Journal of Inorganic Materials, Volume. 35, Issue 11, 1263(2020)
[1] BUTLER W H, ZHANG X G, SCHULTHESS T C et al. Spin-dependent tunneling conductance of Fe|MgO|Fe sandwiches[J]. Physical Review B, 63, 054416(2001).
[2] DEAC A M, FUKUSHIMA A, KUBOTA H et al. Bias-driven high-power microwave emission from MgO-based tunnel magnetoresistance devices[J]. Nature Physics, 4, 803(2008).
[3] BLACK JR W C, DAS B. Programmable logic using giant- magnetoresistance and spin-dependent tunneling devices[J]. Journal of Applied Physics, 87, 6674-6679(2000).
[4] PENG Z L, LI Z Y, HU Q et al. Anisotropic magnetoresistance and size effect of (Ni0.81Fe0.19)0.66Cr0.34/Ni0.81Fe0.19 thin films[J]. Journal of Inorganic Materials, 17, 321-325(2002).
[5] DOKUKIN E B, ERHAN R V, ISLAMOV A K et al. Formation of the magnetic fractal structure in Co-SiO2 granular nanocomposite system at percolation threshold[J]. Physica Status Solidi, 250, 1656-1662(2013).
[6] TIAN Y F, YAN S, ZHANG Y P et al. Transformation of electrical transport from variable range hopping to hard gap resistance in Zn1-
[7] BHUTTA K M, REISS G. Magnetoresistance and transport properties of CoFeB/MgO granular systems[J]. Journal of Applied Physics, 107, 113718(2010).
[8] CAO Y, UMETSU A, KOBAYASHI N et al. Tunable frequency response of tunnel-type magneto-dielectric effect in Co-MgF2 granular films with different content of Co[J]. Applied Physics Letters, 111, 122901(2017).
[9] CAO Y, ZHANG Y W, OHNUMA S et al. Magnetic properties and thermal stability of Co/HfN multilayer films for high- frequency application[J]. AIP Advances, 7, 065202(2017).
[12] WANG X, LI B, ZHOU L et al. Influence of surface structures on biocompatibility of TiO2/HA coatings prepared by MAO[J]. Materials Chemistry and Physics, 215, 339-345(2018).
[13] BHATTARAI D P, SHRESTHA S, SHRESTHA B K et al. A controlled surface geometry of polyaniline doped titania nanotubes biointerface for accelerating MC3T3-E1 cells growth in bone tissue engineering[J]. Chemical Engineering Journal, 350, 57-68(2018).
[14] JIANG W, CUI H, SONG Y. Electrochemical corrosion behaviors of titanium covered by various TiO2 nanotube films in artificial saliva[J]. Journal of Materials Science, 53, 15130-15141(2018).
[15] WAN F, AN H, HARUMOTO T et al. Temperature-dependent magnetotransport of Co-Ti-O nanocomposite films[J]. Journal of Physics D: Applied Physics, 52, 135302(2019).
[16] SONG H Q, MEI L M, YAN S S et al. Microstructure, ferromagnetism, and magnetic transport of Ti1-
[17] WANG Y, ZHANG H, WANG L et al. Compositional dependence of magnetic and high frequency properties of nanogranular FeCo-TiO2 films[J]. Journal of Applied Physics, 115, 17A306(2014).
[18] ZHANG Y, KOBAYASHI N, OHNUMA S et al. Structure, magnetic and dielectric properties of BaTiO3-Co multi-layer nano-composite films[J]. Journal of Magnetism and Magnetic Materials, 401, 925-928(2016).
[19] KOLLBEK K, SIKORA M, KAPUSTA C et al. X-ray spectroscopic methods in the studies of nonstoichiometric TiO2-
[20] LI J, WANG J, WANG D et al. Band gap engineering of titania film through cobalt regulation for oxidative damage of bacterial respiration and viability[J]. ACS Applied Materials & Interfaces, 9, 27475-27490(2017).
[21] CHANDA A, ROUT K, VASUNDHARA M et al. Structural and magnetic study of undoped and cobalt doped TiO2 nanoparticles[J]. RSC Advances, 8, 10939-10947(2018).
[22] MOTT N F. The Electrical Conductivity of Transition Metals. Proceedings of the Royal Society of London. Series A-Mathematical and[C]. Physical Sciences, 153, 699-717(1936).
Get Citation
Copy Citation Text
Haoyu CHEN, Yiwen ZHANG, Zhong WU, Zhenbo QIN, Shanshan WU, Wenbin HU.
Category: RESEARCH PAPER
Received: Jan. 13, 2020
Accepted: --
Published Online: Mar. 10, 2021
The Author Email: Yiwen ZHANG (ywzsci@tju.edu.cn)