Multiphonon hopping of carriers in CuO thin films
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- Type
- article
- Published
- 2011-10-01
- Cited by
- 46
- References
- 25
- OpenAlex
- https://openalex.org/W1997472799
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:119574260
Keywords
Thermal conduction, Variable-range hopping, Condensed matter physics, Materials science, Electrical conduction
References
- Polycrystalline and amorphous thin films and devices
- Hydrogenated amorphous silicon: Index
- Polaron transport in TiO2 thin films
- Electron–Electron Interactions in Sb-Doped SnO2 Thin Films
- A study of the magnetic transitions in CuO: specific heat (1-330 K), magnetic susceptibility and phonon density of states
- The energy gap law for radiationless transitions in large molecules
- Preparation of copper oxide thin film by the sol-gel-like dip technique and study of their structural and optical properties
- Chemically deposited copper oxide thin films: structural, optical and electrical characteristics
- The thickness effect on the electrical conduction mechanism in titanium oxide thin films
- Surface accumulation conduction controlled sensing characteristic of p-type CuO nanorods induced by oxygen adsorption
- Extraction of important electrical parameters of CuO
- Metal-insulator transition in ferromagnetic Mn-doped CuO thin films
- Phonon-assisted transition rates I. Optical-phonon-assisted hopping in solids
- Dielectric measurement to probe electron ordering and electron-spin interaction
- Impurity Conduction at Low Concentrations
- Cuprite, paramelaconite and tenorite films deposited by reactive magnetron sputtering
- Phonon-Assisted Jump Rate in Noncrystalline Solids
- The structure and properties of copper oxide and copper aluminium oxide coatings prepared by pulsed magnetron sputtering of powder targets
- Electrical conduction in composites containing copper core-copper oxide shell nanostructure in silica gel
- Non-radiative transitions
Cited by
- Structural, optical and photocatalytic properties of Fe and (Co, Fe) co-doped copper oxide spin coated films.
- Structural and Morphological Studies of (NiO)1-x(CuO)x Thin Films Prepared by Chemical Spray Paralysis Technique
- CuO nanostructures: Synthesis, characterization, growth mechanisms, fundamental properties, and applications
- Hopping conduction in In-doped CuO thin films
- Fluctuating in the hopping rate of CuO thin films with respect to substrate temperature
- Effect of the Sintering Temperature and Atmosphere on the Microstructural Evolution and Shrinkage Behavior of CuO Ceramics
- Industrially benign super-compressible piezoresistive carbon foams with predefined wetting properties: from environmental to electrical applications
- CuO nanostructures grown by the SILAR method: Influence of Pb-doping on the morphological, structural and optical properties
- Vibrational, giant dielectric and AC conductivity properties of agglomerated CuO nanostructures
- Multiphonon hopping conduction in carbon–nickel composite films at different deposition time
- Carbon films embedded by nickel nanoparticles: fluctuation in hopping rate and variable-range hopping with respect to annealing temperature
- Influence of Annealing Temperature on Berthelot-Type Hopping Conduction Mechanism in Carbon-Nickel Composite Films
- Oxygen vacancy and film crystallization effects on resistive switching behaviors of CuAlOx thin films
- A NOVEL H2S MONITOR USING COPPER (II) OXIDE AND RAMAN SPECTROSCOPY: A PROOF OF CONCEPT
- Effects of Co and Cu dopants on the structural, optical, and electrical properties of ZnO nanocrystals
- Thermal conversion of Cu4O3 into CuO and Cu2O and the electrical properties of magnetron sputtered Cu4O3 thin films
- Effect of Nickel Distributions Embedded in Amorphous Carbon Films on Transport Properties
- Exploration of temperature dependent dielectric relaxation and correlated barrier hopping (CBH) conduction mechanism of hydrothermally synthesized CuO nanoflakes
- Structural, optical and dielectric investigations of electrodeposited p-type Cu2O
- Relation between carriers hopping rate and structural constants in amorphous carbon nickel films with different nickel nanoparticles distributions
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