
Medium effect on dielectric relaxation behaviors of 4A zeolite bulk dispersion system
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关键词:
- Dielectric relaxation
- / 4A zeolite
- / Medium effect
- / Ion hopping
English
Medium effect on dielectric relaxation behaviors of 4A zeolite bulk dispersion system
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Key words:
- Dielectric relaxation
- / 4A zeolite
- / Medium effect
- / Ion hopping
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[1] G.H. Zhai, P. Yang, S.M. Wu, Y.B. Lei, Y.S. Dou, A semiclassical molecular dynamics of the photochromic ring-opening reaction of spiropyran, Chin. Chem. Lett. 25(2014) 727-731.[1] G.H. Zhai, P. Yang, S.M. Wu, Y.B. Lei, Y.S. Dou, A semiclassical molecular dynamics of the photochromic ring-opening reaction of spiropyran, Chin. Chem. Lett. 25(2014) 727-731.
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[2] J.Y. Wu, Q.L. Liu, Y. Xiong, A.M. Zhu, Y. Chen, Molecular simulation of water/alcohol mixtures' adsorption and diffusion in zeolite 4A membranes, J. Phys. Chem. B 113(2009) 4267-4274.[2] J.Y. Wu, Q.L. Liu, Y. Xiong, A.M. Zhu, Y. Chen, Molecular simulation of water/alcohol mixtures' adsorption and diffusion in zeolite 4A membranes, J. Phys. Chem. B 113(2009) 4267-4274.
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[3] W. Zhou, K.S. Zhao, The study of dielectric properties of 4A zeolites dispersed in silicone oil, Colloid Surf. A 217(2008) 10-16.[3] W. Zhou, K.S. Zhao, The study of dielectric properties of 4A zeolites dispersed in silicone oil, Colloid Surf. A 217(2008) 10-16.
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[4] G. Rodríguez-Fuentes, S. Devautour-Vinot, S. Diaby, F. Henn, Insights into cation exchange selectivity of a natural clinoptilolite by means of dielectric relaxation spectroscopy, Phys. Chem. Miner. 38(2011) 613-621.[4] G. Rodríguez-Fuentes, S. Devautour-Vinot, S. Diaby, F. Henn, Insights into cation exchange selectivity of a natural clinoptilolite by means of dielectric relaxation spectroscopy, Phys. Chem. Miner. 38(2011) 613-621.
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[5] A. Nicolas, S. Devautour-Vinot, G. Maurin, J.C. Giuntini, F. Henn, Cation dynamics upon adsorption of methanol in Na-Y faujasite type zeolites:A dielectric relaxation spectroscopy investigation, J. Phys. Chem. C 111(2007) 4722-4726.[5] A. Nicolas, S. Devautour-Vinot, G. Maurin, J.C. Giuntini, F. Henn, Cation dynamics upon adsorption of methanol in Na-Y faujasite type zeolites:A dielectric relaxation spectroscopy investigation, J. Phys. Chem. C 111(2007) 4722-4726.
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[6] V. Petrovsky, T. Petrovsky, S. Kamlapurkar, F. Dogan, Characterization of dielectric particles by impedance spectroscopy (Part I), J. Am. Ceram. Soc. 91(2008) 1814-1816.[6] V. Petrovsky, T. Petrovsky, S. Kamlapurkar, F. Dogan, Characterization of dielectric particles by impedance spectroscopy (Part I), J. Am. Ceram. Soc. 91(2008) 1814-1816.
-
[7] V. Petrovsky, T. Petrovsky, S. Kamlapurkar, F. Dogan, Physical modeling and electrodynamic characterization of dielectric slurries by impedance spectroscopy (Part II), J. Am. Ceram. Soc. 91(2008) 1817-1819.[7] V. Petrovsky, T. Petrovsky, S. Kamlapurkar, F. Dogan, Physical modeling and electrodynamic characterization of dielectric slurries by impedance spectroscopy (Part II), J. Am. Ceram. Soc. 91(2008) 1817-1819.
