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Updated: Sep 17, 2025

A Simple, Low-cost, and Robust System to Measure the Volume of Hydrogen Evolved by Chemical Reactions with Aqueous Solutions
Published on: August 17, 2016
Effect of solvent composition on a one-dimensional (NH4)2V10O25·8H2O electroactive material for electrochemical
Poria Gomrokchi1, Maryam Ghiyasiyan-Arani1, Elmuez A Dawi2
1Institute of Nano Science and Nano Technology, University of Kashan Kashan 87317-51167 Islamic Republic of Iran m.ghiyasiyan@kashanu.ac.ir salavati@Kashanu.ac.ir +98 31 55913201 +98 31 55912383.
Abstract:
Electrode materials with tailored shapes for one-dimensional (ID) nanorods were manufactured using a solvothermal approach. Different conditions led to the formation of samples with diverse morphologies and compositions. Structural characteristics were studied using XRD, FT-IR, EDX, FE-SEM, TEM and BET analysis (NH4)2V6O16 and (NH4)2V10O25·8H2O structures were obtained under these conditions. The charge-discharge test was conducted to compare the activity of electrode materials with different phase purities. After 15 cycles at a current density of 1 mA, the fabricated (NH4)2V10O25·8H2O material displayed a capacity of 956 mA h g-1, and a maximum capacity of 5268 mA h g-1 was obtained at the 7th cycle. However, the (NH4)2V6O16 electrode material showed 324 mA h g-1 capacity. Vanadium-based materials have poor conductivity. Therefore, designing 1D structures improves the hydrogen storage efficiency of the electrodes. The optimized sample with a nanorod structure and (NH4)2V10O25·8H2O phase purity shows a surface area of 23.571 m2 g-1.
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