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Titlebook: Recent Research Trends in Energy Storage Devices; Select Papers from I Yogesh Sharma,Ghanshyam Das Varma,Venkataraman Tha Conference procee

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Flexible Fibre Supercapacitor Using Synthesized Biomass-Based Activated Carbon and Few-Layer Graphecific capacitance of 15.45 F/g and volumetric capacitance of 1.77 F/cm. at 10 mV/s scan rate. The developed supercapacitor retained ~92% of capacitance upon bending. The fibre supercapacitor can be fabricated on large scale using simple methods and inexpensive biomass for powering wearable electronic applications.
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Reversible Sodium and Potassium-Ion Intercalation in Na0.44MnO2,e with large and small tunnels as a path for diffusion of ions. For the first time, tunnel-type Na.MnO. was investigated as K.-ion intercalation host. This study shows reversible K.-ion intercalation with an initial discharge of 74 mAh g. at C/20 current rate and good cycling stability up to 50 cycles.
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Investigation of Charging and Discharging Characteristics of Lithium-Ion Batteries for Application harge testing apparatus (Chroma 17011). This study aims to compare the charge and discharge characteristics of two cylindrical cells by subjecting it to a voltage less than its maximum voltage and suggests approaches to reduce undercharging of battery for EV applications.
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Conductivity and Dielectric Spectroscopy of Na+ Ion Conducting Blended Solid Polymer Nanocompositeslaxation time is obtained that decreases with the increase of temperature (57 s; at 40 °C to 25 s; at 100 °C) and are associated with the faster segmental motion of the polymer chain. A briefly discussed model has been proposed to justify the obtained experimental results.
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,Cobalt–Phosphate-Based Insertion Material as a Multifunctional Cathode for Rechargeable Hybrid Sodie. The NaCo.(PO.). exhibits bi-functional OER/ORR catalytic activity as well as OH. ion (de)intercalation due to its multiple redox behaviours. The possible ORR and OER mechanism is explored. The hybrid NABs with NaCo.(PO.). as air–cathode delivered high power and energy density with improved round-trip efficiency.
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Structural and Electrical Transport Investigations on Mg(ClO4)2-PEO-PEG Solid Polymer Electrolyte Phe ionic nature of films. Further, the linear sweep voltammetry exhibits potential stability of ~1.8 volts. These composites are found to be promising for solid-state battery applications. The electrochemical button type test cell prepared of the type Mg/solid polymer film/I. exhibits a stable voltage of ~1.7 V that suggests good Mg. ion activity.
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