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1.
The dielectric characteristics of film samples of P(VDF-TrFE) + TGS composite in the frequency range of 103–107 Hz are studied. The values of the real and imaginary parts of the complex dielectric constant in the temperature range of–40 to 140°C, including the points of the polymer matrix’s transition to the glassy state when Tg ≈–25°C and the ferroelectric phase transition. An analysis of the ferroelectric crystal inclusion effect on the dielectric response of P(VDF-TrFE) copolymer matrix is carried out.  相似文献   

2.
The real part of the dielectric constant was studied in the temperature range of 340 to 10 K, and at frequencies that range from 1 to 104 Hz. The dipole contribution to the dielectric constant has been found at temperatures lower than 110 K while the space-charge contribution due to the increase of crystal defects is dominant at temperatures higher than 290K.  相似文献   

3.
Results of numerical calculation of the distribution of similar point charges over a uniformly charged dielectric plane are presented for different surface charge densities and surface temperatures. It is shown that, in the case of the surface charge density ranging from 2 × 10−6 to 7 × 10−5 C/m2 and temperatures ranging from 300 to 800 K, the Lindemann criterion is fulfilled for the average deviation of the point charge from the equilibrium position, and the collection of point charges at the dielectric surface can be regarded as a 2D Coulomb crystal.  相似文献   

4.
The results of studying the temperature-frequency dependences of the dielectric parameters of metal-polymer films of poly-[CumSalpn-1,3] are presented. The dispersion of polarization characteristics has been established in the ranges of frequencies f = 102–106 Hz and temperatures T = 293–340 K. The temperature dependence of the parameter of dielectric relaxation time distribution has been obtained. The role of the temperature factor in the charge processes under study has been discussed.  相似文献   

5.
Independent measurements at low temperatures of the anisotropic dielectric constant (∈1) of TTF-TCNQ are reported. The measurements utilize dielectric resonance techniques to determine ∈B1 and ∈a1 on the same crystal. The results confirm the unusually large value for ∈b1(4.2 K) > 103 and the anisotropic behavior ∈b1(4.2 K) > 102 found earlier in cavity perturbation studies of TTF-TCNQ.  相似文献   

6.
The small-signal ac response of single crystalline Ba1?xLaxF2+x solid solutions has been studied in the temperature region 300–820 K, and in the frequency range 4×10?2–5×104 Hz. At low temperatures the frequency dispersion is dominated by processes in the bulk. Apart from the bulk conductance these processes include a dielectric response determined by broad distributions of dipole-like relaxations. The increase of the static dielectric constant with increasing solute content is explained. At higher temperatures the frequency dispersion reflects interfacial phenomena. In addition to an almost ideal interface capacitance, phenomena are observed which indicate the growth of a surface layer due to a reaction between the electrolyte, and residual oxygen and/or water vapour from the ambient.  相似文献   

7.
The effect of irradiation on the dielectric properties of nylon 66.6 and Mylar was studied. In the case of nylon the dielectric loss peak at 350 K measured with an annular frequency of 104 l/s disappeared due to irradiation and the peak at higher temperaturcs shifted to still higher temperatures. In Mylar the α-peak grew in magnitude, indicating an increase in amorphousness, while the β-peak decreased. A rough estimate for the decrease in the magnitude of the effective number of dipoles is presented. The irradiation was carried out up to fast neutron fluence of 3 × 1017 nvt and gamma dose of 1 × 109 rad.  相似文献   

8.
Composite thin film is highly desirable for the dielectric applications. In order to develop composite thin film, a nanocomposite, in which nanosized CaCu3Ti4O12 (CCTO) particles are used as filler and P(VDF?CTrFE) 55/45 mol% copolymer is used as polymer matrix, is investigated. The contents of CCTO in the nanocomposites range from 0% to 50?vol%. The dielectric property of these nanocomposites was characterized at frequencies ranging from 100 Hz to 1 MHz and at temperatures ranging from 200 K to 370 K. A dielectric constant of 62 with a loss of 0.05 was obtained in nanocomposite with 50?vol% CCTO at room temperature at 1 kHz. At the phase transition temperature (??340?K) of the copolymer, a dielectric constant of 150 with a loss less than 0.1 was obtained in this nanocomposite. It is found that the dielectric loss of the nanocomposites is dominated by the polymer which has a relaxation process. Comparing to composites made using microsized CCTO, the nanocomposites exhibit a much lower dielectric loss and a lower dielectric constant. This indicates that the nanosized CCTO particles have a lower dielectric constant than the microsized CCTO particles.  相似文献   

