Amity University Noida
ECS Student Chapter
● Electrochemical Society — Student Chapter

Where electrons, ions, and ideas move together.

The ECS Student Chapter at the Amity Institute of Applied Sciences (AIAS), Amity University Noida, brings together students and researchers exploring the science that powers batteries, fuel cells, sensors, and the clean-energy technologies shaping tomorrow.

2018ECS founded, 1902
AIASHost department
e⁻ / H⁺Our everyday currency
Anode Cathode A redox reaction · e⁻ transfer · ion flux
SCHEMATIC — GENERALISED ELECTROCHEMICAL CELL
01 — Who we are

Two institutions, one shared language: electrochemistry.

Host Institute

Amity Institute of Applied Sciences (AIAS)

AIAS, Amity University Noida, is a multidisciplinary research institute working across chemistry, physics, biotechnology, environmental science, and materials engineering. Its chemistry research groups actively work on nanomaterials, catalysis, and computational modelling — the natural home for an ECS chapter on campus.

Parent Society

The Electrochemical Society (ECS)

Founded in 1902, ECS is one of the world's oldest and most respected scientific societies, connecting scientists and engineers advancing the theory and practice of electrochemistry and solid-state science. Student chapters extend this global community to campuses everywhere.

01

It's everywhere, quietly

Every battery, every corrosion-proof bridge, every glucose strip, every electroplated part relies on electrochemistry working correctly and invisibly.

02

It's the energy transition

Hydrogen generation, fuel cells, and next-gen batteries are electrochemical problems first — this is where the clean-energy race is actually being run.

03

It's genuinely interdisciplinary

Chemistry, materials science, electrical engineering, and data-driven DFT modelling all meet at the electrode-electrolyte interface — plenty of room to specialise.

02 — Applications

Four places electrochemistry is already changing the world.

A quick, visual tour of the fields our members explore and research — from wearable sensors to green hydrogen.

A1

Sensors

Electrochemical biosensors and gas sensors detect glucose, pathogens, and pollutants with high sensitivity at low cost.

A2

Catalysis

Single-atom and 2D-material catalysts (like borophene) lower energy barriers for HER, OER, and nitrogen reduction reactions.

A3

Healthcare

Wearable and implantable electrochemical devices enable continuous, real-time monitoring of biomarkers and vital signs.

A4

Renewable Energy

Water electrolysis for green hydrogen, and next-gen batteries, are core electrochemical routes to a fossil-free grid.

Curious where this can take you?

Explore our team, upcoming events, and photo gallery in the pages that follow.