Relaxation behaviour of pristine and ZnO impregnated PS nanocomposite films using thermally stimulated depolarization current technique
暂无分享,去创建一个
[1] Maneesha Garg,et al. Effect of ZnO nanoparticles and temperature on dielectric constant/loss properties of polystyrene nanocomposite films , 2023, The European Physical Journal Plus.
[2] Maneesha Garg,et al. Field and Temperature Assisted Dc/Ac Conduction Measurements of Ps/Zno Nanocomposite Films , 2023, SSRN Electronic Journal.
[3] Maneesha Garg,et al. Polystyrene/ ZnO Nanocomposite Films with Optimized Optical Properties for UV-shielding Applications , 2023, Transactions on Electrical and Electronic Materials.
[4] G. Psarras,et al. Flexible Polymer-Based Nanodielectrics Reinforced with Electrospun Composite Nanofibers for Capacitive Energy Storage , 2022, ACS Applied Polymer Materials.
[5] Maneesha Garg,et al. Optical and morphological characterization of ZnO nano-sized powder synthesized using single step sol-gel technique , 2022, Optical Materials.
[6] Maneesha Garg,et al. Pristine, Irradiated and Nanocomposite Polystyrene: Recent Experimental and Theoretical Developments , 2021, Transactions on Electrical and Electronic Materials.
[7] A. Abdelghany,et al. Structural, optical, and electrical reinforcement of gamma-irradiated PEO/SA/Au NPs nanocomposite , 2021, Journal of Materials Science: Materials in Electronics.
[8] A. Abdelghany,et al. Optical and dielectric characteristics of polyethylene oxide/sodium alginate-modified gold nanocomposites , 2020, RSC advances.
[9] S. Mansour,et al. Thermal Degradation of Polystyrene (PS) Nanocomposites Loaded with Sol Gel-Synthesized ZnO Nanorods , 2020, Polymers.
[10] Sandeep Sharma,et al. Structural and electroactive properties of 55 MeV carbon ion beam irradiated polycarbonate films , 2020 .
[11] W. Jilani,et al. Exploring the structural properties and enhancement of Opto-electrical investigations for the synthesized epoxy based polymers with local nanoscale structures , 2020, Materials Research Express.
[12] J. Runt,et al. A highly scalable dielectric metamaterial with superior capacitor performance over a broad temperature , 2020, Science Advances.
[13] A. Abdelbary,et al. Thermally stimulated depolarization current characteristic of EVA–conductive PPy composites , 2020, Journal of Composite Materials.
[14] P. Pissis,et al. Glass Transition and Molecular Dynamics in Core–Shell-Type Nanocomposites Based on Fumed Silica and Polysiloxanes: Comparison between Poly(dimethylsiloxane) and Poly(ethylhydrosiloxane) , 2019, The Journal of Physical Chemistry C.
[15] Chenglin Zhong,et al. Improved Electret Properties of Poly(Vinylidene Fluoride)/Lithium Niobate Nanocomposites for Applications in Air Filters , 2019, Macromolecular Materials and Engineering.
[16] M. Isik,et al. The defect state of Yb-doped ZnO nanoparticles using thermoluminescence study , 2019, Materials Science in Semiconductor Processing.
[17] C. Azhari,et al. The effect of particle compositions on the activation energy of the pa6/bagasse composite , 2019, IOP Conference Series: Materials Science and Engineering.
[18] N. Gasanly,et al. Traps distribution in sol-gel synthesized ZnO nanoparticles , 2019, Materials Letters.
[19] A. Abdelghany,et al. Influence of green synthesized gold nanoparticles on the structural, optical, electrical and dielectric properties of (PVP/SA) blend , 2019, Physica B: Condensed Matter.
[20] Dalveer Kaur,et al. Measurement of AC and DC relaxation properties in polyvinyl chloride (PVC) nanocomposites , 2019, Measurement.
[21] M. Isik,et al. Gd-doped ZnO nanoparticles: Synthesis, structural and thermoluminescence properties , 2019, Journal of Luminescence.
[22] Pramod K. Singh,et al. Effect of interface in dielectric relaxation properties of PEMA–BaZrO3 nanocomposites , 2018, Polymer Bulletin.
[23] A. Pal. Nature of Thermally Stimulated Discharge Current in Pure and Blend Samples of PVC and PMMA , 2018 .
[24] Zhenxing Yue,et al. Thermally stimulated depolarization currents and dielectric properties of Mg0.95Ca0.05TiO3 filled HDPE composites , 2017 .
