DC conductivity of consolidated nanoparticles of NiO
Tài liệu tham khảo
P. Marquardt, G. Nimtz, B. Muhlschlegel, On the quasi-static conductivity of sub-micrometer crystals, Solid State Commun. 65 (6) (1988) 539–542.
P. Marquardt, Quantum-size affected conductivity of mesoscopic metal particles, Phys. Lett. A (Netherlands) 123 (7) (1987) 65–68.
K. Frahm, B. Muhlschlegel, R. Nemeth, Size dependent ac conductivity of small metal particles, Z. Phys. B Condens. Mater. 78 (1990) 91–97.
P.J. Yetman, J.C. Gill, Size dependent threshold fields for Frohlich conduction in niobium triselenide: possible evidence for pinning by the crystal surface, Solid State Commun. 62 (3) (1987) 201–206.
L. Brus, Electronic wavefunctions in semiconductor clusters: experiment and theory, J. Phys. Chem. 90 (1986) 2555–2560.
C. Suryanarayana, Structure and properties of nanocrystalline materials, Bull. Mater. Sci. 17 (4) (1994) 307–346.
Y.M. Chiang, E.B. Lavik, D.A. Blom, Defect thermodynamics and electrical properties of nanocrystalline oxides: pure and doped CeO2, Nanostruct. Mater. 9 (1997) 633–642.
L.W. Molencamp, H. van Houten, A.A.M. Staring, C.W.J. Beenakker, Quantum effects in thermal and thermoelectric transport in semiconductor nanostructures, Physica Scripta T49 (1993) 441–445.
K. Lu, J.T. Wang, W.D. Wei, Comparison of nanocrystalline and amorphous Ni-P alloys, J. Phys. D Appl. Phys. 25 (1992) 808–812.
M. Abdul Khadar, B. Thomas, DC conductivity of nanoparticles of CdS and ZnS, Nanostruct. Mater. 10 (4) (1998) 593–600.
M. Abdul Khadar, B. Thomas, Investigation of electrical properties of certain II-VI materials in the nanosize regime, in: K.P. Jain (Ed.), Physics of Semiconductor Nanostructures, Narosa Publishing House, New Delhi, 1997.
G.K. Werthein, S. Huffner, X-ray photoemission bands structure of some transition-metal oxides, Phys. Rev. Lett. 28 (16) (1972) 1028–1031.
J. Zaanen, G.A. Sawatzky, J.W. Allen, Band gaps and electronic structure of transition-metal compounds, Phys. Rev. Lett. 55 (4) (1985) 418–421.
L.F. Mattheiss, Electronic structure of the 3d transition metal monoxides: I Energy band results, Phys. Rev. B 5 (2) (1972) 290–315.
T. Takahashi, Electronic excitations in NiO, Ann. Phys. 5 (3) (1996) 247–257.
F. Aryasetiwan, K. Karlsson, GW spectral functions of Gd and NiO, Phys. Rev. B 54 (8) (1996) 5353–5357.
Moore, 1967
F.J. Morin, Electrical properties of NiO, Phys. Rev. B 93 (6) (1954) 1199–1204.
G. Paravano, Thermoelectric behaviour of nickel oxide, J. Chem. Phys. 23 (1) (1955) 5–10.
D.P. Snowden, H. Saltzburg, Hopping conduction in NiO, Phys. Rev. Lett. 14 (13) (1965) 497–499.
David Adler, Julius Feinleib, Electrical and optical properties of narrow-band materials, Phys. Rev. B 2 (8) (1970) 3112–3134.
P. Lunkenheimer, A. Loidl, Correlated barrier hopping in NiO films, Phys. Rev. Lett. 44 (11) (1991) 5927–5930.
P. Puspharajah, S. Radhakrishna, Transparent conducting Li-doped nickel oxide thin films by spray pyrolysis technique, J. Mater. Sci. 32 (1997) 3001–3006.
Yoshnobu Nakumara, Hiroshi Ogara, Tetsnya Nakashima, Akura Kishimoto, Hiroaki Yanagida, Strain-dependent electrical conductivity in the system NiO-CaO, J. Am. Ceram. Soc. 80 (6) (1997) 1609–1611.
Michael A. Wittenauer, L.L. Van Zandt, Surface conduction versus bulk conduction in pure stoichiometric NiO crystals, Philos. Mag. B 46 (6) (1982) 659–667.
G. Palumbo, S.J. Thorpe, K.T. Aust, On the contribution of triple junction to the structure and properties of nanocrystalline materials, Scr. Metall. Mater. 24 (1990) 1347–1350.
W. Bollmann, Triple lines in polycrystalline aggregates as disclinations, Philos. Mag. A 49 (1) 73–79.
E.Z. Meilikhov, R.M. Farzetdinova, Branching of electron current and quantum effects in two-dimensional dislocation barrier of n-type semiconductor, Physica. E 3 (1998) 190–197.