-
[8] W. Zhou, B.B. Hinojosa, J.C. Nino, Applicability of the Bruggeman equation for analyzing dielectric slurries containing ceramic powders with high permittivity, J. Am. Ceram. Soc. 95(2012) 457-460.[8] W. Zhou, B.B. Hinojosa, J.C. Nino, Applicability of the Bruggeman equation for analyzing dielectric slurries containing ceramic powders with high permittivity, J. Am. Ceram. Soc. 95(2012) 457-460.
-
[9] W. Zhou, Y.M. Nie, S.J. Li, H.Y. Liang, The importance of the solids loading on confirming the dielectric nanosize dependence of BaTiO3 powders by slurry method, Sci. World J. 2013(2013) 1-3.[9] W. Zhou, Y.M. Nie, S.J. Li, H.Y. Liang, The importance of the solids loading on confirming the dielectric nanosize dependence of BaTiO3 powders by slurry method, Sci. World J. 2013(2013) 1-3.
-
[10] S. Wada, H. Yasuno, T. Hoshina, et al., Preparation of nm-sized barium titanate fine particles and their powder dielectric properties, Jpn. J. Appl. Phys. 42(2003) 6188-6195.[10] S. Wada, H. Yasuno, T. Hoshina, et al., Preparation of nm-sized barium titanate fine particles and their powder dielectric properties, Jpn. J. Appl. Phys. 42(2003) 6188-6195.
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[11] A.V. Delgado, F.J. Arroyo, F. González-Caballero, V.N. Shilov, Y.B. Borkovskaya, The effect of the concentration of dispersed particles on the mechanisms of lowfrequency dielectric dispersion (LFDD) in colloidal suspensions, Colloid Surf. A 140(1998) 139-149.[11] A.V. Delgado, F.J. Arroyo, F. González-Caballero, V.N. Shilov, Y.B. Borkovskaya, The effect of the concentration of dispersed particles on the mechanisms of lowfrequency dielectric dispersion (LFDD) in colloidal suspensions, Colloid Surf. A 140(1998) 139-149.
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[12] T. Hanai, K. Sekine, Theory of dielectric relaxations due to the interfacial polarization for two-component suspensions of spheres, Colloid Polym. Sci. 264(1986) 888-895.[12] T. Hanai, K. Sekine, Theory of dielectric relaxations due to the interfacial polarization for two-component suspensions of spheres, Colloid Polym. Sci. 264(1986) 888-895.
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[13] B. Legras, I. Polaert, L. Estel, M. Thomsa, Mechanisms responsible for dielectric properties of various faujasites and linde type A zeolites in the microwave frequency range, J. Phys. Chem. C 115(2011) 3090-3098.[13] B. Legras, I. Polaert, L. Estel, M. Thomsa, Mechanisms responsible for dielectric properties of various faujasites and linde type A zeolites in the microwave frequency range, J. Phys. Chem. C 115(2011) 3090-3098.
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[14] T. Ohgushi, K. Ishimaru, Dielectric properties of dehydrated NaA zeolite, analyses and calculation of dielectric spectra, Phys. Chem. Chem. Phys. 3(2001) 3229-3234.[14] T. Ohgushi, K. Ishimaru, Dielectric properties of dehydrated NaA zeolite, analyses and calculation of dielectric spectra, Phys. Chem. Chem. Phys. 3(2001) 3229-3234.
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[15] C. Grosse, Permittivity of a suspension of charged spherical particles in electrolyte solution. 2. Influence of the surface conductivity and asymmetry of the electrolyte on the low- and high-frequency relaxations, J. Phys. Chem. 92(1988) 3905-3910.[15] C. Grosse, Permittivity of a suspension of charged spherical particles in electrolyte solution. 2. Influence of the surface conductivity and asymmetry of the electrolyte on the low- and high-frequency relaxations, J. Phys. Chem. 92(1988) 3905-3910.
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