9.
The dielectric response of lithium niobate single crystal in ac fields with amplitudes E of 3.74 to 13.1 kV cm?1 is investigated at frequencies of 1 and 10 Hz in the temperature range of 70 to 200°C. The increase in effective dielectric permittivity ?eff′ and the effective dielectric losses ?eff″ is found to be associated with the formation of short-radius Nb Li 4+ polarons at temperatures T > 130°C and their contribution to polarization relaxation in a LiNbO3 crystal.  相似文献   

10.
《Current Applied Physics》2009,9(5):1155-1159
Pure and sodium chloride (NaCl)-added Triglycine sulfate (TGS) crystals were grown from aqueous solutions by slow evaporation technique. The values of concentration of dopants in the mother solution were 0.2, 0.6 and 1 mol%. The solubility of the grown samples have been found out at various temperatures. The determination of unit cell parameters was carried out by single crystal XRD method and found that the grown crystals crystallize in monoclinic structure. The dielectric characterization for the pure and NaCl-doped TGS crystals was performed by measuring the dielectric parameters like dielectric constant and dielectric loss with various frequencies in the range 102–106 Hz and with the temperatures ranging from 30 to 70 °C and this study reveals an increase of dielectric constant and loss with the increase of NaCl concentration. Studies on mechanical properties like microhardness and density of the grown pure and NaCl-doped TGS crystals were carried out. UV–Visible transmittance studies were carried out for the grown samples. A sharp fall in the transmittance is observed at 228 nm for pure and NaCl-doped TGS crystals. Atomic absorption spectroscopic (AAS) study was done on the NaCl-doped TGS crystals to ascertain the presence of Na+ ions in the lattice.  相似文献   

11.

Dielectric constant, dielectric loss and AC conductivity were measured, in the frequency range 100 Hz to 5 MHz in chlorinated poly (vinyl chloride) (CPVC) before and after exposure to gamma irradiation at doses between 5.0 KGy and 50.0 KGy. The frequency dependencies of ε′, ε″ and σAC at 30 °C were investigated. A relaxation peak in the dielectric loss and a corresponding step in the dielectric constant have been observed, in the frequency ranges 103 Hz to 104 Hz. The dielectric constant ε′, dielectric loss ε″ and AC conductivity σAC are also found to increase at heating up to 100 °C. In addition the effect of gamma irradiation on the frequency dependencies of ε′, ε″ and σAC was measured at room temperature. The gamma irradiation leads to an increase in the efficiency of soft segments. Furthermore, the DC electrical conductivity of both the irradiated and non-irradiated samples was investigated. The induced electrical conductivity and the activation energy were measured, at various temperatures, as a function of gamma dose. It was found that the gamma radiation has a definite effect on the DC conductivity of the CPVC polymer.  相似文献   

12.
Measurements of the dielectric constant and the electric conductivity of ice doped with about 10?2N NH4F led to an activation energy of the relaxation time of 0.10 eV=2.4 kcal/Mol. Despite the fact that the relaxation times of pure and doped ice are about the same at temperatures close to ?10°C, the statement ofDengel et al. [1], that NH4F doping does not affect the dielectric relaxation, cannot be maintained in view of the large difference in activation energies.  相似文献   

13.
For the first time, the method of dielectric dispersion in the 10?1–107 frequency range is applied to study temperature the dependences of permittivity, conductivity, and dielectric modulus of natural inyoite in the temperature range from ?50 to 140°C. An anomalous increase in the parameters under consideration is observed at temperatures between 87 and 98°C. According to thermal gravimetrical measurements, this range is characterized by an anomaly resulting from a partial loss of crystallization water.  相似文献   