[25] H. Nagabhushana,et al. Characterization and Evaluation of Activation Energy for Dc Conductivity of Polypyrrole/Nickel Zinc Iron Oxide Nanocomposites , 2017 .
[26] A. Zihlif,et al. Optical and electrical properties of polystyrene composites containing ultrafine iron particles , 2016 .
[27] M. Gaur,et al. Investigation of structural and thermal characteristics of PVDF/ZnO nanocomposites , 2013, Journal of Thermal Analysis and Calorimetry.
[28] M. T. Ahmed,et al. Study of the Relaxation Phenomenon of Poly(vinyl chloride-co-vinylacetate-co-2-hydroxypropyl acrylate)/Poly(methyl methacrylate) Blends Using TSDC-TS Technique: Dipole-dipole Interaction Approach , 2011 .
[29] J. K. Quamara,et al. Evaluation of dielectric relaxation parameters from TSDC analysis of pristine and ion irradiated kapton-H polyimide , 2011 .
[30] M. Gaur,et al. Thermally stimulated depolarization study in polyvinylidenefluoride–polysulfone polyblend films , 2010 .
[31] Pramod K. Singh,et al. Optical and thermo electrical properties of ZnO nano particle filled polystyrene , 2010 .
[32] H. Smaoui,et al. Study of relaxations in epoxy polymer by thermally stimulated depolarization current (TSDC) and dielectric relaxation spectroscopy (DRS) , 2010 .
[33] M. Gaur,et al. Effect of Blending with Polysulfone on Thermally Stimulated Discharge Behavior of Polyvinylidenefluoride Films , 2009 .
[34] P. Shukla,et al. Thermally stimulated discharge current and fractional polarization studies in polyimide (Kapton-H) samples , 2008 .
[35] A. U. Ubale,et al. Structural characterization and thermally stimulated discharge conductivity (TSDC) study in polymer thin films , 2007 .
[36] V. Gun'ko,et al. TSDC spectroscopy of relaxational and interfacial phenomena. , 2007, Advances in colloid and interface science.
[37] J. Reboul. Simultaneous space charge and TSDC measurements on polarized polymer , 2006, IEEE Transactions on Dielectrics and Electrical Insulation.
[38] A. U. Ubale,et al. Thermally stimulated discharge conductivity in polymer composite thin films , 2006 .
[39] Maneesha Garg,et al. Multiple relaxation processes in high-energy ion irradiated kapton-H polyimide: Thermally stimulated depolarization current study , 2006 .
[40] J. K. Quamara,et al. Thermally stimulated depolarization current behaviour of 75 MeV oxygen ion irradiated Kapton-H polyimide film , 2005 .
[41] W. Sakamoto. Dielectric spectroscopy and thermally stimulated discharge current in PEEK film , 2003, Ecletica Quimica.
[42] E. Neagu,et al. Evaluation of the dielectric parameters from TSDC spectra: application to polymeric systems , 2001 .
[43] J. Mano. Modelling of TSDC results in polymeric materials , 2000 .
[44] E. Laredo,et al. The analysis of TSDC peaks with a KWW relaxation function or a distribution of relaxation times in polymers , 1999 .
[45] J. Reboul,et al. Space charge measurements by the thermal-step-method and TSCD in polymeric materials , 1995, Proceedings of 1995 Conference on Electrical Insulation and Dielectric Phenomena.
[46] T. C. Goel,et al. Thermally stimulated discharge current studies in a polymethyl methacrylate polystyrene blend , 1994, Proceedings of 8th International Symposium on Electrets (ISE 8).
[47] R. H. Boyd. Relaxation processes in crystalline polymers: molecular interpretation — a review , 1985 .
[48] J. D. Ranade,et al. Thermally stimulated discharge currents in polystyrene films , 1980 .
[49] R. Gerhard,et al. Relaxation processes determining the electret stability of high-impact polystyrene/titanium-dioxide composite films , 2017, IEEE Transactions on Dielectrics and Electrical Insulation.
[50] G. Klar,et al. Dielectric relaxation peaks in the low-frequency/high-temperature range of the loss permittivity curve studied by the thermostimulated depolarization current (TSDC) technique in 2,3,7,8-tetramethoxychalcogenanthrenes–TCNQ charge-transfer complexes , 1991 .
[51] G. West. Relaxation times of polystyrene , 1969 .