474 . DOI: 10.3724/SP.J.1037.2010.00546

References

[1] Berkowitz A E, Mitchell J R, Carey M J, Young A P, Zhang S, Spada F E, Parker F T, Hutten A, Thomas G. Phys Rev Lett, 1992; 68: 3745

[2] Xiao J Q, Jiang J S, Chien C L. Phys Rev Lett, 1992; 68: 3749

[3] Galli G, Martin R M, Car R, Parrinello M. Phys Rev Lett, 1989; 62: 555

[4] Galli G, Martin R M, Car R, Parrinello M. Phys Rev, 1990; 42B: 7470

[5] McCulloch D G, McKenzie D R, Goringe C M. Phys Rev, 2000; 61B: 2349

[6] Haerle R, Riedo E, Pasquarello A, Baldereschi A. Phys Rev, 2001; 65B: 045101

[7] Yu M, Liu Y, Sellmyer D J. J Appl Phys, 1999; 85: 4319

[8] Mi W B, Guo L, Jiang E Y, Li Z Q, Wu P, Bai H L. J Phys, 2003; 36D: 2393

[9] Babonneau D, Briatico J, Petroff F, Cabioch T, Naudon A. J Appl Phys, 2000; 87: 3432

[10] Mi W B, Li Z Q, Wu P, Jiang E Y, Bai H L, Hou D L, Li X L. J Appl Phys, 2005; 97: 043903

[11] Fonseca F C, Ferlauto A S, Alvarez F, Goya G F, Jardim R F. J Appl Phys, 2005; 97: 044313

[12] Wang X C, Mi W B, Jiang E Y, Bai H L. Appl Phys Lett, 2006; 89: 242502

[13] Liu Y H, Yang L Q. Acta Metall Sin, 1989; 25: B396

(刘宜华, 杨林倩. 金属学报, 1989; 25: B396)

[14] Qin G W, Xiao Na, Yang B, Ren Y, Pei W L, Zhao X. Acta Metall Sin (Engl Lett), 2009; 22: 415

[15] Li M F, Shi J, Nakamura Y, Yu R H. Appl Phys, 2007; 89A: 807

[16] Cullity B D, Graham C D. Introduction to Magnetic Materials. New Jersey: Wiley, 2009: 360

[17] Yakushiji K, Mitani S, Takanashi K, Ha J, Fujimori H. J Magn Magn Mater, 2000; 212: 75

[18] Zhang L, Liu Y H, Zhang L S, Zhang R Z, Huang B X. Acta Metall Sin, 2003; 39: 109

(张林, 刘宜华, 张连生, 张汝贞, 黄宝歆. 金属学报, 2003; 39: 109)

[19] Zhang L, Zhang L S. Acta Metall Sin, 2008; 44: 277

(张林, 张连生. 金属学报, 2008; 44: 277)

[20] Liu Y, Sellmyer D J, Shindo D. Handbook of Advanced Magnetic Materials, Vol.1. New York: Springer, 2006: 246

[21] Yang P, Kwok S C H, Fu R K Y, Leng Y X, Wang J, Wan G J, Huang N, Leng Y, Chu P K. Surf Coat Technol, 2004; 177–178: 747

[22] Mott N F. Philos Mag, 1969; 19: 835

[23] Mott N F. Philos Mag, 1976; 34: 643
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