I²CNER研究シーズ

  • 電気変換
  • エネルギー分析
  • 水素エネルギー
  • 電気エネルギー
  • 電池
  • 窒素 (N₂)
  • アンモニア(NH₃)

Organic-inorganic hybrid materials, Electrochemistry, Energy conversion, Energy storage

Mohanty, Rupali Ipsita

助教

研究概要

Designing of different organic-inorganic hybrid frameworks

Synthesis of novel organic-inorganic hybrid metal phosphonates for energy application.

Metal phosphonate
Electrochemical energy storage, like batteries and supercapacitors

Designing materials to increase the energy density of supercapacitors, fabrication of flexible and miniaturized devices, materials for multivalent batteries.

Ligand effect on energy storage performance
Electrochemical energy conversion processes such as water electrolysis, oxygen reduction reaction, and nitrogen reduction to ammonia

Developing high-performance materials for hydrogen and oxygen evolution reactions and nitrogen-to-ammonia conversion with high Faradaic efficiency.

Bifunctional electrocatalyst for water splitting

技術

Materials synthesis and structural characterization

Synthesis of hybrid porous materials with their structural and surface properties investigation using different characterization and spectroscopic methods.

Manganese phosphonates with different morphologies
Electrochemical characterization and Energy storage testing

Electrochemical measurements for evaluating batteries, supercapacitors, and electrocatalysts. These facilities enable the investigation of charge-storage mechanisms, ion transport, charge-transfer kinetics, and electrochemical stability.

Electrochemical energy storage measurement
Electrocatalytic evaluation

Electrocatalytic performance can be evaluated using three-electrode systems to study hydrogen evolution reaction (HER), oxygen evolution reaction (OER), and alternative anodic oxidation reactions. These measurements allow assessment of overpotential, Tafel kinetics, Faradaic efficiency, and durability of the electrode materials.

Energy conversion (HER, OER, HOR, ORR etc..)