14.
The dielectric properties of a series of homoionic alkali-exchanged montmorillonites were studied at different treatment temperatures and various water loadings by means of complex impedance spectroscopy. To date, however, this method has been underutilized in clay minerals studies. The main objective of the present work is to understand the relaxation mechanisms of water molecules interacting with different hydration centers in clay minerals, with a view to eventually control their interactions with the alkali extra-framework cations. The other part of our study is to study the dielectric properties such as real and imaginary parts of dielectric permittivity, loss tangent, and ac conductivity in the frequency range 10?2–106?Hz and temperature range 173–333?K of these clay minerals. The obtained results have been discussed in terms of the Jonscher model.  相似文献   

15.
The dielectric constant of a crystal of KCl containing 0.2 at% OH? was measured at 9.4 GHz for temperatures between 2 and 20 K. A logarithmic temperature dependence of the real part of the dielectric constant is reported below 10 K.  相似文献   

16.
Near-normal incident infrared reflectivity spectra of a (001) YVO4 single crystal have been measured at different temperatures in the frequency region between 100 and 6000 cm-1. The reflectivity spectra are analyzed with the factorized form of the dielectric function, and the dielectric properties and optical conductivity of the YVO4 crystal are obtained. From the TO/LO splitting, effective charges at different temperatures are calculated to study the ionicity of YVO4. The internal modes of the VO43- ion and the external modes of the Y(VO4) lattice are compared with SiO44- in zircon and with other rare-earth vanadates.  相似文献   

17.
Solid solutions of barium, strontium, and lead titanate ceramics with a perovskite structure are studied using impedance spectroscopy in the frequency range 102–106 Hz at temperatures from 20 to 450°C. The experimental data represented by the dispersion of the electric modulus are compared with the results of calculations performed for different mechanisms of the non-Debye relaxation in terms of the Havrilyak-Negami empirical formulas and the Jonscher universal dielectric response with the aim of determining a more adequate approach. The activation energy of relaxation processes in the paraelectric phase of the samples under investigation are calculated.  相似文献   

18.
A memory element based on a Si/CaF2 periodic nanostructure is proposed. In this element, information is recorded through charge capture by trap states in a CaF2 dielectric. The high and low signal levels correspond to the current in the maximum and minimum of the negative differential resistance region, which forms as a result of the resonant tunnel distribution of charge carriers over trap levels in the dielectric. The speed of such logical elements depends on the rate of activation carrier trapping and the rate of tunnel carrier transfer from one state to another. It is shown that both Si/CaF2-based logical elements and memory elements proposed operate at temperatures from 77 to 300 K, have a switching time of 10−12–10−10 s, and are compatible with silicon IC technology.  相似文献   

19.
Dielectric relaxation study of N,N-dimethylformamide (DMF) has been carried out with propylene glycol (PLG) at different temperatures. Time domain reflectometry (TDR) in reflection mode has been used to measure the reflection coefficient in frequency range of 10 MHz to 20 GHz. The dielectric parameters static dielectric permittivity (? 0) and relaxation time (τ) have been obtained by Fourier transform and least squares fit methods. The experimental results show nonlinear variation in dielectric permittivity and relaxation time with volume fraction of PLG confirm the structural formation due to the intermolecular interaction between N,N-dimethylformamide and PLG. The variation in excess permittivity (ε E), excess inverse relaxation times (1/τ)E, Kirkwood correlation factors (g eff, g f), activation enthalpy (ΔH) and entropy (ΔS) are also calculated to study the binary mixture interaction.  相似文献   

20.
The temperature and frequency dependences of the complex permittivity of polyhydroxyalkanoate biopolymer solutions in chloroform are investigated. Complex dependences of dielectric increments and high-frequency conductivity of copolymer solutions of homogeneous -hydroxybutyric and -hydroxyvaleric acid polymers with concentrations of 7–62 mol. % is established. It is demonstrated that the dielectric increment of the solution decreases with increasing weight-average relative molecular mass. No dispersion of real permittivity components has been detected in the examined frequency range 102–105 Hz. The low-frequency increase in the loss tangent according to a hyperbolic law is connected with the solution conductivity. The effective dipole moments of macromolecules are determined and their nonmonotonic dependence on the poly (-hydroxyvalerate) concentration is established.  相似文献   

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