Dielectric relaxation and polaron hopping in biomass derived activated carbon
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[1] M. A. Ahmad Zaini,et al. Vitex doniana seed activated carbon for methylene blue adsorption: equilibrium and kinetics. , 2023, International journal of phytoremediation.
[2] C. Saka,et al. Phosphorus and oxygen co-doped carbon particles based on almond shells with hydrothermal and microwave irradiation process for adsorption of lead (II) and cadmium (II) , 2022, Environmental Science and Pollution Research.
[3] V. Raman,et al. A comprehensive investigation of dielectric properties of epoxy composites containing conducting fillers: Fluffy carbon black and various types of reduced graphene oxide , 2022, Polymers for Advanced Technologies.
[4] M. A. Mohamed,et al. Dielectric relaxation and small polaron hopping transport in sol-gel-derived NiCr2O4 spinel chromite , 2021 .
[5] M. Sarjadi,et al. Chemical functional groups of extractives, cellulose and lignin extracted from native Leucaena leucocephala bark , 2021, Wood Science and Technology.
[6] Y. Kiros,et al. Synthesis and evaluation of activated carbon from rice husks for removal of humic acid from water , 2020, Biomass Conversion and Biorefinery.
[7] Guohua Fan,et al. Tailorable Negative Permittivity of Carbon Materials Derived from Microcrystalline Cellulose at Different Carbonizing Temperature , 2020 .
[8] Tingting Chen,et al. Synthesis of activated carbon from biowaste of fir bark for methylene blue removal , 2019, Royal Society Open Science.
[9] Soojin Park,et al. Functionalized Carbon Materials for Electronic Devices: A Review , 2019, Micromachines.
[10] M. Pawlyta,et al. Structure of Carbon Materials Explored by Local Transmission Electron Microscopy and Global Powder Diffraction Probes , 2018, C.
[11] C. Saka,et al. Sequential application of microwave and conventional heating methods for preparation of activated carbon from biomass and its methylene blue adsorption , 2018, Applied Thermal Engineering.
[12] C. Saka,et al. Characterization of Microwave and Conventional Heating on the Pyrolysis of Pistachio Shells for the Adsorption of Methylene Blue and Iodine , 2018 .
[13] Zhuangjun Fan,et al. Biomass-derived carbon materials with structural diversities and their applications in energy storage , 2018, Science China Materials.
[14] G. Ji,et al. Dielectric polarization in electromagnetic wave absorption: Review and perspective , 2017 .
[15] A. Radoń,et al. Structure of nanographite synthesised by electrochemical oxidation and exfoliation of polycrystalline graphite , 2017 .
[16] Zhanhu Guo,et al. Tunable and weakly negative permittivity in carbon/silicon nitride composites with different carbonizing temperatures , 2017 .
[17] N. Ahlawat,et al. Effect of heating rate on microstructure and electrical properties of microwave sintered CaCu3Ti4O12 ceramics , 2017 .
[18] Laisen Wang,et al. Enhanced Microwave Absorption Properties by Tuning Cation Deficiency of Perovskite Oxides of Two-Dimensional LaFeO3/C Composite in X-Band. , 2017, ACS applied materials & interfaces.
[19] Zhuo Zhang,et al. The New Method of XRD Measurement of the Degree of Disorder for Anode Coke Material , 2017 .
[20] Zuojun Wei,et al. Graphene-supported Pd catalyst for highly selective hydrogenation of resorcinol to 1, 3-cyclohexanedione through giant π-conjugate interactions , 2015, Scientific Reports.
[21] Q. Guo,et al. Promising biomass-based activated carbons derived from willow catkins for high performance supercapacitors , 2015 .
[22] Qingfeng Sun,et al. A durable, superhydrophobic, superoleophobic and corrosion-resistant coating with rose-like ZnO nanoflowers on a bamboo surface , 2014 .
[23] Xuefeng Guo,et al. In situ hydrothermal deposition as an efficient catalyst supporting method towards low-temperature graphitization of amorphous carbon , 2014 .
[24] J. Luong,et al. Carbon Materials as Catalyst Supports and Catalysts in the Transformation of Biomass to Fuels and Chemicals , 2014 .
[25] A. Megriche,et al. Frequency-dependant Dielectric Characteristics and Conductivity Behavior of Sr1-x(Na0.5Bi0.5)xBi2Nb2O9 (x = 0.0, 0.2, 0.5, 0.8 and 1.0) Ceramics , 2013 .
[26] D. Rana,et al. Dielectric relaxation in polyvinyl alcohol–polypyrrole–multiwall carbon nanotube composites below room temperature , 2013 .
[27] A. Gu,et al. The production of carbon nanotube/epoxy composites with a very high dielectric constant and low dielectric loss by microwave curing , 2012 .
[28] L. Costa,et al. Electrical and dielectric properties of the Ca2MnO4−δ system , 2011 .
[29] Rajiv Ranjan,et al. Impedance and electric modulus analysis of Sm-modified Pb(Zr0.55Ti0.45)1−x/4O3 ceramics , 2011 .
[30] A. Badr,et al. Impacts of Temperature and Frequency on the Dielectric Properties for Insight into the Nature of the Charge Transports in the Tl2S Layered Single Crystals , 2011 .
[31] S.C. Mishra,et al. Evaluation of dielectric behavior of bio-waste reinforced polymer composite , 2011 .
[32] A. Oueriagli,et al. Dielectric Properties of Carbon Black–Epoxy Resin Composites Studied with Impedance Spectroscopy , 2008 .
[33] W. Wen,et al. A negative dielectric constant in nano-particle materials under an electric field at very low frequencies , 2005, SPIE Optics + Photonics.
[34] M. Lundstrom,et al. Ballistic carbon nanotube field-effect transistors , 2003, Nature.
[35] F. Xia,et al. An all-organic composite actuator material with a high dielectric constant , 2002, Nature.
[36] P. Kohl,et al. Novel polymer–ceramic nanocomposite based on high dielectric constant epoxy formula for embedded capacitor application , 2002 .
[37] Herbert Shea,et al. Single- and multi-wall carbon nanotube field-effect transistors , 1998 .
[38] S. Sridhar,et al. A new graphical representation for dielectric data , 1993 .
[39] J. Hofman,et al. Biochar surface functional groups as affected by biomass feedstock, biochar composition and pyrolysis temperature , 2021 .
[40] Xiaojuan Jin,et al. Characterization, preparation, and reaction mechanism of hemp stem based activated carbon , 2017 .
[41] Guirong Peng,et al. Investigation on crystalline structure and dielectric relaxation behaviors of hot pressed poly(vinylidene fluoride) film , 2017 .
[42] Lei Qian,et al. Negative permittivity behavior in the carbon/silicon nitride composites prepared by impregnation-carbonization approach , 2016 .
[43] S. Manivannan,et al. Thermal and dielectric properties of multi-walled carbon nanotube–graphene oxide composite , 2016, Journal of Materials Science: Materials in Electronics.